KR102646232B1 - 항생제 내성 슈도모나스균 특이적 박테리오파지 - Google Patents

항생제 내성 슈도모나스균 특이적 박테리오파지 Download PDF

Info

Publication number
KR102646232B1
KR102646232B1 KR1020210136865A KR20210136865A KR102646232B1 KR 102646232 B1 KR102646232 B1 KR 102646232B1 KR 1020210136865 A KR1020210136865 A KR 1020210136865A KR 20210136865 A KR20210136865 A KR 20210136865A KR 102646232 B1 KR102646232 B1 KR 102646232B1
Authority
KR
South Korea
Prior art keywords
bacteriophage
pseudomonas aeruginosa
seq
ymc17
pae
Prior art date
Application number
KR1020210136865A
Other languages
English (en)
Other versions
KR20230053402A (ko
Inventor
한창구
김경남
서현수
Original Assignee
주식회사 마이크로바이오틱스
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 주식회사 마이크로바이오틱스 filed Critical 주식회사 마이크로바이오틱스
Priority to KR1020210136865A priority Critical patent/KR102646232B1/ko
Priority to PCT/KR2021/014331 priority patent/WO2023063453A1/ko
Publication of KR20230053402A publication Critical patent/KR20230053402A/ko
Application granted granted Critical
Publication of KR102646232B1 publication Critical patent/KR102646232B1/ko

Links

Classifications

    • CCHEMISTRY; METALLURGY
    • C12BIOCHEMISTRY; BEER; SPIRITS; WINE; VINEGAR; MICROBIOLOGY; ENZYMOLOGY; MUTATION OR GENETIC ENGINEERING
    • C12NMICROORGANISMS OR ENZYMES; COMPOSITIONS THEREOF; PROPAGATING, PRESERVING, OR MAINTAINING MICROORGANISMS; MUTATION OR GENETIC ENGINEERING; CULTURE MEDIA
    • C12N7/00Viruses; Bacteriophages; Compositions thereof; Preparation or purification thereof
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01NPRESERVATION OF BODIES OF HUMANS OR ANIMALS OR PLANTS OR PARTS THEREOF; BIOCIDES, e.g. AS DISINFECTANTS, AS PESTICIDES OR AS HERBICIDES; PEST REPELLANTS OR ATTRACTANTS; PLANT GROWTH REGULATORS
    • A01N63/00Biocides, pest repellants or attractants, or plant growth regulators containing microorganisms, viruses, microbial fungi, animals or substances produced by, or obtained from, microorganisms, viruses, microbial fungi or animals, e.g. enzymes or fermentates
    • A01N63/40Viruses, e.g. bacteriophages
    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23KFODDER
    • A23K10/00Animal feeding-stuffs
    • A23K10/10Animal feeding-stuffs obtained by microbiological or biochemical processes
    • A23K10/16Addition of microorganisms or extracts thereof, e.g. single-cell proteins, to feeding-stuff compositions
    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23KFODDER
    • A23K20/00Accessory food factors for animal feeding-stuffs
    • A23K20/10Organic substances
    • A23K20/195Antibiotics
    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23LFOODS, FOODSTUFFS, OR NON-ALCOHOLIC BEVERAGES, NOT COVERED BY SUBCLASSES A21D OR A23B-A23J; THEIR PREPARATION OR TREATMENT, e.g. COOKING, MODIFICATION OF NUTRITIVE QUALITIES, PHYSICAL TREATMENT; PRESERVATION OF FOODS OR FOODSTUFFS, IN GENERAL
    • A23L33/00Modifying nutritive qualities of foods; Dietetic products; Preparation or treatment thereof
    • A23L33/10Modifying nutritive qualities of foods; Dietetic products; Preparation or treatment thereof using additives
    • A23L33/135Bacteria or derivatives thereof, e.g. probiotics
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61KPREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
    • A61K35/00Medicinal preparations containing materials or reaction products thereof with undetermined constitution
    • A61K35/66Microorganisms or materials therefrom
    • A61K35/76Viruses; Subviral particles; Bacteriophages
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61PSPECIFIC THERAPEUTIC ACTIVITY OF CHEMICAL COMPOUNDS OR MEDICINAL PREPARATIONS
    • A61P31/00Antiinfectives, i.e. antibiotics, antiseptics, chemotherapeutics
    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23VINDEXING SCHEME RELATING TO FOODS, FOODSTUFFS OR NON-ALCOHOLIC BEVERAGES AND LACTIC OR PROPIONIC ACID BACTERIA USED IN FOODSTUFFS OR FOOD PREPARATION
    • A23V2002/00Food compositions, function of food ingredients or processes for food or foodstuffs
    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23VINDEXING SCHEME RELATING TO FOODS, FOODSTUFFS OR NON-ALCOHOLIC BEVERAGES AND LACTIC OR PROPIONIC ACID BACTERIA USED IN FOODSTUFFS OR FOOD PREPARATION
    • A23V2200/00Function of food ingredients
    • A23V2200/30Foods, ingredients or supplements having a functional effect on health
    • A23V2200/324Foods, ingredients or supplements having a functional effect on health having an effect on the immune system
    • CCHEMISTRY; METALLURGY
    • C12BIOCHEMISTRY; BEER; SPIRITS; WINE; VINEGAR; MICROBIOLOGY; ENZYMOLOGY; MUTATION OR GENETIC ENGINEERING
    • C12NMICROORGANISMS OR ENZYMES; COMPOSITIONS THEREOF; PROPAGATING, PRESERVING, OR MAINTAINING MICROORGANISMS; MUTATION OR GENETIC ENGINEERING; CULTURE MEDIA
    • C12N2795/00Bacteriophages
    • C12N2795/00011Details
    • C12N2795/00031Uses of virus other than therapeutic or vaccine, e.g. disinfectant

Landscapes

  • Life Sciences & Earth Sciences (AREA)
  • Health & Medical Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Zoology (AREA)
  • Microbiology (AREA)
  • General Health & Medical Sciences (AREA)
  • Polymers & Plastics (AREA)
  • Virology (AREA)
  • Wood Science & Technology (AREA)
  • Medicinal Chemistry (AREA)
  • Biotechnology (AREA)
  • Food Science & Technology (AREA)
  • Organic Chemistry (AREA)
  • Biomedical Technology (AREA)
  • Bioinformatics & Cheminformatics (AREA)
  • Biochemistry (AREA)
  • Genetics & Genomics (AREA)
  • Mycology (AREA)
  • Pharmacology & Pharmacy (AREA)
  • Animal Husbandry (AREA)
  • Animal Behavior & Ethology (AREA)
  • Public Health (AREA)
  • Veterinary Medicine (AREA)
  • Epidemiology (AREA)
  • General Engineering & Computer Science (AREA)
  • Immunology (AREA)
  • Molecular Biology (AREA)
  • Physiology (AREA)
  • Agronomy & Crop Science (AREA)
  • Pest Control & Pesticides (AREA)
  • Plant Pathology (AREA)
  • Dentistry (AREA)
  • Environmental Sciences (AREA)
  • Communicable Diseases (AREA)
  • Oncology (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • General Chemical & Material Sciences (AREA)
  • Nuclear Medicine, Radiotherapy & Molecular Imaging (AREA)
  • Nutrition Science (AREA)

Abstract

본 발명은 항생제에 내성을 나타내는 슈도모나스 균속을 용균시키는 박테리오파지에 관한 것이다. 구체적으로, 상기 슈도모나스 균속은 녹농균 (Pseudomonas aeruginosa)에 관한 것일 수 있다.

Description

항생제 내성 슈도모나스균 특이적 박테리오파지{BACTERIOPHAGE SPECIFIC FOR PSEUDOMONAS RESISTANT TO ANTIBIOTICS}
본 발명은 항생제에 내성을 나타내는 슈도모나스 균을 용균시키는 박테리오파지에 관한 것이다. 구체적으로, 상기 슈도모나스 균은 녹농균 (Pseudomonas aeruginosa)에 관한 것일 수 있다.
과거 1960년대와 1970년대 초반까지 항생제 개발에 괄목할 만한 많은 성과가 있었고, 이를 통하여 많은 감염증이 치료되었다. 그러나 여전히 감염병의 심각성을 줄어들지 않고 있다.
항생제가 박테리아에 의한 감염성 질환에 있어 주된 치료 방법으로 지속적으로 이용되고 있으나, 과도한 항생제의 사용으로 인하여 1980년대부터 많은 항생제 내성 균주가 발생하기 시작했으며, 기존 항생제로는 효과적 치료를 기대할 수 없는 일명 슈퍼박테리아(super-bacteria) 또는 슈퍼버그(super-bug)라 불리는 내성균(resistant bacteria)까지 발생하여 큰 문제로 대두되고 있다.
이처럼 내성균이 증가하게 된 주된 원인으로는 무분별한 항생제 오남용(mis- and over-use)으로 인한 사람, 가축, 야생동물, 양식어류, 토양, 하천, 바다 등 환경 전체의 항생제 오염을 들 수 있다. 항생제 과다 사용이 새롭게 개발된 항생제에 대한 박테리아의 내성 획득 시간을 과거보다 더 짧게 만드는 하나의 원인이 되고 있는 것이다. 그러나 보다 더 근본적인 원인은 새롭게 개발된 합성 항생제 대부분이 과거 개발된 항생제의 기본 골격 구조를 그대로 유지하면서 화학적으로 약간의 구조만을 변경시키는 방식으로 개발되고 있는 기술적 한계에 기인하고 있다.
현재 시장에 나와 있는 모든 항생제는 내성 문제에 직면하고 있으며, 이에 따라 기존 항생제의 내성 문제에서 자유로운 새로운 계열(class)의 항생제의 개발 및 기존 항생제의 사용에서 나타나던 여러 부작용(side effect)이나 문제점을 개선할 수 있는 기술에 대한 요구가 지속되고 있다.
한국등록특허 제10-1779262호
본 발명의 목적은 항생제 내성 녹농균(Pseudomonas aeruginosa)에 특이적인 사멸능을 가지는 박테리오파지를 제공하는 것이다.
본 발명의 다른 목적은 상기 박테리오파지를 포함하는 항생제를 제공하는 것이다.
본 발명의 또 다른 목적은 상기 박테리오파지를 포함하는 소독제를 제공하는 것이다.
본 발명의 또 다른 목적은 상기 박테리오파지를 포함하는 녹농균 유발 질환의 예방 또는 치료용 약학적 조성물을 제공하는 것이다.
본 발명의 또 다른 목적은 상기 박테리오파지를 포함하는 식품 조성물을 제공하는 것이다.
본 발명의 또 다른 목적은 상기 박테리오파지를 포함하는 사료 조성물을 제공하는 것이다.
상기와 같은 목적을 달성하기 위한 본 발명의 일 측면은 항생제 내성 녹농균(Pseudomonas aeruginosa)에 특이적인 사멸능을 가지는 박테리오파지에 관한 것이다.
본 발명에서, “박테리오파지(Bacteriophage)"는 박테리아를 감염시켜 성장을 억제하고 저해하는 박테리아 특이적 바이러스로 파지(phage)로 불리기도 한다. 박테리오파지는 핵산으로 이루어진 유전물질 중심부를 단백질 외피가 싸고 있는 단순한 구조의 유기체이며, 핵산은 단일 사슬이거나 이중 사슬인 DNA 또는 RNA로 되어있다. 박테리오파지는 생존에 숙주(host)가 반드시 필요하며, 박테리아의 세포벽(cell wall)의 펩티도글리칸(peptidoglycan) 층(layer)을 공격하여 세포벽을 파괴함으로써 박테리아를 사멸시킬 수 있다.
박테리오파지의 가장 큰 특징으로는, 감염성 박테리아 속에 침투한 다음 박테리아의 세포벽을 파괴하여 박테리아의 사멸을 유도한다는 것이며, 이러한 박테리오파지에 의한 세포 사멸의 기작은 세균의 세포벽 합성을 방해하는 방식의 기존 합성 항생제의 기작과는 완전히 다르다. 따라서 기존 합성 항생제에 대한 감수성에 관계없이 자신의 항균 활성을 발휘할 수 있다. 이로 인하여 특히 기존 항생제에 대하여 이미 내성을 획득한 내성균에 대해서도 항균 효과가 있다. 또한, 박테리아에 대해서는 매우 특이적인 항균 활성을 가지고 있기 때문에 인간을 포함한 동물을 구성하는 세포인 진핵세포(eukaryotic cell)에는 영향을 주지 않는다는 장점을 가진다.
슈도모나스 균속(Pseudomonas spp.)은 그람 음성 간균으로 포도당 비발효 세균이다. 이들은 토양, 물, 하수 등을 포함한 자연환경, 사람의 피부, 구강, 호흡기계 점막 등에 상재균으로 분포한다. 이들 세균은 신생아, 비장 절제술 시행 환자, 장기간 스테로이드를 투여한 환자, 항암 치료 중인 암환자, 장기 이식 환자, 집중치료실 환자와 같은 면역력이 저하된 고위험군 환자에서의 내인성 기회감염을 일으키는 중요한 병원성 세균이다.
슈도모나스 균속 중 하나인 녹농균(Pseudomonas aeruginosa)은 달콤한 냄새의 녹색을 띠는 농을 생산하며, 토양이나 물속 등 자연계에 광범위하게 존재하는 세균으로, 강한 병원성 균에 해당한다. 녹농균은 신체의 거의 모든 조직을 감염시킬 수 있으며, 감염 부위의 조직을 손상시키면서 고름이 나올 수 있고, 감염된 부위 및 질병에 따라 기침, 호흡 곤란, 체중 감소, 각막 궤양, 피로 등을 일으키며, 녹농균이 국소 부위에 감염되었다가 혈류를 통해 전신에 전파되면 패혈증을 일으키게 된다.
이러한 녹농균은 동물과 식물에 질병을 일으킬 수 있는 기회성 병원체(opportunistic pathogen)이나, 각종 항생제에 높은 내성을 나타내기 때문에 녹농균에 감염되면 특효적 치료제가 적어 중증이 되는 경우가 발생한다.
본 발명에서, "항생제 내성"은 특정 항생제에 내성을 보여 약효가 듣지 않는 것을 의미한다. 구체적으로, 상기 항생제는 카바페넴(carbapenem) 계열일 수 있다.
상기 카바페넴(carbapenem)은 그 항균 범위가 가장 넓고, ESBL이나 AmpC β-락타마제를 포함한 클래스 A, D 및 D β-락타마제에 안정한 가장 강력한 β-락탐 항균제에 해당한다. 그런데 현재 국내뿐만 아니라 세계적으로 카바페넴(carbapenem) 제제조차 내성을 보이는 다제 내성(multidrug resistant) 슈도모나스 균속에 의한 감염이 증가하고 있어서 임상적으로 커다란 문제가 되고 있다.
더욱 구체적으로, 상기 카바페넴(carbapenem) 계열 항생제는 아미카신(amikacin), 아제트레오남(azetreonam), 세프타지딤(ceftazidime), 시프로플록사신(ciprofloxacin), 콜리스틴(colistin), 세페핌(cefepime), 젠타마이신(gentamicin), 이미페넴(imipenem), 레보플록사신(levofloxacin), 메로페넴(meropenem), 피페라실린(piperacillin), 피페라실린-타조박탐(piperacillin-tazobactam) 및 이들의 조합으로 이루어진 군에서 선택되는 하나 이상일 수 있으나, 이에 제한되는 것은 아니다.
또한 구체적으로, 상기 박테리오파지는 서열번호 8의 염기 서열로 이루어진 유전체를 포함하는 것일 수 있다. 상기 서열번호 8의 염기 서열로 이루어진 유전체는 용균 효소(lytic enzyme)로서 키티네이즈 도메인을 포함하는 용균성 관련 단백질을 발현시킬 수 있는 바, 이를 포함함으로써 녹농균에 대한 용균성을 발휘할 수 있다.
나아가, 본 발명의 박테리오파지는 서열번호 8로 표시되는 염기 서열, 및 상기 염기 서열의 기능적 동등물을 포함할 수 있다. 상기 기능적 동등물이란 염기 서열의 변형, 치환의 결과, 상기 서열번호 8로 표시되는 염기 서열과 적어도 70% 이상, 바람직하게는 80% 이상, 더욱 바람직하게는 90% 이상, 가장 바람직하게는 95% 이상의 서열 상동성을 갖는 것으로, 서열번호 8로 표시되는 염기 서열과 실질적으로 동질의 생리활성을 나타내는 서열을 의미한다.
더욱 구체적으로, 상기 박테리오파지는 서열번호 2 내지 7, 서열번호 9 내지 23중 적어도 하나 이상의 염기 서열로 이루어진 유전체를 더욱 포함하는 것일 수 있다. 상기 서열번호 2 내지 7, 서열번호 9 내지 23각각은 상기 박테리오파지의 ORF(Open reading frame)의 염기 서열로서 상기 서열번호 8의 염기서열로 이루어진 용균성 관련 유전체에 더하여 추가로 포함될 수 있으나, 이에 제한되는 것은 아니다.
또한 구체적으로, 상기 박테리오파지는 서열번호 1로 염기서열로 이루어진 유전체를 포함하는 것일 수 있다.
나아가, 본 발명의 박테리오파지는 서열번호 1로 표시되는 염기 서열, 및 상기 염기 서열의 기능적 동등물로 이루어질 수 있다. 상기 기능적 동등물이란 염기 서열의 변형, 치환의 결과, 상기 서열번호 1로 표시되는 염기 서열과 적어도 70% 이상, 바람직하게는 80% 이상, 더욱 바람직하게는 90% 이상, 가장 바람직하게는 95% 이상의 서열 상동성을 갖는 것으로, 서열번호 1로 표시되는 염기 서열과 실질적으로 동질의 생리활성을 나타내는 서열을 의미한다.
또한 구체적으로, 상기 박테리오파지는 2021년 2월 26일 한국미생물보존센터(KCCM)에 기탁번호 KCCM12962P로 기탁된 것일 수 있다.
또한 구체적으로, 상기 박테리오파지는 포도비리대(Podoviridae)에 속하는 것일 수 있으며, 이는 육각형 머리에 짧은 꼬리를 가지는 것일 수 있다.
본 발명의 다른 측면은 상기 박테리오파지를 포함하는 항생제에 관한 것이다.
상기 항생제는 종래의 항균제, 살균제, 방부제 등을 모두 포함하며, 대부분의 항생 물질이 균주의 내성이 증가함에 따라 사용범위가 감소하는 반면, 본 발명의 상기 항생제는 균주의 내성과 관계없이 적용이 가능한 바, 지속적으로 사용 가능하다.
본 발명의 또 다른 측면은 상기 박테리오파지를 포함하는 소독제에 관한 것이다. 본 발명의 소독제는 항생제 내성 녹농균에 대해 특이적 사멸능을 가지는 박테리오파지를 포함하는 바, 병원에서의 감염을 방지하기 위한 병원 및 보건용 도구 등의 소독제로 유용하게 사용될 수 있고, 일반 생활 소독제, 식품 및 조리 장소 및 설비의 소독제, 축산 산업의 축사 소독제로 유용하게 사용될 수 있다.
본 발명의 또 다른 측면은 상기 박테리오파지를 포함하는, 녹농균 유발 질환의 예방 또는 치료용 약학적 조성물에 관한 것이다. 본 발명의 상기 박테리오파지는 슈도모나스속 균, 특히 카바페넴 계열 항생제에 내성을 가지는 녹농균을 특이적으로 사멸시키는 바, 이러한 녹농균에 의해 유발되는 다양한 질환에 대해 예방 및/또는 치료 효과를 나타낼 수 있다.
구체적으로, 상기 녹농균 유발 질환은 폐렴, 패혈증, 뇌수막염, 균혈증, 심내막염, 복막염 또는 내인성 기회감염인 것일 수 있으나, 이에 제한되는 것은 아니다. 녹농균은 자연계에 광범위하게 존재하는 강한 병원성 균으로서 신체의 거의 모든 조직을 감염시킬 수 있는 바, 상기 질환 외에도 신체 여러 부위에서 녹농균에 의해 발생되는 모든 감염성 질환을 포함한다.
본 발명의 또 다른 측면은 상기 약학적 조성물을 개체에 투여하는 단계를 포함하는, 녹농균 유발 질환의 치료방법에 관한 것이다.
'녹농균 유발 질환'은 상기 설명한 바와 같다.
본 발명의 용어 "개체"는 본 발명에 따른 약학적 조성물의 투여에 의해 증상이 호전될 수 있는 녹농균 유발 질환을 가진 동물 또는 인간을 포함한다. 본 발명에 따른 치료용 조성물을 개체에게 투여함으로써, 녹농균 유발 질환을 효과적으로 예방 및 치료할 수 있다.
본 발명의 용어 "투여"는 어떠한 적절한 방법으로 인간 또는 동물에게 소정의 물질을 도입하는 것을 의미하며, 본 발명에 따른 치료용 조성물의 투여 경로는 목적 조직에 도달할 수 있는 한 어떠한 일반적인 경로를 통하여 경구 또는 비경구 투여될 수 있다. 또한, 본 발명에 따른 치료용 조성물은 유효성분이 표적 세포로 이동할 수 있는 임의의 장치에 의해 투여될 수 있다.
본 발명에 따른 약학적 조성물의 바람직한 투여량은 환자의 상태 및 체중, 질병의 정도, 약물형태, 투여경로 및 기간에 따라 다르지만, 당업자에 의해 적절하게 선택될 수 있다.
본 발명의 또 다른 측면은 상기 박테리오파지를 포함하는, 식품 조성물에 관한 것이다. 더욱 구체적으로 상기 식품 조성물은 녹농균 유발 질환의 예방 또는 개선용 식품 조성물인 것일 수 있다.
상기 식품의 종류에는 특별한 제한은 없다. 본 발명의 조성물을 첨가할 수 있는 식품은 소세지, 육류, 빵, 초콜릿류, 스넥류, 캔디류, 과자류, 라면, 피자, 기타 면류, 껌류, 아이스크림류를 포함한 낙농제품, 각종 스프, 음료수, 차, 드링크제, 알코올 음료 및 비타민 복합제 등이 있다. 음료수로 제형화할 경우에 본 발명의 조성물 외에 첨가되는 액체 성분으로는 이에 한정되지는 않으나, 통상의 음료와 같이 여러 가지 향미제 또는 천연 탄수화물 등을 추가 성분으로서 함유할 수 있다. 상술한 천연 탄수화물은 모노사카라이드(예, 포도당, 과당 등), 디사카라이드(예, 말토오스, 수크로오스 등) 및 폴리사카라이드(예, 덱스트린, 시클로덱스트린 등과 같은 통상적인 당), 및 자일리톨, 소르비톨, 에리스리톨 등의 당 알코올일 수 있다.
상기 식품의 종류는 구체적으로 건강기능식품일 수 있다. 상기 건강기능 식품은 여러 가지 영양제, 비타민, 광물(전해질), 합성 풍미제 및 천연 풍미제 등의 풍미제, 착색제 및 증진제 (치즈, 초콜릿 등), 펙트산 및 그의 염, 유기산, 보호성 콜로이드 점증제, pH 조절제, 안정화제, 보존제, 글리세린, 알코올, 탄산음료에 사용되는 탄산화제 등을 함유할 수 있다. 또한, 본 발명의 건강기능 식품은 과일 및 야채 음료의 제조를 위한 과육을 함유할 수 있다. 이러한 성분은 단독으로 또는 조합으로 사용될 수 있다.
상기 건강기능식품은 식품의 생체 조절 기능을 강조한 식품으로 물리적, 생화학적, 생물공학적인 방법을 이용하여 특정 목적에 작용 및 발현하도록 부가가치를 부여한 식품이다. 이러한 건강기능 식품의 성분은 생체 방어와 신체 리듬의 조절, 질환의 방지 및 회복에 관계하는 신체 조절 기능을 생체에 대하여 충분히 발휘하도록 설계하여 가공하게 되며, 식품으로 허용 가능한 식품 보조 첨가제, 감미료 또는 기능성 원료를 함유할 수 있다.
본 발명의 조성물을 건강기능식품(또는 건강기능 음료 첨가물)으로 사용할 경우, 상기 조성물을 그대로 첨가하거나 다른 식품 또는 식품 성분과 함께 사용하고, 통상적인 방법에 따라 적절하게 사용할 수 있다. 상기 조성물의 혼합량은 그의 사용 목적(예방, 건강 또는 개선, 치료적 처치)에 따라 적합하게 결정될 수 있다.
본 발명의 또 다른 측면은 상기 박테리오파지를 포함하는 사료 첨가용 조성물에 관한 것이다. 축산업이나 수산업에서 사용되는 사료 첨가용 항생제는 질병의 예방 목적으로 사용되고 있는데, 예방 목적의 항생제 투여는 내성균 발생 가능성을 높이고 가축에 잔류하는 항생제가 사람에게 전달될 수 있어서 문제가 되었으며, 항생제가 육류를 통해 인체에 흡수되면 항생제 내성을 유발해 질병의 확산을 부를 수도 있다. 또한, 사료에 섞여 먹이는 항생제의 종류가 많고 이는 다제 내성균 발생 확률이 높아지는 문제점이 있어 자연 친화적이면서도 기존 항생제의 사용에서 발생한 문제를 해결할 새로운 사료 첨가용 항생물질로서 본 발명의 상기 박테리오파지를 이용할 수 있다.
본 발명의 또 다른 측면은 상기 박테리오파지를 포함하는 사료 조성물에 관한 것이다. 본 발명의 사료는 박테리오파지를 사료 첨가제 형태로 따로 제조하여 사료에 혼합시키거나, 사료 제조 시 직접 첨가하여 제조할 수 있다. 본 발명의 사료 내 박테리오파지는 액상 또는 건조상태일 수 있다. 건조방법은 통풍건조, 자연건조, 분무건조 및 동결건조가 가능하지만, 이에 제한되는 것은 아니다.
또한, 상기 사료는 본 발명의 박테리오파지 외에 사료의 보존성을 높일 수 있는 통상의 첨가제들을 추가로 포함할 수 있다.
본 발명의 박테리오파지를 포함하는 사료에는 식물성으로는 곡물류, 근과류, 식품가공 부산물류, 조류, 섬유질류, 제약 부산물류, 유지류, 전분류, 박류, 곡물부산물류 등이 있으며, 동물성으로는 단백질류, 무기물류, 유지류, 광물성류, 유지류, 단세포 단백질, 동물성 플랑크톤류, 남은 음식물 등이 있으며 이에 제한되는 것은 아니다.
본 발명의 사료 첨가용 조성물에는 품질 저하를 방지하기 위하여 첨가하는 결착제, 유화제, 보존제 등이 포함될 수 있고, 효용 증대를 위하여 사료에 첨가하는 아미노산제, 비타민제, 효소제, 생균제, 향미제, 비단백태질소화합물, 규산염제, 완충제, 착색제, 추출제, 올리고당 등이 포함될 수 있으며, 그 외에도 사료 혼합제 등을 추가로 포함할 수 있다.
본 발명에서 제공하는 신규한 박테리오파지는 기존의 항생제에 비해 항생제에 내성을 갖는 녹농균에 대하여 특이적 사멸능을 가진다.
나아가 사람, 동물, 식물 등 세균외의 다른 숙주는 감염시키지 않으므로, 항생제 오남용으로 인한 항생제 내성균의 문제점, 식품 내의 항생제의 잔류 문제, 광범위한 숙주범위의 문제점을 해결할 수 있다.
본 발명의 효과는 상기한 효과로 한정되는 것은 아니며, 본 발명의 상세한 설명 또는 청구범위에 기재된 발명의 구성으로부터 추론 가능한 모든 효과를 포함하는 것으로 이해되어야 한다.
도 1은 본 발명에 따른 박테리오파지 YMC17/07/R4900a_PAE_BP의 전자 현미경 촬영 사진을 나타낸 것이다.
도 2는 본 발명에 따른 박테리오파지 YMC17/07/R4900a_PAE_BP의 항생제 내성을 갖는 녹농균에 대한 흡착능을 그래프로 나타낸 것이다.
도 3은 본 발명에 따른 항생제 내성을 갖는 녹농균에 대한 박테리오파지 YMC17/07/R4900a_PAE_BP의 1단 증식 곡선을 그래프로 나타낸 것이다.
도 4는 본 발명에 따른 박테리오파지 YMC17/07/R4900a_PAE_BP의 생체 외에서 항생제 내성을 갖는 녹농균에 대한 용균능을 그래프로 나타낸 것이다.
도 5는 본 발명에 따른 항생제 내성을 갖는 녹농균에 대한 박테리오파지 YMC17/07/R4900a_PAE_BP의 온도 안정성을 그래프로 나타낸것이다.
도 6은 본 발명에 따른 항생제 내성을 갖는 녹농균에 대한 박테리오파지 YMC17/07/R4900a_PAE_BP의 pH 안정성을 그래프로 나타낸 것이다.
도 7은 본 발명에 따른 박테리오파지 YMC17/07/R4900a_PAE_BP의 전체 유전체 서열 분석 결과를 나타낸 것이다.
이하, 본 발명을 실시예에 의해 상세히 설명한다. 단, 하기 실시예는 본 발명을 예시하는 것일 뿐, 본 발명이 하기 실시예에 의해 한정되는 것은 아니다.
실시예 1. 임상검체 분리 및 항생제 내성 균주 선별
하기 표 1과 같이 세브란스 병원 환자들의 객담과 임상 검체로부터 녹농균(Pseudomonas aeruginosa)을 분리하여 배양하였다. 균주 동정은 키트 ATB 32 GN 시스템(bioMerieux, Marcyl'Etoile, France)을 이용하여 수행하였다.
[표 1]
이후, 카바페넴 계열인 아미카신(amikacin), 아제트레오남 (azetreonam), 세프타지딤(ceftazidime), 시프로플록사신(ciprofloxacin), 콜리스틴(colistin), 세페핌(cefepime), 젠타마이신(gentamicin), 이미페넴(imipenem), 레보플록사신(levofloxacin), 메로페넴(meropenem), 피페라실린(piperacillin), 및 피페라실린-타조박탐(piperacillin-tazobactam)을 시험 항생제로 하고, 뮬러-힌튼(Mueller-Hinton) 아가를 사용하여 외기 37 ℃에서 하룻밤 동안 배양하는 CLSI 디스크 확산 시험 방법을 이용하여 항생제 감수성 시험을 수행하였다. 감수성 결과는 Clinical and Laboratory Standards Institute(CLSI, 2016)를 기준으로 판독하였다.
그 결과, 수집된 녹농균(Pseudomonas aeruginosa) 균주는 다양한 항생제에 대하여 내성을 가지는 다재내성 균주임을 확인하였으며, 하기 표 2의 항생제 내성 프로파일에 나타난 바와 같이 수집된 녹농균(Pseudomonas aeruginosa) 중 46개 균주가 카바페넴에 대한 내성을 나타내었다. 표 2에서 S, I 및 R은 항균제에 대한 감수성을 평가한 결과로, 'S'는 민감(Susceptible), 'I'는 중간(Intermediate), 'R'은 내성(Resistant)를 의미한다.
[표 2]
실시예 2. 용균성 파지 선별 및 용균역가 측정
2-1. 박테리오파지 분리를 위한 검체 수집
세브란스 병원의 오수 처리시설에서 최초 침전지를 거친 후 부유물질 및 침사물이 제거된 처리수 2 L를 채취하였다. 이는 화학 처리 시설 전 단계의 오수로 제한하였다. 수집한 시료에 1 L당 염화나트륨 58 g을 첨가한 후 10,000 g에서 10 분간 원심 분리하여 200 nm 밀리포어 필터로 여과하였다. 얻어진 여과액에 폴리에틸렌글리콜(PEG, 분자량 8000)을 10 %(w/v)으로 첨가하고 4 ℃에서 12 시간 동안 냉장보관하였다. 12 시간 냉장 보관된 여과액을 15,000 g에서 60 분간 원심 분리하여 침전물을 파지 희석 완충액 (sodium-magnesium (SM) 완충액)에 재부유하여 최종 300 mL의 박테리오파지 부유액을 채취하였다.
2-2. 박테리오파지 정제
용균성 파지의 분리 정제는 스팟 테스트(Spot Test)법)으로 실행하였다. 구체적으로, 표 1에서 확보된 균주를 맥콘키 한천배지에서 접종 후 외기 37 ℃에서 하룻밤 동안 배양하였다. 배양 후, 투명한 플라크 형성을 확인하고 파지에 감수성인 균주를 선별하였다. 감수성인 균주를 맥콘키 한천 배지에 접종하여 37 ℃에서 12 시간 동안 배양하였다. 탑 아가(4 mL)에 감수성 균주 40 μL 및 파지 용액(각각 1 μL, 10 μL 및 50 μL)을 섞어 LB 아가에 도포한 후, 37 ℃에서 12시간 동안 배양하였다. 단일 플라크가 관찰된 아가 플레이트에서 멸균 파이펫팁으로 플라크를 채취하여 SM 완충 용액에 희석하고, 다시 감수성인 균주 현탁액을 이용하여 3회 반복 정제하였다. 이렇게 순수한 박테리오 파지를 수득하였으며, 이를 YMC17/07/R4900a_PAE_BP로 명명하고, SM 완충 용액에 희석하여 보관하였다.
상기 수득한 박테리오파지 YMC17/07/R4900a_PAE_BP를 부다페스트 조약 하의 국제기탁기관인 한국미생물보존센터(KCCM)에 2021년 2월 26일 기탁하여, 수탁번호 KCCM12962P를 부여받았다.
2-3. 용균성 파지의 용균역가 측정
카바페넴 내성 녹농균들을 각각 맥콘키 한천배지에서 접종하여 배양한 후, 정제된 박테리오파지 YMC17/07/R4900a_PAE_BP를 도말된 각각의 균주에 10 μL로 접종하여 플라그 형성을 확인하고, 역가 범위를 확인하였다.
그 결과, 표 3에 나타난 바와 같이 카바페넴 내성 녹농균 65주 중 46주(70%)를 용균시켜, 본 발명에 따른 박테리오파지 YMC17/07/R4900a_PAE_BP는 상당수의 항생제 내성 녹농균을 용균시키는 것을 확인하였다.
하기 표 3에서 '++', '+' 및 '-' 는 숙주 균주에 대한 플라크 활성을 평가한 것으로, '++' 는 강한 용균, '+'는 용균이 일어난 투명한 플라크를 의미하고, '-'는 용균이 일어나지 않은 것을 의미한다.
[표 3]
실시예 3. 항생제 내성 녹농균에 대한 용균성 박테리오파지의 전자 현미경 분석
상기 실시예 2의 방법에 의해 정제된 박테리오파지 YMC17/07/R4900a_PAE_BP를 감수성 균주 배양 배지(20 mL LB 배지)에 접종 및 배양한 뒤 220 nm 밀리포어 필터로 여과하고, 상층액에 폴리에틸렌글리콜(MW 8,000)을 10%(w/v)의 양으로 첨가한 후 밤새 냉장 보관하였다. 이후 15,000 g의 조건으로 21 시간 동안 원심 분리한뒤, 염화세슘(cesium chloride) 밀도구배원심분리를 진행하여 박테리오파지를 정제하였다. 정제된 박테리오파지를 0.1% 초산우라닐(uranyl acetate)으로 그람 염색을 진행하였고, 투과 전자현미경(Transmission Electron Microscope) 촬영을 통해 상기 박테리오파지의 형태를 분석하였다.
그 결과, 도 1에 나타난 바와 같이, 본 발명에 따른 상기 YMC17/07/R4900a_PAE_BP 박테리오파지를 모양으로 분류하는 기준으로 보았을 때, 육각형 머리에 짧은 꼬리를 가지고 있는 포도비리대(Podoviridae) 과에 속하는 것으로 분류하였다.
실시예 4. 박테리오파지의 흡착능 및 1단 증식 곡선(One-step growth curve) 분석
카바페넴 내성 녹농균을 OD 값이 0.5가 되도록 배양한 뒤, 정제된 박테리오파지 YMC17/07/R4900a_PAE_BP를 MOI 0.0001로 넣고 37 ℃에서 배양하였다. 배양 후 1, 2, 3, 4, 5, 10, 15, 20, 25, 30 분에 1 mL씩 채취하여 200 nm 밀리포어 필터로 여과하였다. 여과액을 SM 완충 용액에 희석한 뒤 플라그 분석을 통해 상기 박테리오파지의 흡착능을 평가하였다.
그 결과, 도 2에 나타난 바와 같이 박테리오파지 YMC17/07/R4900a_PAE_BP의 접종 후 10분 이내에 박테리오파지의 58% 이상이 녹농균에 대하여 흡착하는 것을 확인하였다.
또한, 카바페넴 내성을 갖는 녹농균 균주를 OD 값이 0.5가 되도록 배양한 뒤, 4 ℃에서 15 분 동안 4,000 g로 원심 분리하여 세포를 침전시킨 후, 10 mL의 LB 배지에 희석시키고, 정제된 박테리오파지 YMC17/07/R4900a_PAE_BP를 MOI 0.0001로 넣고 37 ℃에서 5 분 동안 배양하였다. 배양된 혼합 시료를 12,000 g에서 10 분 동안 원심 분리하여 얻어진 펠렛을 10 mL의 LB 배지에 희석시키고 37 ℃에서 배양하였다. 배양 도중 10 분 간격으로 시료를 채취하여 플라그 분석을 통해 상기 박테리오파지의 1단 증식 곡선을 평가하였다.
그 결과, 도 3에 나타난 바와 같이 1단 증식 곡선 결과 약 117 PFU/감염 세포의 높은 버스트 사이즈 (burst size)를 나타내었다.
상기 결과를 통해 본 발명에 따른 YMC17/07/R4900a_PAE_BP 박테리오파지는 카바페넴 내성을 녹농균에 빠른 시간에 흡착할 수 있으면서도 높은 버스트 사이즈를 나타내어 매우 우수한 용균 효과를 나타내는 것을 확인하였다.
실시예 5. 생체 외 항생제 내성 녹농균에 대한 박테리오파지의 용균능 확인
카바페넴 내성 농녹균 (1 X 105 CFU/mL)에 상기 실시예 2에서 정제된 박테리오파지 YMC17/07/R4900a_PAE_BP를 MOI 10, 1, 0,1의 양으로 각각 처리하고 시간별로 OD 값(파장 600 nm)을 측정하였다. 음성 대조군으로는 PBS+SM 버퍼를 처리하였다.
그 결과, 도 4에 나타난 바와 같이 카바페넴 내성 녹농균에 대하여 음성 대조군에 비해 박테리오파지 YMC17/07/R4900a_PAE_BP를 처리한 경우 OD 값이 감소되었으며 숙주인 녹농균 MOI가 증가할수록 OD 값의 증가 속도가 더욱 감소되었다. 즉, 박테리오파지 YMC17/07/R4900a_PAE_BP 처리에 의해 카바페넴 내성 녹농균의 생장 속도가 감소되었으며, 특히 MOI가 증가할수록 생장 속도가 감소하는 것을 확인하였다.
상기와 같이 본 발명에 따른 박테리오파지 YMC17/07/R4900a_PAE_BP가 숙주균 생장 속도를 저해하는 것으로 보아 카바페넴 내성 농녹균에 대하여 용균성을 갖는 것을 알 수 있다.
실시예 6. 정제된 박테리오파지 YMC17/07/R4900a_PAE_BP의 온도 및 pH 안정성 확인
SM 버퍼 40 μL에 정제된 박테리오파지 YMC17/07/R4900a_PAE_BP 1 μL를 넣고, 4 ℃, 40 ℃, 50 ℃, 60 ℃, 70 ℃에서 10 분 간격으로 1 시간 동안 배양한 후 숙주 세포와 함께 플라그 분석을 수행하였다.
또한, pH가 4, 5, 7, 7.5, 8, 9, 10인 SM 버퍼 각각에 정제된 박테리오파지 YMC17/07/R4900a_PAE_BP 1 μL를 넣고 4 ℃에서 30 일 동안 배양한 후 숙주 세포와 함께 플라그 분석을 수행하였다.
그 결과, 도 5에 나타난 바와 같이 박테리오파지 YMC17/07/R4900a_PAE_BP는 4 ℃에서 가장 높은 안정성을 나타내었으며, 50 ℃에서도 70 % 이상의 활성을 유지하는 것을 확인하였다.
또한, 도 6에 나타난 바와 같이 각기 다른 pH에서의 박테리오파지 YMC17/07/R4900a_PAE_BP의 안정성을 확인하였을 때, 첫 7일 동안은 pH 7-10에 비해 pH 4-6에서 높은 안정성을 나타내었으며, pH 7-10에서는 60-80% 활성을 보이며 초반 7일 동안 pH 4-6보다 다소 낮은 파지의 활성을 보였으나 이 활성도가 14일까지 유지 되는 것을 확인하였는 바, 대체로 높은 안정성을 유지하는 것을 확인하였다.
실시예 7. 분리된 박테리오파지 YMC17/07/R4900a_PAE_BP의 전체 게놈 서열 분석
본 발명에 따른 박테리오파지 YMC17/07/R4900a_PAE_BP의 특성을 규명하기 위하여 전체 유전자 서열 분석을 Illumina 시퀀싱 플랫폼을 이용한 전체 게놈 서열 분석 방법을 기초로 분석하였다.
그 결과 표 4 및 도 7에 나타난 바와 같이, 상기 박테리오파지 YMC17/07/R4900a_PAE_BP는 원형의 dsDNA(circular dsDNA)를 포함하며, 88개의 ORF로 구성되어 있다. 88개의 ORF 중 22개의 ORF(ORF 1(서열번호 2), 2(서열번호 3), 3(서열번호 4), 5(서열번호 5), 6(서열번호 6), 8(서열번호 7), 9(서열번호 8), 13(서열번호 9), 14(서열번호 10), 15(서열번호 11), 16(서열번호 12), 19(서열번호 13), 48(서열번호 14), 62(서열번호 15), 64(서열번호 16), 65(서열번호 17), 73(서열번호 18), 79(서열번호 19), 82(서열번호 20), 83(서열번호 21), 86(서열번호 22), 88(서열번호 23))이 기능 단백질이었다. 용균성과 관련된 후보 단백질 중 ORF 9(서열번호 8, lytic enzyme)에서 키티네이즈 도메인(chitinase domain, COG3179; E-value=4.76X10-67)이 확인되었다. 추가로, 박테리오파지의 용원성(lysogeny)와 관련있는 유전자 (cI-repressor, cro-gene), 유전자 재조합 관여 유전자(integrase, recombinase, resolvase), 내독소(endotoxin), 및 단백질 분해효소(protease)와 같은 유전자가 박테리오파지 YMC17/07/R4900a_PAE_BP 전유전체에서 발견되기 않아 인체 적용에 안전할 것으로 판단된다.
[표 4]
전술한 본 발명의 설명은 예시를 위한 것이며, 본 발명이 속하는 기술분야의 통상의 지식을 가진 자는 본 발명의 기술적 사상이나 필수적인 특징을 변경하지 않고서 다른 구체적인 형태로 쉽게 변형이 가능하다는 것을 이해할 수 있을 것이다. 그러므로 이상에서 기술한 실시예들은 모든 면에서 예시적인 것이며 한정적이 아닌 것으로 이해해야만 한다. 예를 들어, 단일형으로 설명되어 있는 각 구성 요소는 분산되어 실시될 수도 있으며, 마찬가지로 분산된 것으로 설명되어 있는 구성 요소들도 결합된 형태로 실시될 수 있다.
본 발명의 범위는 후술하는 청구범위에 의하여 나타내어지며, 청구범위의 의미 및 범위 그리고 그 균등 개념으로부터 도출되는 모든 변경 또는 변형된 형태가 본 발명의 범위에 포함되는 것으로 해석되어야 한다.
한국미생물보존센터(국외) KCCM12962P 20210226
<110> MICROBIOTIX CO., LTD. <120> BACTERIOPHAGE SPECIFIC FOR PSEUDOMONAS RESISTANT TO ANTIBIOTICS <130> 21PP30872 <160> 23 <170> KoPatentIn 3.0 <210> 1 <211> 63897 <212> DNA <213> Unknown <220> <223> bacteriophage specific for Pseudomonas aeruginosa(YMC17/07/R4900a_PAE_BP) <400> 1 tctgcccgtt ccgcacgcgg tcagccagca cgtcaaggta ctgccgaact gccggatggc 60 ttgcttcctg gccctctagg atgcgatcga cctgctcgaa cccggctacc ggcgcgcggc 120 ggctcgcacg cacaccttcg ggctgcatgc ggttcaactc acgaagcgcg gcgtcacgag 180 attgcatcgt gtcggacagc tgcgcgacgc gctcctgggc gatgggatcg aggtccagca 240 cggtatcggc cagttcttgc cgcgtggcgt cgtcgaggtc cgtacggttc agcagggact 300 ggcgttccag ttcgagctgc tggctgcgca gcgtgtcacg caccagactc tgctcagctt 360 gctggtcaac cggtaggttg ggatcgatgg tgtccggcgc acgcgcagca cgtgcatcga 420 gcctggacgg catactggcc agggcagtgg ttgtgccgct gacggccgcc accggcccgc 480 ccccggcagc accagcagct gcgttttcga ggaacgactg ccgagcttct tcgtcggtga 540 tcgggttcac tccgatctcc gggttgtaga acgactgcgc gccgcggctt accacatcct 600 gcgcgccttc ggtcagtcct tccagcgccg tcgacgtgcc gaactcccgc gcaccgcggc 660 cgatagcacc agcagcgctt tgcgctgcgc cgccggcagc ttcccgaccg agccggccga 720 ggatgcgagc ttcaggcagg atctccagcc cggagctgac cacaccggca ccggtcgagg 780 ccagcgctcg ttcagctggg gtagcagtgg aattcggatc ggtccgcatg gcgtaggagg 840 tttcgccagc ggtcggtgcc aagacagccg cgccgccggc cagcggaccg ccgacagcgg 900 tagcgcccag ggcagcggca ctcaccggtg cggattcacc ggcggcgttg acgacgaatt 960 cccctagggt acgggcgtcg cggatatccc ccagctgctg cgccccggcc tgctgcgact 1020 gcgcctcagc catcttccga tcggcgtagt tgtacaggtt ctgcgcggta gaagacatcc 1080 cagcggattc agccagggtg ccggcgtaat cggcggacag cgcggcagtc tgcgcgttgc 1140 cccggcgcac agccgcgccg gtcaagctcg tagggttgta cgggagattg ggatccgcct 1200 gcaccggtga cgtttccacg tcaccaaggg gccggacggg acgagtttcg tcaaagggcg 1260 tagtggccat ggcggtcctg cgctaagtcg gcggtgagat tccgcctact atagcgcagg 1320 acgccgatta gttggacagg ctgtccaaac gagtgcgcag gtccgggtcc aggccaggga 1380 acgtgcggat ggctgccacg gcgcgctggc ggtcgtccgc gctcatgttc ctcgactgct 1440 ggagcagccg gcgggcatag gcgttggcca gcggagcgaa ttggctggtt cgttcgtcct 1500 gctggcgcga ccggcccagt acgccgggat tgttgctctg gtactggaat ccgcccaggt 1560 tgtacaggtt gccatcccgc gtgcgcagca ccgggtcgcc gttgatgact tggatcgagt 1620 ccacgttcga atccatggtc gggtccagta cgttaccgcc ggccaccact gcgttcggcg 1680 tttcggacag agcgttgcct gctaccgcac cgccgaggcc gccggcggct gcgcccagga 1740 tagcccgccc tgcgctgacc gccctccccg cgggggtacg acgtgcggca gcggtcaaac 1800 cgccgagtgc agcgccaccg aggccaccca ggagcgtacg agggtcggtc tggtcctgct 1860 gcccgcgctg caccgtctgc gctgcgtcga agaaccgctg ctgggtagtc gggtccattt 1920 cgctgaccgg ccgaaggctg gccacggagc catcgctgtt caggcggtac acaccacggc 1980 ggaagttctg gtacgcctgc tgcacagcag cgaggcgttc tcgtgcctgc ggattggtct 2040 gcgattcgct gcgcagcgct tggagctgct gagcgtaatc ggcctcctgc tgctgtaccc 2100 agttcggttg atactgcgac aggaacgctt gggtggcctg cggcactacg gtttcgccag 2160 actccgggtc ttgacggccg aactgggcag ccaaggcggt gttgaagtcc tcccggttcg 2220 tgcctgcgaa gttcgcgtcg tcggccgatg cttgccgccc ctgctgcatg cgcagacgtt 2280 cgaggcccat cagctgctgg aacgcggcgt tctgagcacc gagccgggca cgaagcgcac 2340 ggtcaccgat ctcagcctga cgctcgttgt tgacgaaggt gtccgcggtg ccctggcgga 2400 tggtgcccat ttcgccgaga cgacggttct cacccatcag cgcacgggcc tgcatcaggt 2460 cggcggcact gccgctgcgg atcaagctct ggatctggcc ttcgttgatc cgcatccgct 2520 gctgcgccat ccgagcatcg gcaacagcct gacgacgagc gtcgcgtgca tcgagttcgg 2580 cgatcgacgg cacgccggcg gacgagatcg tgttggccag cgggcgagcg ctcgcagccg 2640 aactcccggt cgtaccggat gcggcaccgg ccccaccggg gatattggtg aacgtcggga 2700 caccaccgac ggtagtgcgc tgcacggtgt cagtaccgcc gccagggcgc gcgaacgaca 2760 ggctggtggg cgtagccgcg ccgagcggtg cgctcggttg gacagcagtc gcctcagtcg 2820 gcgcagcggc agcgggggag ggagtagccg gcgcagcagg cgcagtagcg gcctcggcaa 2880 cgatatctcg ctcggtcact gccggcggag taaccgccgg ggccggggcc gtcactgcac 2940 cggcggtcac cggctcggcg acagtagtac cgcccagcgc gcggaaccga ggggtattac 3000 cctgagcgtc ccgcccggtg atcgggtcta ccgacatgct gctttcgcct ccgggtccgg 3060 tcggcacgtc cccgtctgcg gcggacacca tgacgttctc acgcggggct tgaggtgcca 3120 aaccacgctg ctggaggtct tccagcgggc tgacaccgga ccctccaata gctcggtcaa 3180 gggaacgaac agcgccatca ccggcggcgt accccgcgct gcccagggca gtcgctccag 3240 caataccggt ggcaatggcg ccaggaccag aaggagcgcc acccacaccg ccagcagccg 3300 cgccaagagc acccccaaca ccggcaccca ggagtggggc ggcatcgaag ccaacctggc 3360 gagcagtttg tccaagatcg ccttcggttc cctcgtatac gcggcgagca ttgtcgatag 3420 ccggaatagc accagccaat gcaccgactg cgccgcccaa acgtcggggg gctacgcggg 3480 cctgctgcgc gccgccgagc acgcggttgg acttggccag cgcttcctgc acaccggacg 3540 gcatgggttc cggcggaagc ccacgcatcg gcgcagtgat ggtacgcgtc gcggcgttct 3600 gccggatacg cacagccgag tcgtcagcag cgcttgcggt gggcggcagc ccgctttcac 3660 cgcggcgcag gggccggcgc gttccgtcgc caccggtgta gtcgatctcg tcgacgggaa 3720 tctcttcgac gccgtatccg agcggttgac gagccatgct tcagtcctca gttaaaattc 3780 ttcgcagtat tctatgtcgg tccagaattt acccacaacc ggcggctccg gcgggagcag 3840 cggcacgcgg taaatctggc cattgtcgaa cagcacacac aagccatcct gcactttccc 3900 catgagcggc gagagaatac cggagctggg gaatccagtg tattcctggg tgaaagtcgc 3960 accgataaca gtcgacgaaa ggatgccgtt gttcccgagg acgtaaatca ggtcgtccag 4020 tcctttgacg aatgcaaccg gttgttggtt tgtaggtacg ggcgaagtct gctgccaagt 4080 tccgccgatg cgagcgaagt acgagtcgaa gaaattcgaa ccatcattgg taatgcgcgc 4140 tgatacgata cctacttcac catcgaagta cgccgcgggt gccgggttcg gttgctgcgc 4200 attgacggcg atctcgtaag tgctcgtgtc aataccaagg taaatctgcc cgtcgttagg 4260 atacgccggt ttgcagataa ccagactatc gtagaaatac gtggtggccg gtacgatagg 4320 atactcaaca tgcgtgagta tgctgctacc aacaataccg ccggtaagga ggttaccgcc 4380 attgctggag ttccaagcat tgcgcccagc ccaactcagc gcaccctcct tgttgttata 4440 gaacgtctgg atagtgaagc cttcttggtt accgggtagc atctggatca gttctagatt 4500 gaccagatcc tgcgtacggt agatcgctct gttccacggg ctggattgca tttctaccac 4560 aaaccagtag taccccatgg tgatatcgta gccggcagtg acgaagtttc tgtaaccgct 4620 cggcatcgca acttcggtcc acgacatacc agcatcatcg gagcagaaca ggtaactcac 4680 gtactgccca ccgggcgtgt acccggagct ggtaagcgta agatgcccgt cagtaagcga 4740 cccgtcaatt tgggccaagt cgccagggtt gatcgccggg ggcagccccg tagagttcca 4800 agtcaaaccg gcgtcgttcg agtacaagac gttcaaagag aactgcgtgc gaccgacgag 4860 aaccaacatg cgttggttcc catcggtgac caagttcgag acgaaaccaa ctccgtcgta 4920 tacgagttct ggagtgacag ccattacggg ttacctccac cggccgtagc gctggcgatc 4980 tcggcctgga gcgcagactg ggcgtttgcg gcagcagcgg cggcgtcacc gaacgcgcgc 5040 acagcagtgg ccagggcatc cgccgagttg ttcacgttgg acgcagcgat cacgttccga 5100 tcgttgctga tgccgccttc catgcgagac tcagcggcgc gcagcctgat ctgctcgaac 5160 ccaagctcga cttggtagta gttggccagc gccgaggtca acgagctgta ggccatggct 5220 ttgattcgtc cggcttccaa gtctttattc ggaatgtcga gccactgtcg gtagaaatca 5280 gccagcgcct gcatgatgcc gagtttcaac cggatagcct gctcttccgc gaacttcatc 5340 aggtcgagtt tgatctcttc ggcgcggatg gtttgcgcgc ggttcacgtc agcgatggca 5400 tcggacatgc gctcttcttc acgcgataca gcaccgacca gggcaccggg agggagggag 5460 aatcctcggt tggagaaatc gacacggatc tgctggacag cgctttcacg tgcgcgagtc 5520 tccctgtcgc ggctgatgtg ccattcagct tcgaacaccg acttgtccag gccgaacggc 5580 ttctgtccgg taaggatgcc acacagccac tcttcgggct tggtgcgcag gcaggccgtc 5640 aactccggga aatactgctc aagccacttc tctacctcgc cgtcgaggaa cgccaccgtc 5700 tcaccagtcg tatcaccggg cagcaggtca ccgaagttcg gcggcggctc aatgaccggt 5760 ttctgtagcg tgtagctcag tgacggcttc gaaagcggcg gcgcgaagtt gttctggata 5820 cgggaggtgg tttcccgcgc agtgcgcagg gcatcgttaa ccgtgtcctg caaaaattcg 5880 atcgtatcgt cgatggccat gttcaaatcc cctggatgtc tttgatgcga ggcgcgatca 5940 tcgttccgca gtaccgagca ccagacgctg agccgtagtt ggcgatctta tcccaagtcg 6000 cccccgagtc gtagctgatg taggtgaagc cgtgttcagg tccaggctcc ccggcgaatt 6060 gtgctttccc gccgatggag aacagcaccg tggcgtcaat cagtacctct tcagtgttct 6120 cgtcgacgac ttgcttcact ggcgcgtcca tcagcccagt gtagtaccag tcacgcacgc 6180 cgttcttcaa ttcctcttcg actacgccgg ccagctccaa ggtgttcttg ttcacgtcgt 6240 acacagccat cgccatgttc ccgtcgatga aaccgatgtc ctcgttttcc tggaattccg 6300 aagtcaccgg gaacaggaat ttcccagcgc ctatatgcag gatgttcccg tacatggagt 6360 tacggaacca gttgcacggg cggaacggga ccatctggct gaacggaata ctcacgccgt 6420 ccttggtcgc caccacgatg tcgatactca cgttcggtcc gatgttcccg ttcgggtcat 6480 ggatgaagtc gctactgaaa aacacgcaca cggcattcgt gccgtccgaa tcagctccgt 6540 agatgtactg catgtcgtgc ggtacaccag agaacgtatc gatagttccc ttggtcggcc 6600 cggccaccgt ttcccttcga acgatggtgc cgaactggtt cacccaggcg cagtctacgg 6660 accaatacgg cgtactgatc ccgccattcg gatcgctcgg cggatcggtc tggttgacgc 6720 tgaaggaatc gaacagcacg ctgtcacctg tgtcgagcag cgccaagccg gacgggaaat 6780 gcgagttcgc catgtagcgt tcggaatccc cgttgatgat cttccacgga cggcggtact 6840 gatcagcttc ctgcctggaa tcgatcacgc tgctgccgac gagcagcgcc gtgccatcct 6900 gctggatctg caagctggcg atccacaagc cgcgcgcgcc gtatcgatct tcatcgtcaa 6960 ccatgtcgaa gacagcgtgc gccaccagca gtacacggta aaacaagccg atgtcttcgt 7020 cgttcccatg cccgatcgtg aggccgcggg accacggata ctgcgcgttg ttgaacgtgg 7080 tggccgccgg gctggtaggg tcatacggcg gtgggttcac gcgtttgctg aacggcatca 7140 cgttgttcgc gtcgagcatg atcgagtcag agacacgcat ggaccacggc tgtgtcttcg 7200 gcgcatcctc gccggggtag ttgccgtccg actcgatcca cccagttccc gtttcggcgt 7260 tggcggtgta cgtggcacgc atgaacgacg gcgcaagtac aggcatgtcg tagaagaacg 7320 tgtccgcgcg cgacacaaac gcgaacgggt tcacgtcaaa gacctgcggc atgttcaggt 7380 agttttcgag gtgaatgatc ccgtagtcag gcaacgcgaa cgcgctcggc cgtacaaggc 7440 ttccggtggc gacgctctgc gagaacgtcc ccagctccat cactctgtag ccgcgcgtcc 7500 ccatgtggct aggtagcagc tcctgcacca cgatttgctc cggcggttgc ttcaagggct 7560 tgaggaacga atcccttccg agcgggaggc ggatcagcgg atggtgagtc tgcgcgcggg 7620 acgtgccgtt gtacgggtta ccgcacacca cgacgtaggc ttcggtgtcg agcaccatag 7680 cagtgccgag catgttgctg cgcacgccgc gaacaatata cccgtcgatg atctcgacct 7740 tggtggcgta cttcatgggg aggttgccga gagactgggc cagtttctcg gcgcgcttca 7800 cgaggtatgt gccggagatc gtcaccggct tctttgcaat ggtcaggcgc atcagttcct 7860 ccgatggatt ctgcgggagg aaaccccgac ctccacttcg atgttgtcca gatccgcgaa 7920 cgaagcgtct tcgacttcca ggcgaagcct ccagtggcga gcagcgacgc ctttcgcaac 7980 accatccggc gtgcggaact caggactttc gccggcaagg gtgtacacgc gctcttcacc 8040 gtcatcgccg gtgatgcgga agtacacacg cccgtccgtg gtgataccag cgtacgcgct 8100 cgacaaccgc ttggtgttct tcacgccgta gtcgtcagca ccgaagtcga tcaacgcgcg 8160 gagcagttca ccatcgtccg tctcaccttc gaggcgatac aggccgtcgt tcttgatccc 8220 gaacgtgtca ttacccacgc gggcaaagcc ggtgaagccg aaattctggt aggtggtcag 8280 cgcgccggtc agcacgttga cggcgtactg gagcgcagtc tcccgcgcgg tgctgatgtt 8340 cgagtagacc gccagcccgt cgcgcatcat cagttcgatg gtgctttcca gagtgaacgt 8400 cgtgttcagg ccgaggtagt cgtaggcatc caggctgacc agcatgatca agtcgatggt 8460 gccgctgatc tccatgccgt ccgtgaccat gagcagcacg ggtgcgtcga gcatggcagt 8520 gctgtataca ggcatcggct ccggcaccat cagggtgccc ggcggccaga ggttttccca 8580 aacgtcgatg atgtaccgag acggccactt gccaccggct tctgcgtacg gacgatccga 8640 gatcaaccgc tgcggcgtcg ggatcgtgtt gtccaggcca agcacttcgc cggtgaggat 8700 ggtggtactc ccgaacggtc gagggatatg cgccgagacg taggaccatg gagccacgaa 8760 atcggacgta ccggcttgaa gcaccaagcg cggtagagtc cgcaccaggg tagcgccgga 8820 gtagttcgaa atgttcccca gtggcatggg gacgataccg ttgataacct gcggctcgac 8880 ggcatctgcg atcagtacca tccgcggaag ttcagaatca acaccggcat acgtcgcttc 8940 gtagatggtc gggcgaagac gcgggaccag cgcattgagc tgcgcagacg agttaccgcc 9000 gaacgatggg tcgttcacga agtcgccgac cgagtacagc gtggcgtcag cgtagatcgt 9060 cccgccggaa ggcgtgatgc cattgacgat ggggcgaagc gaagaatcat cgttcgggtt 9120 gacttcgtag aacgtgaccc ggccgccgac gcgcgacatg gcgtaccggt tggtgaaccg 9180 gaagaagtct tcgaagatga tcacaccacg atcgtagata cggaaccggt cagggtagaa 9240 ggcgaacgca tgtgtcgggt ggccgaacga gttgtcgaag cgtccatcag agaacccaac 9300 aaggacgccg gtcggtttat ccggcacggt gaacttcagg atcgcatcac cttcaacagc 9360 cgtcacgctg cggccgccag cgttccatcc ggtcttcgga tcgacgatgg tcttcccagg 9420 gataccgggt tcggacggta cggcaggaac gcagatcgtc acattgacga ccttccacat 9480 cgacgtgtac tgcggaacct tgtcggtgta ctgcggaacg ccaaccgcat acgaaccgga 9540 gccggtggcg ctattggcgt tatgcgatcc gaagtaatca tcgccgatcg gctggccgcc 9600 gtttacgttc gggacgatac gctgctcggt gtagcagtac gccgggcggc cagggacagg 9660 gggccgctca gggaacgtat tcgtttgccc agtttttcgc agcccgttgg ccattacgac 9720 tccggcatgg tcaggtagaa gtattccagc gactgaaccg caccgctggt gaggttaggc 9780 tgagtgatgt tcatgtccgc gccgctcaca gcaacggtgc cctggatgcg cggatcgatg 9840 ttgctcgccg atccatcgtc cgtgggctgt accatgcgga agaacgatgc agtgccagtc 9900 gcaacacagg tgccgttcca gacctcggac agcgatttgg tcaaagtgcc gttgctgacg 9960 gtgctttcga agctcacgcc gttgccggag ccgttcacgc tgatctctac caacagcacg 10020 gccgagccga gcgtagcatc agcggtggcc ggagccgagc cggagtagat tcggattacc 10080 gagccggtca gcaggttgcg aagaggttgg tcggcgatca tcgaattgcg cagaccagag 10140 ctgtacttca gtgccatggt tgtgtcctca cacgatgttg gtcggcacgt acgtgatgcc 10200 ggagataagt tgggcggtct gcccggtggt gagcggtttc ggggatgcga atcgtactac 10260 cgacagaagc agcccgttgt taccgccttt ggtgctcgac gacacgagaa acgcaccgta 10320 cacggtgcgg tcctgcgtta cggtgaactg cgcgcggttg gcgatgttgt ccatggtgcc 10380 tactccgtcg tacgctcggt tccacacggg gcgagtcgtt tcggaatagt tcgtgaactc 10440 ctgcatgttg gtcgggatgt cagcggcagt cgtcgaagac gacgggatgt agttgccggc 10500 gaacagaccg caatagaacg tgctgatcgg cgcggtatcg ccgaacggcg accgaataag 10560 gaaatccaca ccgacctgcg ggatcaggtt gtggacgatc tcttcatcca cgacggtgcc 10620 gtccttgtca cagatcacga gccggtgaat gaatccgtcg aggatcactg cgctactggt 10680 cattgtcgat tacctcaagc tgccagaaat ctccggctcc gagtgaattg gtggtcgttt 10740 ggcctttcag ggtagtgacg accaactggt taccgttgtg ttctagcacg ccggcagcac 10800 catcagtcgc aatgtcggga gcatagttta cccggtttgg cagttcaatg ttcccgctgg 10860 cgtcgcctat ggcttggccg taccgggtaa accaagccgc gcggccatcg ggcagcttga 10920 cagcggtccc gcgcactgcg ccgaagttcg tcttgcgcac cgaactcggc tcgtccgttt 10980 cgacatcggt cagccagtag gtttcctcgt cggtggcgac gaacacgccg gtgtcgacgc 11040 tggcgagcat ggtgatgtcg cgcggtagct ggatgaatcg agtgatgggg ttggtcaagt 11100 gcggccacat cggctcggtc atcacgatga tgttgttgta ggccccaacg atgacagcgt 11160 ggtgcgacac aaggagcgag cacggcggca taggggtcat ttcgtcggta gtgaaccgct 11220 gagtgttatc caccgtggac gtgatgatga acgtgttcag actgaccagc ccctgggcgt 11280 acaacgtcga tccgttcaca gagctgcaat acaccgtgca ggaccgcggg tcgttgcacg 11340 aaatctggat cgctttacca cccggtacgg acacggcaac ggcgtcagca ccggactctt 11400 caccctgctc gccataagct gtcacagcca ccttgtacgt tccggtcggc aagtggccgt 11460 cgacgagact gatggtgtat accggcgacg gcactcccca cttccgaacc gtgttgccgt 11520 cgaaacgaag gctttcggtg ggggtagaca ggtacagctg gttgttgtgt tcgcagccgg 11580 ccacttcacc gttggggtta accgacccga cgacatgccc ctggttggtc ctggcgtcga 11640 atactttgag gtcgccgcca tcgacgaaca gaatggccgt gccgagcggg aacacggccc 11700 ggccagcggc gcagtcattc accttgacga agccggtacg cagctcgaat ttcccaccgt 11760 tggtgggatc catgttcatc gccttgacga cggagttctc cggcagccgc tccggcttgg 11820 cgatgttgtt ggacccgctg gcccagttgt cgcgcgtctc gatgctcatt gcgccagtac 11880 cttcttggcc ttctgccaac ggttttccct gtcctcagct ccattcatcc cgccgtttat 11940 ccggcgggtg atctcgctga accgaccctg gtccgccagg gtattgcagc ccttgtctcg 12000 ccacgtagcg gcggcggctt cgaggccgcc gtcgtaggtg gccatcatgt ccgggtcatc 12060 tacgaacggg cgtccggtca tgacctgtgc cctgcggtag ccatccttgc cggtgacctg 12120 caacgggccg cgaccacgat accgccagcc atcaccactg agcacgtcgc cattgcccat 12180 gcggttggcg tacgtgttgt tggcgatggc ttgcgggttg cgcgcgattt gcgtagccag 12240 ggcgttgggg ccaccgctgt gtgctttgta gcgactgggc cacacagcgg ctaaacgggc 12300 agcgctgtag ttgagatttt cttcgaagcg ggtgaggccg gaggattcat ggccgatttg 12360 agcaaggtac gccgcagcac gcgccgtcga cgtgatgtcg tagcggacca tgctgcgtac 12420 caggggttcg aatacttcgt cgggagcgtc agggaacaac gcctcgaact gctgcttact 12480 gatgaccatc taagacctcc ttcagccatt tctggagttc cacaagacgg tcgcgggaat 12540 ccttggcgat taggttgttg ctggtcgccg tttgaagagc ttccttgtca tctgccgcca 12600 ccatcagctc gaactcggcc ggaactacca tcaggcgctg gtcgggtttc gggaacgggg 12660 cgcactgctg cgtcgaatcc aagggaggcg ttgtagacgc gcacccaatc aggaggaaga 12720 acgcacttac cagcagcggg gttttggaca tagcggacga cctctttaac gacggtttga 12780 gtccgcacct cggtgtcttt ttgttgaaca tccacacggt cggtgctggc cgccgtgatt 12840 ttagcgtctt cgcgcacttt ttgcacagct gctgcccgct gctggtcagc agcttcgcgg 12900 gcctgggcca gcatggcggc tttctcgact tcgcaacggt ccccgcggat cgtccacccg 12960 gctgcgccgc cgaggccggc agcaaccaga aggctgagca ggatcaggaa tggggttggt 13020 tgcataccct caccttgttg ccgatgaagg tgttcaccaa ggaccacatg aacatcgcca 13080 ccagcatgtt gaagccgatc aggatcgaaa gcccgtaccc ggactgcacc agccgggcag 13140 gctgctcgga ccaaatcacg accatggcca ggatcgccag aaggctcatg gcaccgatac 13200 cggccacgag ggtcttatca tcttctcggc acttctcagg gagtcggaaa aactcgacta 13260 cgcgggcgaa cgtgatggcc caaatgagcg acgaaatgat ggtgatgggg agcatcggag 13320 cctcctacgg gaaaacccgt ttgaagaatg ccagcacccg ctctacgacg gtagcttcga 13380 gcgccgtcag gatcgggtag gcaaagaaac cgagcagcat cagcaagctg tctcggtact 13440 cgctgggagg tacgaatccg ccgagcgcct tcgcggcgaa catggcgatg aacacgttcc 13500 ccaggaacaa agagacaacg aacttcttgc ctcggttcag gaacacatgg ctagccgcgc 13560 cgccgaaccc accaagagcc atggcatata gccaatcgct gatgtccgac cagaaccttt 13620 ccatgtctac ccctaatact cgttgtagcg aatcggctgg aacgagcggt ggcttatggc 13680 ctgcgactct ttgatgtcgc cgagttccat gccgaacagc cgaagttgct cattcgattc 13740 cgacttgtcg aacacctcag cgtcttgtac gagcaggccg aggtacttca tgtagaacag 13800 cacggcacgg tcgtaccgag aattgatctc cagcttgtcg ttgatcgtca ggccgcatac 13860 cgggcgacgg tacgcagcga tagtgagctg gagcgcggtg ttgggcttgg ggcggtagag 13920 cgccagttcg acatcgcctt gctggtcgaa ctgcaccgtc aacgtacggt tgctgccgtg 13980 gcagttccaa gcatcttgca cgccgaatgc cgggagctga tcttctacgc agttgatctc 14040 gacttcgccg cgctgggatt cgatccaggc gcggcgagga cggatgatcg cctcgtccat 14100 gatgacgatg ccggtcccag gctccacctc aagggtgaac tggccgacca agcagagggt 14160 tttctcggcg atcttcagct gagcttcccg gatgtagctg accagcagat cgttcgacca 14220 gaagtaaggc tggaccttat cccgcatttc ttcccggaac gtcgtgacaa gatcagctac 14280 acgggtgccc atggcattac tccggcttgt cggtctggta cagcttccag gcggagtcgc 14340 gttcagcggc tttcacttcg aagccggtga tggaggcgat tgcttcggtc ttcggcttac 14400 cgccggaggc gaagtcggca gagtcgccgc gatccaccag agtcttgatg gcggccagga 14460 tctggtcgac gcgttcagcc gcgttgttgt cgatctgctg gtctacggtg gtagcggtgc 14520 ccggctcgcc ggtgagcttc agggaagcgc gcaacttctc gtcggtgatg ctgttcacat 14580 cgacgcaacc agcttcgcgt acagccttca gcacgaggtt gtggttcggg atggaacgcg 14640 gtacgccggc ctcgaaccga aacgcgtgcc cagtgatggt ggccacgacc tgatcggtca 14700 gggagacgta ttggacggtg ttctggacgg gggttttgcc agccatagtg atgtgctcct 14760 acgctgttcg ttgggggatg aaaacagggg agtctttcga ctccccaagc cccgtgaagt 14820 gtatcagttg tacgccgggg agccgtaagt ctcgttgccg cgaccttcga cgatgtaggc 14880 cagcaggaac ttgaacttac cggcggtgcc accagtggaa gcggtagcag tgaaggtgat 14940 cactgcgccg ttcgggtagg tcagcttggc cggagccagg actttcgcgc cggtggtttt 15000 cagatccaga tcggcggcga tgccgtccgg gtcggctgcc agccccggct cgatgacgcc 15060 gatgtccagg gttgcagcac cggcagcgtt cgatgcggtg gtgaccagca gcttgctgat 15120 ctccgggacg aggatcgcgc cgttttgcaa ttcgagggtc agggtagcgg cctgaccgtc 15180 gaccagatcg ctgaaatcga gggtctgctc gatgaacagc gggtactggc gtgcggtgtt 15240 ttccagagtt gccattttcc tatcctccag aggactgggg aacgtggccg cttaggcggc 15300 cacgtacacg ttgatgacac cgaagtcctc ggtgttaccg tcctcgtaga tcgacgggaa 15360 ctgaggcttc aggaagccga ggatcttcgc cacggagata ccgtgcttgt tgtcgtagtc 15420 gaattccttc tcgacccagc gcgggttgcc gatatcggcg aagcccagcg cctgcgcgcc 15480 gcagaagagc atcgagcagc cgtcaacgtt gccggaggca ccccacttgg cacccggagc 15540 catgccgcgg gtgttgtaca cgtggcggaa ctcgtgaatc accagaccat ccacggtcac 15600 gatgccgccc ttgaacagcg ggttcacgtt gccgcgggtg taaccgctac gcaggttggc 15660 gatgtagtcc gggtccagct tcagcttggc catggccagc gggtcgagga acacgtgata 15720 catttcctcg ccgccgtcgc cgcgcagacc acggatgtac ttggtcttcg cgtacgcctt 15780 gaggttgacc agcagagcgt agctcggggt atcagcggcg gtaacgtcgg aggtggcggc 15840 gttcggaacc agcaccttgt tggtgccatc ccagcgcaga cgacggttgg ccgaaggcgg 15900 agtaacgtcg gcggcgaagg tgaggttcgg gaacggcgag ctaccacgca gcgcaccgtt 15960 ggtgcgatag gcatagctca cgccggccag cgacaggaac gccagttggt ccatacggtc 16020 ggccagccag tacgccagca tgtcgcggct ggtagtacgg aagttgacga tggaacgctg 16080 gtcggccatg cgaccttcgt ggacgttggc ggcgcgcatc tggtccagct ggatgacggt 16140 atcgaaggcg gtcagcgcct cttcgttacc ttccagttgg ttgtcgccga ccacaccgtc 16200 gccaaccatg tcagcgatca gggtgattac ggcgcgtgcg cctttctcgt cacgacgcag 16260 ttcggtgatc tgctggatca tcgagttggc atcggtgccg aggaacatgt tgatgaacgc 16320 ggcgttacgc gcttgccgcc agaactgaag ggaccatacg gtcttctgtt cgttggtcag 16380 gcgcgcaaag ttggtgtagt taccttggac gggcaacggc atggctgcat cctcttctgc 16440 ggcatagtgg aaagtggttc agttctgagg tgtaagctgc gcgcttaccg gcggacttgc 16500 ggggaggtgt tgcgtggtcg ctgcgcggac ctggcgaatg cgcaaactat aggcacaaaa 16560 aagcccggtt gcaacaaccg ggctttgtgt tccacgtgga acatcactcc gcgtaatcga 16620 agtcgccgcg tgcttttgcc tgttcagctt cggacatcga ttcgatgtct ttcaacgtct 16680 gcggagtacg cacgagcgcg gaagccgcgg caggcggtgc aacggccggc gacttcggct 16740 ggttcgacac ggcggcggtt gcgcgggata cggcttcttt ccgacgttcc tggcgcgcgc 16800 gatcctgcgg cgtttgctga ccgagcggct tgacagcagc ggcttgttcc acgcccagga 16860 cgtactcgac ggcacgggtc atggcgatga ccttgccgta cttcggcgac agggactgga 16920 acagctcgtt gatctcatca acggtgccct ggtcgaacgc ctcggcgttg ttgtcgtcca 16980 gcacggcgtg agtagaccgc aggttggtca gcagctcttc gaacttcaga ttctccagct 17040 gttcgcgggc acgctcgtca gcgatgctct cggcgcgctt ggtagccatg gcttcctgaa 17100 tcgcgcgcat gtccttgcgg atctgcggca gcagatcgaa gtcgttggct ttcatcgcct 17160 cgatttcgcg cgattccagc ttgtcgtagc tggcctggag atcgaccagt tcagaggtca 17220 gcgcgcggga gcggttctgc tgctccagca ggtgctcggc agcccggcgg cgctcggctt 17280 ccttctgcat gcgggagcgc ggaaccatgt tcgggatcgg tctgcccttg tcatcgagtt 17340 tctgctccgg ctccggttcc tgctccgtcc cggacttgcc ctcgggcttg tcttcgggtt 17400 tgtcttcagg cttgtcttcg ggcttacctt ccggctcgtc tttggctttg gcctcgacag 17460 agttcgggtc cacgggggtg tcaccgcgat cctccgggaa ctcttcttct acggttttcc 17520 gcgcaaagcg cccttgctcg tcacgcgccg gagcgtctgc tttcggcgca gggctgtcgt 17580 cgaacagagc ggcgtcgccg cggtccccac cctcgttgtg cgcgcccgga gtggcgtcac 17640 cggcagggat ggaatcgatg tcgatatcag cctcggcacc gaaggcggca gcaccttcgt 17700 cgatcggggc ggacagtaca tgtcgaagga aattacgcat cagtggattc tccattcttc 17760 gcgggggtag atttcggctc ttgggcggcc ttctctgctt cgatcctcat tttaagccgt 17820 tccgtaaccg cgtccagtcg cagtttctcc cggtcgagtg ctagctcggc agttttgatc 17880 ttgagttcgt tgtctacctt ggtctgttcg agcgccaacc gcgcggcttc gatgtccaca 17940 cgctgctgct cgatgtcggc acgctgctgc tcggtatcgg tgccggcctt gagcgcatcc 18000 gtctcggcct ggacattctt gacgttggcc tgggcggact tgttcgcggc gtcggactgc 18060 gcacgctgcg cctcggcggt gactttcgcc agattcgcct gggcagtagc cagttgcagc 18120 tggcgcagct gctgcgcctc cggcgaattc gcctcgctct gcatctgctc gatgatatcg 18180 gctttgtcca acaggcggct gttctggata agcacggtgt cggggatgtt gatcccttcc 18240 ttgcgcatcg ccagcgcctg atcgaactgg ctgtcctcca gggtttcccg cgcaggcacg 18300 gactggacgg tgacgaggta ttcacccagg gtcaggtcgt tggcgatctc accttccggg 18360 gtcacctcgt tgatggtgaa cgactcgtct ttgttcacgc cgccgccgtt gatgtacagc 18420 agtcgctctt cgtagtagta ggtctgcacg atgctcaaga tcgcacgggc caggaacacg 18480 tcactacggt cgaggttgtc gaggatacga gccatgccgg cgcgcccggc catgcggttg 18540 gtttccagcg cacgggcaga cacgtcctcc cgtgcctcac cgcgcatgta gtcggtcacg 18600 ccggagatcg ccttgatcca tgcctgggct ttctggttca tgccttccaa gccagccggg 18660 agctggttcg gctggatctt gtcgatgtcg ttcacgtcct cgacttcgag caccagacct 18720 gtctcggcac cgcgtgcctg gaggtcgtcg acggtcatgt tcttgagcga cccgtgcttc 18780 accttccagc cgctattggc cgtggtgttg aggatgtgca gctcctggct ggcggttttg 18840 ttcaacagct cctgcacgcc gaacagctgc tcgacgatac cggtggtgtg cccgaagcgg 18900 aaatgcggga agtacggaac gaccgtcagg tactcgtagg gactccatcc gtcgtgcagc 18960 aaggtagagc cagccaccac ggtccaacgg atacgcttgg cgatctgcga aatctgcacg 19020 atggacgggt tccgcatcag gtactcagcg gtcttcagct cgtcccagct gtccggcaca 19080 ggacgcagct ccccggtgcg cgtgtcgacg aacagctccc ggcgggtcag tacgcggtac 19140 tgccggtcga ccacgcggat gtaggcatcc tggcgctggg tgccctcttc ggtcttgttg 19200 atgtactccg gcaacgcgat ccggtcccga tactggtccg ggatgtcatt ggtctgcgca 19260 gaacggtact ggttggccag cgcgcgcagc tcctgggtct tctttttccc gtacagggct 19320 tcgaggctgt tcggagacat ccatcgggag acgatcacgt cttcccaggt cgcggggtcg 19380 tagtcagtcg cgtcggggtc gatcaacacc tctttcgggt tcagggtcgt gacggccacc 19440 tccccataga ggttctccgt gaagtccagg cgcacgtcgt agaacccgcg tccggtgatg 19500 ttcccgtcct cgaacacgtc cgtgcgtttc cacgtcaggt ggttcccctg gctgatgtgc 19560 ttgaacgtct tgttcagggc ggtggcggtt cggtcgtcga cgttcccgta ccgcggactg 19620 aagcggatct cgttccgtcc gccgatctgc tccccgacca tcacgtccat ggtctggagc 19680 accaagttga tcgtcagggc cgggcggcgc tgcgctcgca agcgggtgat atcgtcctct 19740 ttccactggt caccccacca gaagttttgg cacttctcgg cggtgaggat gaacttgtcg 19800 tggccgctgt cgcgcatgta gtcgtatcgg caccacgtcg cgttgaccag taaggactcg 19860 tcgttcttcg acaacgtgcc cggtagcggc aggtcaaagg tgtatgcgga gttgatcatc 19920 gggcgttccc catcatgcgc tcatgtgact gccgttcccg acgccgcgca ggatgtcgga 19980 caactgctgc gcaacggtgc gatccccgcg acgcggccgg cgcgcggaaa gagggagcgg 20040 tgggttctta gtaaggatca gctgtgccat ccatgcaagc gcgtcgacta tatcatcgtg 20100 ccggcctacc gggaatcgaa ggaactcagc cttcatcgtc tcgatccagc gagcgccgcg 20160 gcgcagcgtg accatgtggt tcgccatacg gccctggagc ggccgggcac gtgccgattt 20220 atcggtcagc ggcttcagca gctcaacctt gacgtaaatc ttccgccgct tggcctcggc 20280 ttcgaagtac ggcctgatcg acttccaaat ctgcccatct tccacgccca ggacagggtt 20340 gtgcgacttg taccgctgca cggtgtcgag tatggccgtg accaccttcg agctgtcccc 20400 cgtgcgcata cggatgatgt cgtcgacgtg gatcgtgtcg ttcggcatgt gcaacccggc 20460 ggcgatgacg gtgtagtcac tggtctgctt ctcggtgatc gcgaagtcca cggcgatgta 20520 cgccgtgccg tcgtagcgct cgtccccagg gtcgtgctcg atgaagtagt ccgacttgaa 20580 gtattccccg tcgtccggca ccgggttctg ctggtacagg ctgttccagt cccgtgcgtg 20640 caaaatccgt ttcagattga gcaggtactt ccggctgtac cgggcttcgt gcagagcttc 20700 cccggccttc ctgaacggta cggcgccggg cagcggtgag tcgacgatcg tatcgtcctg 20760 ggtcagccac tcgtcgttct cggccaaggc agcgaagttg acgatcttcc atttctcgta 20820 ctcaggatct tcctgcatcg cggcgcagag ccggccggac aggtcatcat cgtgccagcg 20880 ggtgttgatc agcagcacgc cgccgccggg ggtcaaacga gtcagcgccg tcgaggtgta 20940 ccagtcccaa gtcttctccc ggatcgtctc cgaatccgcc gattcccggt ccttgaacgg 21000 gtcgtcgatg atcagcatgt ggcagcccat accagtcacg ccgacgccaa cgcccgcggc 21060 acgtacaccg ccgcctttcg acgtggccca gtcatcgata cgctcgttga ccagttccaa 21120 gtccgggaag atcgccttgt attcctggct cttcaccgtg ctgaggatgt cgcgggacat 21180 cttctcggcc aagtccatgc cgtagctggc caggatgatc cctgcctccg ggtatttccc 21240 cagcgcccag gccgggaact tccggctggt ctgctcggat ttcccgtgcc gcggcgggaa 21300 cgtgaccatg acgcggggcg accgcccatt catggagtcg tcgagaaatt gctccagtac 21360 gcgcgccagg atctcgtggg cgacggctac ctcgtacttc gagttcatct tctgcacgaa 21420 cgggaggaac cgccggcgca tgagcgtgcg ctcggccatg atcttctgcg cggcggccag 21480 ctggtactcg tggctatccc ggctgacgac cccgatactg ccgtcctcgt agatcacgtg 21540 ggccgaattc gaccgcgtgt tctcgcgcat gatcttcggg ttggcgcggg gcttcttctt 21600 gtcgatccgg tctttcttca acttggccgt tttcgggatc ggcacggtat cgacggtatc 21660 gacgggatca ttcgctacat cgacgatctt gttccctcgg ccggcgacgc ggcaggacag 21720 acagatcccg gtgctgtgcc tgggggtata gatcggcgat tcgcacttcg agcagtgcca 21780 gcgcggctta cgctcactcg acgtattcgg catcttcggc tccttcgatt tcctcggccg 21840 acaagatccg gctgttctct tggatcacct tcaacaactc ggcgtcggtc ttggtctgca 21900 tctgcgctgc gatctgcgct gcgccgccgg tgatctcgat cttgaccttg gcttcgtaca 21960 tcccgtgcat cagacccagt tcccggtagc cggcgatcat cgtgcggggg tcagccatct 22020 gccgggcgat ggcaatggca tcccggaacc cgtggatgat ctcttcgcgc gtgacctcgc 22080 tgatctccat gttcttttcg aacagcgtac gcagcgcgcg ctgtacgccg acacggttca 22140 tcagcttctt ggcatccgcc gcgggggagg ggaagttcgc gccggcggcg gcatcgacag 22200 gactctgccc ctgggccaca cggatgcaga actccctttc catcgggtcg aggtccatca 22260 gggactttgc gcgggtgcgc tggagcttgt agtgacgctg ctcgtcaggg tcgacgaacg 22320 aatgctccga cttgacctca gccactgcgg tcgatgcgcg tgacatggcg gtggccgcct 22380 tggttttcga gggcggccgc cggggagtgg ccttggtagt ggtcgtcttg gtagcggtcg 22440 tcttggtagc ggtcgtcttg gtagcggtct tggtgacctt ggtagcggtc ttggtggtgc 22500 gtgccatgtc gtactccacg gggatgggac ggctgtttca tggcacaaag tgtagcgggg 22560 cagggagtag gtggtccatc cgtggaccgg tcggcatggc tcgcgggttc agtctacgca 22620 gctgccgagg ggcgcgtaaa gaggtcgacg ccgatcagat ttcgagcgat tcgttgattt 22680 tgataagcgc cagctctaca tagcgcaggc ggtcgttcag ggagtcgagt gcattgaaca 22740 aaggactatg tacggcagga gacaccggca cgtcgttatt tgccttgacg gtggtcagca 22800 tgaccggtgc gagccgggcg gccagttcgt ccactgcacg atcgaggcgg ttgacggtac 22860 gctcgatttc gacgatggca tcggccacgg gcgaagaggc cgtagattgc gcagcctgcg 22920 cggtgttgag gtcggcgtga gtaggtgcaa acatggtagt cactcctgta cggggctggt 22980 gaggccgttg ggttccaggc gcacatccat ccaggcgcgg aagccggcca gttcccacag 23040 cttgtcgcgg gcctgatcca gggctttgcc ggtggcgatg cgctcgccga tctcatgatt 23100 gaagttgttc gggtccacgc aggcgctgat ggcagtagcc agggtgaact caccgtcgag 23160 cagcgcgacg gcaactgtcg tggtggtgcc ttctacgacg tggcagcgga caaccacacg 23220 gtcgaacagg ctctggatat acgacgaggg gatgcgcggg gcggtcaaac ccttggcttt 23280 catttcctgc tcggtcttgc tctcggattc gatggacatt cgatcactcc tggggcttgt 23340 tgagttcgtg gtcgtcggtg gtggcgagat cggcgttcgc gccggtgata gcacccgaca 23400 gtgcggacgg ctcggcgtgc atcagctcat gttcggcgcg ttcgatctcg gcgcgcttgg 23460 attcgatcac gtccttgttg ctgtacgaac catgcttgcc ttcttccact tcacgagcca 23520 gctcgtcgat ggagggcagg ccgaaggctt cacgagcgcg ttggatgatg ccgccgtacg 23580 agttgaccag atccatgtgc agggtggcca gttcgcgcat ggcgtcgtcg gcctggaact 23640 ggtcttcgga gtcgatgcac tgctggaggt attcgatacg ggacttgagg tagtcgaggt 23700 cgttgaggtg ggtaacgcag gctgcgatgg tgacttgctt cagggaaggg ttcatgccgt 23760 ggtcctttgc ggttgggttg aacgtggtga atgtagcact gaaacgttca acgtgacaac 23820 cttatgggtt ggtggtttta ttttgaaacc gccatagcaa ctcgacgctt tgcgcagaat 23880 tgccgtagca actcgacgct ttgcgcagaa ttgccgtggg agcggggaga ctggtacacc 23940 cctccccttc aaaacaccca ctccccactt cgggttcgtt ttcgtctccg gccaaaagaa 24000 ttcttacccc ctccccctat gcctctcgtg attcgcggag cgaatcaccc ttactccttg 24060 tgtctttcat ccacactgga gttcgcatca tgaccttgct cgctcgctac aagaccttcg 24120 tttcggttct caaccgtgtg cttgctctca agctcagcct cggcttgatc atcttctgca 24180 tcacctacgt cggcatcagt gcctttggct tctatgcctt gtggttcacc tacggctggt 24240 ggtgcgtacc catcctcgct ggcgctaccg tgatcgtcta ctacacgcag cgcttcttca 24300 tcgacgccat cttcatctga cctaccgtgc gcgctgcgga gcagcgcgct ctctgtctct 24360 acgcattcat tcacttcgag gatctaccat gtccactttc gctgctctga agaacctggg 24420 ttcggccatc gtctccgaca tcgctgccgg cgcacgcgcg accgcggctg caactggctc 24480 ggcctacgag tcggtcagcg ccaaggtcgc gcacaagcgc ggcgagcgcc agatcatcaa 24540 cgagttccgc aacatgctga acgagcatcc tggcgagctg ctggctgcga tgcgcagcat 24600 tcaggatcag ctcgcacagc cggccaagcc tgcacgcaag cctcgcgctc gcaaggcggc 24660 tgcacaatga gccagtcgca ggtcaacgag ttcctggctc tgctccaggc caaccgccag 24720 ctgatggcgc agctgtccga agcattcggc actgcgcttg aaatggccga ccaccacatg 24780 gcgagtgcat cgcggcacat ggctcgcatc aacgacgagc tgctggccgc ggtgcatcgc 24840 atcgagaatc catcgcaggt ctgacgacga gggcgcaccg ggaggtgcgc ccctttttgt 24900 cgttgtggca attccgccac tttatatagg actttgtacc atgacctaca tcaccgatct 24960 gctcgactcc aagtccccgg ctgccgtagc tgctctgcgc accaccgcga acagctgcct 25020 gatgcgtgcc gtcagtcagg cactgcgact agcgcgcatc gagctgcgca acgtcggcaa 25080 tggcatcgac ggcgcgaaca acctgcgtgc caacgccgac gccgccaagg ctcgcgcgaa 25140 gcagctcgaa ggcgctggca agcaggggat caccgctgaa gagatcatcc agcgcaactt 25200 ccgcatgtac tacgcgatcg ctgtacgcct ggaggatcgt gacagcgagt acgagcgcgc 25260 catgaccgtc gaccaagcgt tcgagttggc gaccacgccg cgcgacagca gcaagttgtc 25320 gcagtccgca gagctggctg cactgtcgaa aatctccggc atgtcgcccg aagacatcct 25380 gaagatgcgc gacctcgacg cccgccggtt cgccgactcg gccaaggatg cggtgccgct 25440 ggctcgcacg ctgctcgacg acgtttccca caacggcgtc ggtgaggacg agctgttcct 25500 tgagcttccg gtccagcagc agttccagac cttcgccaag gcaaccgagg ctgcggtcat 25560 ccagctgcaa cgcgacacgc agcgtgctgc tcgcttcctc gaaagtccgg tgcgtgctct 25620 gcgtgacctc gcgttcagcg acgtgaccgt gagcaaggcc gatgcggact ccctggagaa 25680 acagctggag cacttcatcg tcacccacaa gtccgaactg gaattcatgt aaaccctggc 25740 gctcggctct tcggagtcga gcgccttttc cgcgttctac cctcaaccac caaccgcgcc 25800 tgggcgctat ggacatcact atggacatca tcaaaagcag caccaacgaa atcgacaccg 25860 acgccgtgat ggaagaactc cacaacatca tggccagcta cgccgagcgc ggcatattcc 25920 tgtcgctctt cttcaccgcc aacatcgaga tcaccaacaa gaacggcaac gactacgact 25980 tccgtgccgc acgcggcatg gtcagcgtgc cggcctgggt acacggtgga ggcgtcggcg 26040 ccttcatggg cgccatgggt gaaggtccgg agtacaccga caacccgatc accctggtcg 26100 ctcgtgctgc acagcacgct gctgtccatc atgagtacat catcggcgag ctgaacaagg 26160 tcggcgagat tggcctgatc aagcttgtgg ataactccaa gttggacgtg gtgaaagccg 26220 actgatttcc gcacgtgtgt gaggggatcg gagggggccg acccgccccc ttctcccctc 26280 cgccttttct gtatcgatcg ctaacctaag tggttgtttc ttgaaaccaa ttagcttttt 26340 ctatcgctgt aacgatttcg ttccaaacag gatgagactg actctcaaca accgtcacga 26400 tgttacgaaa ttccgtccac cgacgaaaat ttcgtaacac gctccagccc aggcagcact 26460 aggggcacag agctttctgt tacgatgtta cgatcttttc ttctttattc cactacagaa 26520 aataaaaaaa taataataga tatagttaat aagtatatag ggccacatat acactgtatc 26580 tgtagcggaa tagcgcagaa cttcgtaaca ttcgtgacaa aagtggccca aacccgcgtg 26640 gcactaaggc tccagcgtgt tacgaaattt tttgagatcg tgacaatcgt gacaaaattt 26700 cccggccaaa accccgcaaa cccgcgtggc actaaggctc cagcctgtta cgaaattttt 26760 tgaagatcgt gacagaacct ctccgtcact cggcgcaaag ccgcgtggca ctaaggctcc 26820 agactgtcac gaaatttttt ctgtactttg cgtcacacag tgaccaaatc atccatttca 26880 gtcatacaca ggagcctggt atgcccccgt tattcaggat gctggccatc gtcttcatct 26940 tctgcatggc cacctattcc atcggccgct tcatcgacaa ggccgccaag gcccaggacg 27000 agctacagct cgcatgttcg acgcaagggg gtaccttggt agccacccgc cacggaaacc 27060 ccgtatgcgt ccgttctgac gccttcttgc cactccctaa gaattaggag atccagccat 27120 gttcgtcgac gctcttgcct ttggtttcat ggccgccatc ggcatcttca tcctgttatg 27180 gcgtctgcct cgcatcctcg tcctgcatct gctgggtatg ggcttcctgc tcgacacggc 27240 gttcaccacc ctggtgttct ggatgcactg gggcacggcc atcggcatgt tcgtcgccac 27300 gatcggcggc ctgttcgggt ccgccggcat cagtctggcc aaaggcgtgc tcggctcgat 27360 cgacttcaag accaagcagt acaaagctgg ttggttcggt gaccgtcgcc cgcccgagta 27420 caagaccact ccgccggcca actgagcacc cgctcacccg ctcacccgct cacccgctca 27480 cccattcacc cttcccacga ccaaaccctc attgccagga gcacgccatg ccgagctacg 27540 ccgactaccc catgcctacc aagcacagac gcttgttcac caaagtcgag gtatcgaaag 27600 cattcgaagc cgatctggac gaccgcctcc cggaagtgag tgccttggcc atgaccagaa 27660 cctacgcaga ctatggactg cgtggcacgt ccagctatga ctcgtacgtg aacggtttca 27720 tcttcgacaa atccaatgct tccgacgctg ttccgtacat cggctcgaag gctcaactcg 27780 ccaaagccag gacgcgatgc cacggccggt tcgacaagca cgtgttcaac ttggctctgg 27840 tccgtcacat cgccagtcct accactctca cgcagcctcc caggagccag ctcgaccggc 27900 tcatgtgcta cagccagttc accagctgct ttttcgacgg ttgcctcttc cagaacattc 27960 acatggtcga tgcgacgttc acgaattgtg ttttcttcga ttgttcgttc gtcaggtgcg 28020 tcggttaccg tgccaagttc atcaactgca ttttcctcag tacgtttttc cacaaaggca 28080 catgggcgaa cgccaaattc aacggctgca aaatgtacga agtacgcttc cgcctatcga 28140 tagatcccac tcctatgccg gagatacagc tcaactacgt ttccttctac atgtcgaaac 28200 tcgtaggcgt gaccttcgaa ggcgatgtgt tctacgacac cgttttcccg gcgtcctacc 28260 tgatcggcgt agctctgcaa gatgccgatc tgacgaacgt ggatatgcgc accgcgttcc 28320 acgtcgatat caaaagcatg cgcggatgca ggctcagccg acagaatccg acgcagttca 28380 tgtcgatgaa catccacgac tacccgatca tctacacctc gaacgtcata cagatcggtt 28440 gtcaggcgtt cagcatggac cagctgcatt actgcatgag catggacacg caagagctgt 28500 atcagctgtc ttccgatgcg ccggaattgg ccaaaaccca tctgaagtgg ctgctcaaga 28560 ccatcgagcg cttcaaaccc aagccgctcc cgtacgagtg ctgaacgatg aaccctccca 28620 agcgttatcg ccccgatgcg gggttcgagc gccgtgcatg gcgtccccac aactacctgc 28680 tggaccaccc gcggttggaa tggaacccgt acaccaatca gcgcccgtgc agggacttcg 28740 attcgtccca gctggtacag ctccaactgt tcgtcgtggg tcactcacgc gaaatcatta 28800 accgcatcat gtgcgctgca caggagtaac accgtgttga tcgtccacac tcacctcgat 28860 cctcggcaca tgaaccctga acccatcacg ccgccggcac cgttgcccta cgtcagccgg 28920 cgcgcactgg cacgtgtccg tgagtgggtt ccgccgccgg atgtgtgccc gaactgcggc 28980 agcgaagtga agctggtcaa caacatcgag atctaccgca gccgatcgta cggggaatgg 29040 ccctacgcct atcgctgcgt gaacccgcgt tgcgatagct ttgtcgggct gcacaagcac 29100 accgacctgc cgctgggcac gctggccacc aaagccatgc gtgacgcgcg gaaggacgcg 29160 aaagcagtct tccacgacct gatggatcaa tggtccggcg tcttcaaccg ctcggaaatg 29220 tacacctggc tggccaagca gctgggtatc ccgaaagcgc actgccactt cggaatgttc 29280 gatgtcccga cgtgtcgtcg cgcgctgcaa atctgcctcg cagaactgaa ggaacggaac 29340 aaatttggaa aacacacaac cttttgagag caccacccat gagcaattcc aacgacacca 29400 ccagcaccat caccaccatc ctccccgatg atgtcgccgc cgtaaccccc ggctccatcc 29460 cgatgtccta ctaccgcctg ctggccctgc gcgcacagct gcgcatccag gccgctggca 29520 tgaagacccg tagcggctcg atccgcaaga agatcgctgc cgaactcgga ctcaagccga 29580 gggatagcta cgaagtcttc atcgctcgca tcaacgagct gatcgaagaa gccaagctgc 29640 gcgccggaca acgcgctggt gtgctgccca aggattgact ggagaacgta atgctcgaca 29700 agaaacgcga ccgaatcctc gccaaccaga ccccgcatgc gcggaaggtc tacgaatgcg 29760 taccgatagc tgaaccctgg ccggcgcatc agataatggc gcagttgaaa gtcgatcgtg 29820 gttctgcctt gagcgtcgcg gtggttcgtg gctgcttgaa ggctctgcac gaagctgggc 29880 tgatccgccg gccgaccagc gatctgtaca tccgtgagaa ggtgactgaa tcggcggccg 29940 ccacgatcgc cgagccaacc cagccaaccc agccagccca gccagcccag ccagcccagc 30000 cagcccagcc gaaggaaccc agcatgtcca cctcgatcga caccctgctg aaaatcgcac 30060 agcagctttc tgtcctggcc gccgaagtcg aagagaagct gtcggagatc gcctccgaga 30120 tcgagacggc ggccaagcag gtcgagtcca ccaccgcggc cgatcgtgag cagctggcca 30180 agctcaagca gctccagtct ctactgaagg atctgtgacc atgatcaaga ccagaaaaga 30240 gccgcgcagg gatctcgaag agatccgccg caaacacgaa gagtacatcg ccgagcacaa 30300 ggccagcggc ggtgtgaccc aggtctacca gtgcccgttc tgcgcccagc agatcgagac 30360 tgcatcaccg tctaccaagc acaacatgtg ggacaccatg acgagttgcc cctggtgcga 30420 cgggctgcat ttcaagcgcg tgtatttcac gcacgtcgag gtaagagtat gagcacgaac 30480 gaacttccca acccttccat cggcgagaag atgcgcctgc ggcattacta cggctacatg 30540 cgcctgcgct tcaacgctga tggcaccgtc gacgggcaga aaggatcaaa ctgggggttg 30600 ctgctcacca gccgggagtg gatgaagacg cttaccttgt ggcgtcaagg gaggtaagca 30660 tgatcaccac gatctaccac gtgaccgtcg atgtacccgc ttcggtctgg aagcatttcc 30720 acaacgacca gatttatttc tgcgaggtgt gcgaagcgtt caaggggaac gtagggtccg 30780 gcaccaacca ctacgatcag gttgaagaat gggccgactt ccacgattcc tccaccgcca 30840 tcgccgctga ggcaaaagcc aaggcgctga tggcgaaata cgaacgcctc gccaaggtac 30900 ttgaggaaca agctgaagag gggtacgagg gtgaccacta aacctgtccc tcagaagatc 30960 accatcgaag gtgatattgc cacgaacgta cgcaagcgcg gatatcggct cgtgcgccgt 31020 ttcggttcca taccgactcc cggcgacgaa ggcttgtcat ccaccgccat gtggccggtg 31080 ctgctctggc aacacgctgt ctacccggat cggttcgctg tgtcgtacgg cgctgaactg 31140 acctattgcc tggactgggt acaggctgcc gaacgtctcg gtgctgccct gctccacgcc 31200 acaactgtcg acgggaaaat caacgatgac tagcagcaga caactcaagt tcggttcgta 31260 catttccggc accatgcgta cgcaggatct ggtaccgaag ttcttcgaga tcctgatgtc 31320 ggtatcgatg aacgccgcgt accagatcgt gctgaccaga gcgttcgagg acgacatttc 31380 gctatccgat cattggctct tcaaagctat cacggacgaa gagtggccgc atgacgacca 31440 cggttggtgg ctctctgttg aagccgcgga aatggtcgat acgctggtcg atgcgcttca 31500 gaaattcgtg ccggtaggtc attacttcgg cgcgcacccc ggcgacggtt cggacttcgg 31560 ttgctggcgc ttcgaggact cgcatctgtt caccgtgttc gtacgccaga gtaacaacga 31620 aggcaccacg tacgtcgagt cggtgtggac gagtaacgcc accgaagccg ccgagataat 31680 cctcgccaac tgcgccggtg agtggaagtg cctcacgtcg gaactgcgcg tgctgggcat 31740 catcgccagt gaagcagaaa tcgaaatcgt tgagtggaac gacgaggaat agaccgtgga 31800 cgacatccaa gttcggctag ccaagtacaa agaccgtaaa gaagaatctc gatacttcaa 31860 aaccctcttt tacaactacg gcctcagctt tggacacccg aatggcggac gtactcccga 31920 ccgcggtgag ttcacgacct gggtcgaacc ctcgcttcga ttcgtaggta acgcggatag 31980 cttggcgcgc atcgggcacc gaggctggta catcgatctg tcccagcgcg atgttgcata 32040 tgggcaggtc tatcgactct cggccaggaa tggtgaagaa cgcttcctgg ctgcctacgt 32100 ctacagctac gacaccgact gcgtgacgtt cgacatcact gaggtgttcg acgacaaacg 32160 agaagcagcc ctggccgccg atgaaatggc cagaatcgcc gccgagcata gccgcgaagc 32220 tgatcaggaa gacgagatca accagcagaa agaagaagca cgtgagcgcc gcagtgcttt 32280 gcgtgtgcgc atgcgcagca tcatggctgc tctgcggtgg aaacgtcgca tggcgcgcac 32340 ctcgccgccc gtgtacatcc cggacatctt caacaccctg gccgaagaag aactccgacg 32400 ctcgatagct gagcgagcag agctgtacaa gatatggaaa tacggcccgg aggattcgta 32460 atgggaagga aacacctcac cgaattccgc cgcgacgaca tcgccaagtt cgtaattttt 32520 gcgcgcacgt acaacaagtt cgtcgtgatg tacctgcgcc aagggcggaa acacctggcc 32580 atggaagagc gccgtatgcg tcgcgcctcc atggcacagg cgcgccgtat caaggagcag 32640 ctggagggct aggaaatgag tgactgcttc gatcacatga tggatgcgta cgacttcgaa 32700 tcacgtggtt tcgatggata tagctccggg ttcagtcgtg gtcgtagtcg tagatcgaag 32760 acaccgttct cttacgaccc gctgtactac cacaccagta tgcctttcct tcggatcgtc 32820 aaacgaaccg agagagcgat tctgttcgag ttcgacaaac tcggcgagca gtgggtacca 32880 gaaaaacttt gccgtcagtt agacgaagca aacggtaccg tcttcatcta cacgccgttc 32940 attaaatcca tgctgaaaaa caggaaacca taatgcacga cttcatcatc aacctgaacc 33000 tggcttctct cggtcgtcaa ctctcgtcga cttgcggtac gcagaaaggg tacgcgaatc 33060 agctcatggg tcttcttcgc atcgcggatc tcaacgaagt gaagagtatg gagtctgcga 33120 acatccgcat gaccgctgaa caattcgccg atttcatcta tctccgtgca gccgccggtg 33180 ccacgaacgg catcaaagat ttgcaagcac ggcgcgtgcc ggctggccac tctaccaaca 33240 tctccctggc gcgggatttg actcctaccg gtttggatgc acgcaccaac acctaccaac 33300 aaggacgaca tgactccatt ggtagtgacg ctgtatccgt agttgcagac atcaacatgt 33360 ccgccaccgc cggtgcgtta gcgtcgcttg ccgggggtat gagccggttc gcggcagaga 33420 tcgatacgct gcgtgccctg gcctcgaagg tagaagattc gcagttcgtt tcgatctgcg 33480 ggggcatcga ggtcgaccgt gttagcgcgc tcgatctgat gtacggcgaa atccacaaac 33540 gtgagcaagc gatcgccagc atgttcactt ccaaccgtca acagtaagga tcatcaccat 33600 gggtagccac gttgcaatgg cgcattacct cgaccccatt acgggcgaaa agcacaacga 33660 gcacatcctg ctcgacacgc aattgaaaga taggctgccg gatcatccgg tagctatcgg 33720 cttcgagctg aacgacgaac acaagaagtt gcatgctgac ggctacatcg ccctggtcgc 33780 catcgaccgt gcgaaatccc tcggcaccag accgcaggat gtgtatcgcc tgggcacgca 33840 catgcacgtt cgccgtgaag cactcaagca catcctgaac atcaacgacg cggatctggc 33900 actgccgctg atttgggtcg atgtggaagt catcgacacc atcaaggcaa tggctggtat 33960 cgaagaggaa aataccagtg cagaagaagc cgagtaagga cgcagcactg aatgtgctgg 34020 aattcatcgc caacgaagcc ctcgcagcga tcgccaagtt cgaagcagtg cagagcgacg 34080 acaacatgtc ggaactcttc gctacccgga cacgcttgaa ggtgcagctc gacgagctga 34140 gggcagcacg cggcgaatca ctcaccaacg atctgtacct caacgggtcg ttgcgtgacg 34200 tgaagtcgcc ggagctgctg atgctcaagc gcggcgagat cgagtccatc gagtacatca 34260 agcgccgggc gacgatccta cgcaagaagc tcggtatctc ccactacaac gcactggagt 34320 tcctggcgcg cgaagctggt ttcgattcgt accgccatgc actccgagaa ctggagtatg 34380 gcaagtgacc accccgttca atgaaggttt tgtcgttatc gaacacgaac ccgacgagac 34440 gaaaggcgaa ctcgcggagt acctatacgc tcccgcgacg tacgacttcg ctctgcccgt 34500 agagtgggtc aagcgcgccg aagctatcac cggtcagcag gtagtaccgc acttcgtgtg 34560 gttgtacctg ccgaacgatg tagctggcat gcctgcgcca ctcaccctca ccggcgtgca 34620 tatcctgatg cagttagcgc gctacccgta aaccgttcac ccactcgacc actcaactat 34680 tcatttctct acacaaggaa catcggatat gtcgaacaac gccaccgtca agaaagccgt 34740 caagtcgctc agcgagatcc ccgagcagca ccatgtcgcc gagatcgtcc accacggcga 34800 caagctgacc ctgcccgaag gcatgggcgt cagcgatgct atcgagctgc tggagcgccg 34860 ccgcagctac ctcgaagaag ctgtcggcct gacgcgcacc ttcaacgtct tcccctggga 34920 cggcgcgaac gccatcaaca tcgccctggc gcgtcgtttc ggctgggccg ccgccgaggc 34980 tactcctggc ttcttcggca gcactccgcc gaagatgatc accatcgaag tcggccctgg 35040 ccagacccgt cgtgtaccgt ggggtcgctt cagcatgccg ggtatcgaag gcttcgtgca 35100 gaccagcgcc agcatgaaag acggccgtct gtgtttccag ctggtcgcgc aggttctgcg 35160 taaggacgag cagaccatcg agaagctgtt cgatgaagtc gaagacgtgc tgaagcacga 35220 gtcgatctac gccggtaagg cgatcaagat ccgcttccgt gacgacgacg gcaacaccct 35280 ggaaatgccc gagccgaagt tcctcgacgt gagcggcgtg tcgcgcgaca tgctggtgta 35340 ctcgaaagaa gtcaccgact ccatcgaaac caacctgttc acgcccatcg agcgcgtcca 35400 cgactgcatc aagaacggta tcccggtcaa gcgcggcgtc ctgctgggcg gtccgtacgg 35460 caccggtaag accctggccg ccaccgttgc atcgcgtctc gctgtcgacg ccggcgtaac 35520 ctacctgtac gtgccgcgtg cggacgaact ggccgacgcc atcgagttcg ccaagcagta 35580 ccaagacgtg gcctgcgtga tcttctgcga ggacatcgat cgctgcatga gcggcgagcg 35640 ttcggtggcg atggacgaca tcctgaacat cctcgacggc atcgacacca agtcgtcgcg 35700 gatcatcacc gtcctcacca ccaaccacct gaccgacatc aacccggcca tgctgcgccc 35760 cggccgcctg gacgcgatca tcgacgtggt tccgccggat gcggaagctg tcgttcgcct 35820 gatcaagctc tacggcgctg gtgacatcga cgagcaggct gatctgaccc cggcggccga 35880 gctgctggcc ggtgcgattc cggcggtcat cgccgaggta gtcaagcgtt cgaagctggc 35940 ccagctccag ctgcaagcgc cgggcaccgc gatcgagaag atcaccggcg acgcgatcct 36000 gctggcggcg caggccatcc agagccaagt caagctgctg gccgagcagt caatgccgcg 36060 tgtggctccg ctcaccatgg acagcctgct gcgcaacatc gtcaaggacg agttcgaagc 36120 gctcgcaacc gaactggaca gcattcgcca actgtccgaa agcatccgcg aacgcgtaag 36180 ctaaccgttc gtgccatcga aagcggctcc ttcggggggc cgctttttta tcgaggttca 36240 catgacccta tcgttcgatt attccggttt gctgtacttc gctgtcggtg tgctgttcgg 36300 catcctgatc gccccggcag ctatgtcgct gctcaaaccc cgcaacaagt tcatggaagg 36360 tttcaagcat gcggccgtga tcatcgtggg tgccgatgat ccggcggatg caatcctgta 36420 cctgctgaac aaggtcgaag aatcgaagac cttcgatacg tacgaccaat acgacggcgg 36480 tgtagaagcg gccgtggaaa tgttcatcga cggtatgaag aacagcgcac acatcgtgga 36540 ttcgtacgag gtacaccgaa gtgacaccta ttaatctcta ccaccgccac acgcactcgt 36600 atgtgtctgg ctggaagtac ctcgacaact acacctacat cggcaacgca ctcgtcaagt 36660 cgcctatgcg caagctgttc gaagacgacg agagcgtgaa gtaccgcggt gtgattgatc 36720 tgccggctgc gcagcgtaag cacatgcgtc gggtgtggaa acgcatcggt aaaccggtga 36780 gcttcggccg tttcgtactc aatgcgctcg aagattactg ggccggcagt tgccagtgcg 36840 aacacgactg ctgcgggtgt ttctcctacg tggccatagc caagcgcgtg aaccacaaga 36900 agtacaccgt gatcgttcaa ggccggcgca acatatgacc atcgagatca tctaccactt 36960 cttcgactac ctgccctggt acacagcgcc ggtgtggctg cttccgctcc tggccttggc 37020 acgataagga atcgacatgc ctgaattcat catcaccatg ctgatctgca cttcgcctga 37080 tatctgcatt ccgttcaaag acgacagcat gcgctttacc caggaacggt gcgaagaagt 37140 acggcaagag atcactcgcc gttacccgcc cgacaagttc gcattgcgcg tgaagtgcga 37200 agttgtggag ccggtgacca agccggtaca aaccagtctt gtcttctgag gtcaccatgg 37260 aagagaacga aaaacccgcc gccaaaatcg cgcacgccaa gcgtgccgtc cacttcacgc 37320 tcaacgagca caccatcacc aagggcatcg agatagcgaa agatgccctg gccatgcgca 37380 ccggtttggc atccggccag aacgaaaagt acaagttcga cgtggatacc acgatgaacg 37440 gatgggtgct cgtaaccgtc accaaaactg aacccgacga agcatggggt aagtggcgaa 37500 cgctggcgct ttcgccgaca gccctggtcg agttggctat cgccaccggc ttgatcaacg 37560 ccgacctcaa cgtcgaagac ccgctgcata tcgttgcagt cgcgggcgat taaccaacta 37620 catcggaggc cggcatgatc atcgcgtctt tcatggattt aacgctggac gttcacatcc 37680 gcgtggaatg ccggcgtgta actgtgaccc tggtcgagta caagctcgtg tacgtgaaga 37740 tcacgaccgg agaactcgta ctctgccagc ctttcttcga acgccccgcg gtcgaaagtc 37800 acttccgtga gatcgtagaa gacctgatcc ttaaacaacg aggcactgtg caatgaaaaa 37860 gaactggagt tcgatggggc tgaatttcat gcggtcgttg gccgctggtg tgttctctgg 37920 cagcatcggg cgaactgccc accgcacgaa ttacacccct gcggcagtcg ataagcagac 37980 gcccgagcaa atcgaggccg ccaagcagcg cgcgcaagaa cgccgtgaac ggcggatgaa 38040 acgtccgcaa gggttcggag gctgaccatg aacatcaagc atctggcgag catcgcccgt 38100 accaactaca cgaccatttc ggtcgagttc cccgagacgc gcggcaagtt ctacacctac 38160 aaggccgagc tgccgttccc gtcgaccgtc agcatggtcg tggtttcgtc gccctcgaaa 38220 ggctactgct tggcgcgggt cgtggaagtc cacgacgtgc cgcagatcga cgtgaacgcg 38280 tcgtacgact acaagtggat cgtggccaag gtagacgatt cgcgctacat gaccctggtc 38340 gaagaagaca aggaattcac caagcgcatg cgggcgcacg agcagaccaa gatttacaac 38400 gaactgctgg cgcagttccc gcaggccatg gagatcatgg gcagcatcac cggtcgtgtg 38460 cacttggaca agcagcaagc ggaagctctt tcgggagatc cgcacgagca ttggtgatct 38520 atcgctgcac cataccccga tagcgcaagg ctatcggggt acaccagata ttgtgtcaag 38580 ttcattgcat ttgaccgatg ggtaggggca agcccatcct tcacttcccc ctacccattt 38640 tctcgcctgg attagcctat ggacatcgct ttcctgtccg cacccgtgcc tctgacgaaa 38700 acgtacaagc agcttcgcgg acgcatcgaa aaatcgaact acccgaacac ctcgtccttc 38760 acctcctaca ccgaaacacc gaaacgcctc gaagattttt acgccgccat cgtcgagcac 38820 gccaagcaag gccactgctt gctcaagggg cagctcaatc gcaacctcgt cgaggaatcc 38880 cgcgccggct cgaccgagag caaccaagcc accgaatggg tctgcctgga tatcgatggc 38940 ctggaagtcg aatccccgca ggcattcatg gacgccatcg gcctgggcag cgtcagttac 39000 atcgtccagt acagctcaag ctatggggtg cttgacgacc tgctgcgctg ccacatcttc 39060 tgcctgctgg acaagccggt cgctgcaccg ctgctcaagc aatggctgat cgacgtgaac 39120 ttcaacaccg agctgctgtg cagccagatg tccctcacgc cgagcggcaa cggcctgcac 39180 tggcccctgg atatcaccac ctgccagaac gataagctgc tgtacatagc cccgccgaac 39240 ctgatcggtg tacctgatcc cttgcagcct gacgagcgct accagctcgt gaagaacaag 39300 ggtacgcact tcaagctgcc gaagcagatc ggcaccgtca gtgcgaaccg gtcgcggatt 39360 gacgacaagg tgaacgagct gcgcctggaa gctggtatgc ccaagcgtaa ggcgtcgaag 39420 tacaacagca tcggccccgt cgagttcgta gcgaacccgg atcaatgcac cgtcaccggg 39480 atcaaggaag accgtggttt cgtctacctg aacctgaacg gcggcgacag ctggggttat 39540 taccacccgg tcgacaagcc ggacttcatc tacaacttca agggtgagcc gacctacaag 39600 accaaggatc tggtcccgga ctattggcac gaccagcagc gcaaggtcga agaggccgaa 39660 gagtccggcg aggttgtcac gcatttggcg ttccgcgatt tcaactcggc gaagtattac 39720 aacggctggt acgacccgga cacacgggag ttggtgctca agcaagcagc cagcgagaag 39780 cagctggctg actatatggc cagtcaaggc cgtgcgctga gcgatcgaat tcctatctgg 39840 tccatggagt tcctgccgtc cgaggattgg acgctgaacc gtgattacga tccgccggtg 39900 atcaacacgt tcgtgcagag tccttacctc caggccaagc gtccagctaa agcaccgagt 39960 gtgccgacgc ttatcgcgcg tatcatccac cacgcattgg gcggtgacga agaggtaacg 40020 gaccggttct ataactggct cgccgcagtg atgcagaagc gtgtagctat cggcaccagc 40080 tgggtactca gtggcacgca aggcaccggc aaggggctga tctgcaacaa gatcctccgc 40140 ccgatcctgg gcgataccta tgtccagcag aagcgcatgg acgagttgga cgagaagttc 40200 aacgacttca tggaacagtg catctttctc ttcgtcgatg aagtgcagct gtccgaaatg 40260 cgtaacggcc gggcgctgat gcagcggatc aagaaccaga tcaccgaaga acggatcagc 40320 atccgcggca tgcaccgcgc tgggcagatg atggtgaacc acgtcaactg ggtcttctgc 40380 acgaacatgc ctgacccaat ctacctgacc agtgacgacc gtcgcttcaa catcgcgccg 40440 ttccagccca acaaactgct gatcacctcc gaagagatcg aagcgatcga agacgagctg 40500 caacagttct gcgactacct gatgatgcgt gaagtcgatt tcgacctggc gcgcgcggtt 40560 atcatgaccg agcagcgtga gcgcctgatc aacaccagca gcaccagcat cgaactggct 40620 tgcgacgctg tacgccgcgg tgacctccag ttcttcctcg acgaactgcc gagcgatagc 40680 cagtccttcg tgctgcctga caccatgctc aagttgtccc agtacaagcg tgcgcttcgt 40740 gaagtcatcg aacacgcttc tacgggcggt aaaggtgtag gacgggatgt gctccacacg 40800 ctgctgcgct acgtgctacc ggactgcccc acgtccagcc acaagttcac ttcgctgatc 40860 aagcaccacg gcctgtacgt gcagtccatg cgtatcggta cgcgcaccac gcgcggcatc 40920 gaagtggact gggtggtccc ggaaggtgcc ctcgaccaga tcgatggcgt cgccgataaa 40980 ccggtcaacg acgagatttc tccgaagacc aaagccgaac tgaaaaagca cctgaaaggt 41040 gtagccggag gtaaatcgaa atgagcaaca cctataccac gtacgtcatg cagatgccga 41100 ccgatccgaa agcgcgcagc aaattcatcg gtaagctgaa cgacctcgcc gacaagttcg 41160 gcgttgagtt cgtggccatg tccttgcacg acgagatttc ctgggaagag tacctgcgca 41220 acgcagtcgc agaagaatcg tctatggatc tggaaaccct tcgtaccaaa tgggagaaaa 41280 accaatgacc cgtcgcaccg tcgcgaaacc cgccgtcccg actttcgacg tacccggcta 41340 cgacaagctg cgggccgtac tgcacgcagc ctatcagcag gcttcggtcg gtaaaggtca 41400 cgaacgccac ggcagcgaag cagcgttcga agaacaatcc acgcagatca tcagcggcct 41460 gatgggcacc tctgatggga tgtacttcca agccatgaag aagctcaacg agagccgcgg 41520 catggaacac gaagcgcgca agcgtgaact gctcggcgcg atcgtgtaca tcgccgggat 41580 ctacatcttc gaggaagcgc acaatgccgc ggaacgttcg taatttctgg atcgagttgt 41640 ccgtagacgg caaggcgaca gatgtcgcta ccggccctca aggcaaagac ggcgggttcg 41700 atctgctggt caagcaacgt gaccagggcg gcatcattgt cgccctggcg gtgataggcc 41760 gcgcgaagta tgtcggtgac gagatccacc tcactctgac tgcggacggt gaaggtgtca 41820 gtaccgcagt cgaggaaggc ggtgtcgtcg tcctcaagtg caagaccatt cgataggagg 41880 ctggcatggc caagtatatt caactcacca acaccatgcg tgagcacatc gcttcgatgc 41940 tcatgtgcga ggcagcgaaa ccgaaagcgg cggacctgat cgctcgcgta acggatctca 42000 acgacaagtt ctggcatacg cacgcgaaac gtttagcggc tatgggtatc actcccagta 42060 tctggcccga cctgatcgtg aacggcgtat gcacttctgt gctgaccgcc atcccgtgtt 42120 actacgaaac gaagttaggt cagtaccgta atagccgtgc ggaagatgct tctctcaagg 42180 tatacggagt gtatccgcac agcagcttgc ggacctccca agtacacagc atgctcattc 42240 gtagcctgct gagttctgac gctttcgcgc cgctcaacaa gttcatcact acggactaca 42300 agttgaacta cgacttcaaa ttgaagttcg tagcgtctgc tgcggtgcct cgcatcatca 42360 acatgtccgt taaaaccgtg gaagtcgcgg gtatccacca gcccatgggt gagctgtgcg 42420 ctgacatcaa cgaagtgatc cgtgcagcac tcgacttcca taaacaagcg ctcgaacttc 42480 tgcgtgcgtg ccgcacttcc aagcagttgg aagagctgtt ccccgaagcg atgcggttcc 42540 tgccggcaaa agcccaggag agaaaacaag acctcgcacc tgtcgagctg gccgccaatg 42600 tccgcagcat gctgaacaaa ggcgtcccgc cggtcatcac caagtaaaca ccccgccttg 42660 ccaccgggaa accggtggct tttttgttac gctgtaatgt acaatgcagc agactaatcc 42720 ctggagctac cctcatgcgc tggtcgatca gtaagctgca cgtccgcgaa ggctgtgcat 42780 accgctacaa actgaagtac atcgacaaag ttcccgaacc tgaacgtccc ctcccccctg 42840 gtaagtctga gcacgcgaac gaccgcggct ctcgtgtcca cgagcagaac gaactattcg 42900 ttcgcggtga agtggacaag ctgccggcag aatctgctga cttccaagcc ttgatcgaag 42960 acctgcaaga acgcttccgc gccggcttgg tcatgctgga gcatgactgg tgcttcgacg 43020 aagattggga accctgctcg cccgaagagc gggccgccat cgccatcgtc gacgtggctg 43080 tctggatcgt taaagatcgc tggctcctga tcatcgatta caaaaccggg cgcaagtacg 43140 aaaccaagca catggaccag atgcagctct atgccctggc cgccttcaag aaatggccgt 43200 tcctcgaacg agtcaccacc gaactctggt atctcgatat cgacgagata tcgaccagtc 43260 acttcacccg aaaccatatc ccggctatcc agcgcgcgtt ccataaccgc gtcgggaaga 43320 tggaacggga caccgaattc aaaccggccg cgaatatcta cagctgccgg tactgcccgt 43380 acaaggacgg gatctgtccg cacgcggtag acgaaaaaac gcccgtgaag ggcaacgaat 43440 gggcctctga gtggaagata tgaagaacct gtacgctgaa ctgaagaagc gtttcgacat 43500 cgacgtggca ctctccgaca cagggtttcg ttttgtctac ggagccatcg accagtcgga 43560 tggtgattac cgcgtaggca tggcctcttt caagatgggt ctgcgcccgg acccggtgat 43620 gtacaaccgc taccagtacg acatgctgaa ccgcctcaaa ggctacctcg gtgaccatct 43680 acgtgcggac cgtgccctgg ccgagctgtt ccatgctacc cgcatgcgcg cgaagctgcg 43740 gtcccagccc gcagttgcgt gaaggaggac tcatggcaaa gttcaaaccg atcaaactga 43800 tgccgcacca gaagaagacg ctgaagaagc gcggcgaaac ttcgatcttg ctggatctgt 43860 ccgaaccggg caccgggaag tccgtggcgc atgcgacgca cttcgtgaag catcggcaag 43920 caggcggcgg cgctgggttg atcgtcgcgc cgttgtcgtt gatcgatacg gtatggccac 43980 acgagatcgg cctggtgaac ccggacgtgg atgtgagcgt agcgttcgcc accaaccgag 44040 ccaaggcgtt ccagcctggg cacgacatat atgtcaccaa ctacaacggc ctggagtacc 44100 tgtccgaaaa ccccagcctc atgcggaagt tgggaatcga ttggttcctc ggcgacgagg 44160 ccactgcctt caagaacccg caggccaagc gcacgaaacg ctgccataaa ctggttcgga 44220 acgtcgagtt caaagcgctg ctgtccggtt cgctcggcgc gaagatgatc accgattact 44280 ttgcaccgac gctgatactt gacgatggta aacgcctggg atggcagttc agccgattcc 44340 gcgaagcaac ctgctacccg gtgcaagttg gccggcaagc gcacatgatc caatgggagc 44400 cgcgcgaagg cgcagacttg gccgtggctc agctcttgca ggacatcagc atccgtcacc 44460 tcttcgccac cacggtgaag cagagcatcc gcacgatcga attcaagctg ccgccgaagc 44520 tgcgcaagtt gtacgagcag atggcgcggg agcaagccat gttcctcaag gacaaggtga 44580 tcaccgcggc gaacggtggg gcagccgcgc agaagttgct ccagatcgcc agcggctcga 44640 cctacgacaa ccagaaggcc aacaccctgc tcgacatgca gcggtacgaa cttgtcgccg 44700 atctggccga ggaacgcgaa aagaccctga tcgcgttcca gtggcaccac cagcgtgaag 44760 cgcttgagct gctgctgaaa aagcgtgggc ggaccaccgc atatatcgat ggcaccgtac 44820 cgggcgagaa gcgcaaagct atcgtcgaag cgcacaaacg cggtgagatc gatgacctgc 44880 ttcttcaacc gcaagcggct gcacacggcc ttaccctggt gaatgccagg actacgattt 44940 gggccacgcc gacctacgac tacgagctgt tcgaccagct caaccggcgg acctatcgga 45000 ctggccagag ccaggattgc gaagtcatcg tgatatgcgc cgagaacaca ctcgacgcca 45060 aagccttcga ggtctgcacg accaaaggca agcgcatgat gacgatgttc gagtacatcc 45120 gcgacttcac gtaaggatcg ttgcgatgac gattatggtt ccgcgcatcc atgacgggat 45180 gaaacccgtt acgctgcgcc cgctgaaaaa gttcaaaccg ctggtggtcg acttcgaaac 45240 ctactggggt ccgaagtatt ccctgcgcat gatgtccacc agtgactacg ttcgcggtga 45300 ccagttcaag atccactgcg taggtgccaa gctgggcaac gccaagacgc gcatcttcac 45360 cgacatgaag aagttcgctg cgtggctggc taaggtccag gctgagtacg agatcgagtt 45420 aataggccac aacctgtact tcgacggctt gatcctcagc gagtatttcg gattcgtgcc 45480 ggcggcttac cgctgcacga tgtcgatgtc gaaagggctg ttccgcaaca ccatcgcgca 45540 cggccttgac accgtagcga agctgttcgg cctggccggt aaagtaaagg cccaggccaa 45600 cgtgaacacg ttcggcaaat gggatctcac gcggcacgag ttgagtgacc tcggcgaata 45660 ctgcatcgac gattgcgaag acacctacag aatctaccag gccatgcgtc cgtacatacc 45720 ggacgatgaa atggacatca tccacgacac cgttcgttgt ttctgcgacc cggtgcttcg 45780 cgtgaacgga ccgatgctcg aagaagcgat cgccgaagtc gaagccaagc gtgcggtctt 45840 gtacaagcaa gcgatcgaac tggtgaacac cctcgctccg gggctggtca acgccaagcg 45900 cccgttcgag acggtgctgc gatctgctgt cgatttcccg ctgctgcttg aagcactcgg 45960 cgttgaagtg ccgatgaagc agaacgataa aggcttgtgg ataccagcac tggccaagaa 46020 agacacaggg ttcgtcgagc tgtgcgaaga ccctgatcct ctggtccgtc tcctgtgtga 46080 agcgcgactt cagttcacgt cgaaccagac cgtcacgcgt gcgcagcgcc tgctggacgc 46140 tacccaggac ggagcactgc tgccggtgat gtacggctac tgcggcgcat tgtcgatgcg 46200 ctggacagcc ggcaacaaga tgaacctcca gaaccttcag cgcgggtcgg cacttcgccg 46260 agccatcgaa gcgccgaagg gctggcacat catgaccggg gactcggcgc agatcgaagc 46320 acggattctg gcgtacatag ctgggcagtg ggatctggtc gaagcgttcc gcgtcggcgc 46380 ggacgtgtac tccgaattcg ccatggagat ttacccggat gtcgaggtaa gcaaggaaaa 46440 cccggatacg gaaaccgagc gtcacgtagg taagacttcc atcctcggcc tgggttacgg 46500 catggggttc aggaagttca tcaccacgat ggcgaccagc ttcatccccg tgctgatgga 46560 agtcgaagac gccaagcacg tcgtgaacac gtaccgcacg aagtacccga tgatcccggc 46620 gttgtggaag tacctcgaca gcatcctggc cgatatggct gctggtaaca gcgggttcat 46680 cgagttccag tgcgggcttc gcctggaata cgaacctgac cggatctgga tgccgaatgg 46740 cctgtgcctg cattaccccg aactccgtga agagtacgac gaggacactg ggcggaagaa 46800 cggctacacc tactcgatcg tccgcgggaa gaacgtcagc cggaagaaaa tctacggcgg 46860 gctgctgact gaaaacatcg tccagtgctt ggcgcggatc gtagtgggtg accagatgcg 46920 gctcatggcg aaagcctacc gtgtggtcat gaccacacac gacgaagtgt cgatgctggt 46980 ccgggctacg aagacggcgc tggccaaggc cacgaagttc atggtgaaaa cgatgtccac 47040 tgcaccctgg tgggcacctg acctgccggt ggcgactgaa gtgaaggacg ccccgtacta 47100 ctgcaagtag gagatcgaaa tgagcgtgac tctgtaccaa tccgaactga tgacctgcga 47160 aaatctgaag acgggcagag tcacgtacta catgtcggta tgcaacgcca tgcggcggat 47220 ctcgaaagcc gagtatgacg agcgttaccg aaaagcggac ggcttgtgtt gcttgcacac 47280 cgtgactgac aagcactacc gccgctcttg caggaccgtt atctacgagg ttccgaaatg 47340 aagttcgaca agattgagta cagcgtatgc aacgattgct tgctcttcgt ggcgtacggt 47400 gaaccgccgg agaacggtgc tgacatcgaa gccgcgatgc gccgagagat cggcgaagcg 47460 aagaatgcgt acttcgtgtg cggcgtcgag ccaaccgaag atgaccccga tgggatcggt 47520 gaaaacgaat tcagctggca gtggtgcgaa ctttgcctga gcacgctcgg cggtagtcgc 47580 tacggcgtga cgttgatgat acccctggaa gaaggaaccg aggatggcag cgccgaagag 47640 ccgaactaac cccaactggc tggcactgca agatccgaac gacccttccc tcaacaagaa 47700 ttaccggaga tcggtacgct actacaggca gctgttcctg gcatggccga agtggtgtgc 47760 cgatcatccg gggttcaaga aaatctacga cgaagccgcg cgccgtcgta gtgctggcga 47820 ggacgtgcat gtggatcaca tcgtgccgat ctgttccaag ctggtttgtg gtctgcatgt 47880 tccgtggaac ctacagatca taggcgcagg cccgaacctc aagaagtcca acttgtggtg 47940 gccggaccat ccgttcgaga accagtgtct cttcggtggg tccgatgaac ctgagcagta 48000 cgaacttcgt ctgtaattgt tactttggga gttgcaacat ggcaacgaaa aaacctacaa 48060 tctctttcga ccgcgatgcc gcgatcaagg agttccacaa gctctccaag cagatcactg 48120 acctgaacgc gaaagtcaag gaactgacct cgctcaaggc cagcttggaa gaagagctga 48180 tcgaacacct gaacatggaa caactcggca ccgtgacgtt gaagaacgga atgggagtca 48240 agctgcaaga ctccgtggtg ccgcaagccg aggactggga cgtgttctac aaatggatgt 48300 cccggaccaa gaacttccag atgctcgaac gccgcttgac ggttacggcg taccgggagt 48360 tccgggagaa gggcaaagaa gtccctggcc tgcgcgattt caccaagacc aaggtcggtc 48420 tgatcaaccc gccgaagaag taattcggcg gggcttttcg aagctcacaa agtaagcaaa 48480 gcccacaacg taaccgagag gaaatagcct gatggctacc aaaaaaacca ccgacgcccc 48540 ggctaagccg gccaccaaga agcctgctgc cggcaaagct gtagccacca tcggcaaagg 48600 cagcaaggtg ccggtcgatg ccaaggcgct ccaggcacag ctgctggctc gtaagcagca 48660 ggtgctcgac aagctgggcc gtcccagcac ccccaccatc gccgtgcgca acgacaagtc 48720 cttcgaactg ccggacggaa gtatcgtcca ggcaccggag ttcatccgtg ccgtggtgat 48780 cgacttcgct tccgtcaact cgctgtacga aggcccgtac gatccgaaga acccggaacc 48840 gccgatctgc ttcgccgctg gactcggcag cccggattcc ctgatcgcct cggacaagtc 48900 cccgcagaaa caagcggacg actgcgccac ctgcccgctg aaccagtggg gcagcggcag 48960 cggcgatggc aaggcttgca agaacacccg caagctggcc gtcgtactca tggacgagct 49020 ggacgacgag aaccgcgaag gggatcttca gttctacccg ctgaacgtgt cgccgaccgg 49080 tatcaagcac tgggatggat acgtgcgcaa tctggcaacc cgcaacgatc tgctgcctgt 49140 ccaagtcgta accaagatcg gcttcgacgc gcaatcgacc tgggccagcc tgcggttcgc 49200 gccggatgaa gtcctcggcg atgaccaact ggcgcaagtt ctcggtctgc aagaagccgt 49260 tgaagacatg ctgacggccg agcctgattg ggctgggttc gaagcgcagc gtgctgagcg 49320 tcaagccaat cgcaagcctg ccggcggccg ccgcccggct gcgaaaccgg ctggtcgcgc 49380 ccggcgctaa accaaggagg taacgaatga gcaccacgct ggcgagtgcc ctgcgaacga 49440 tccgacagct gtaccgtgaa ctgccgacgt ttaacgccga gcagatagag cgacttgtcg 49500 atctggagtt aaagggcgcg aatcggcgct cggtgctcaa tcgtctcgtc tcccgcgcag 49560 cacagctcgc tgcggacaac aaactgatcc aactccaatc gaaaatcgaa agcaaaagga 49620 accacgagca tggcacgtca acccgccaac aaaaccccga aagtatcgac cctgagcagc 49680 aacccgattc ccgccgacgc caagccggta aaaggaaccg tggtagcgcg cgaaaagccc 49740 agcgttaagc cggctgccgc ggcggccaag gctgctccca gcaaggccga gatcaaggcc 49800 aaggaaaagc gcgtagccga gctgcgtaaa ctggccatcc agacgcagaa ggattacgac 49860 gccgaggtca agcgcatccg cgccgaacgc gacaagaagc aggatgacgc cgccaagcct 49920 gtcgcgctgc tggacaagga aatggaaaag ctcagcgctg agttcaacaa ggcgaaggac 49980 aagctgacca agcagcgcac caaggcgctc gcagcttccg agaaggtcaa ggccaaggcg 50040 cgcaaggaag gtgattcggc gctggccaag ctgaccaagg ccaaggaagc cgacgacaag 50100 aagctggctt ccgacctgtc caaggccgag aaggaactcg ccgccctggc taccagctaa 50160 gccagcacgc accatcaggc cgcctccggg cggccttttt tacctctgga gaaaagcatg 50220 gcgaatcccg agaaccaagc aatccagaac ctgcacacga agctgccaag cttcgtccac 50280 cacgaaaaaa tgagcaaccc gtacagcaac ggcacagctg atgtgtggta tgccgcgtgg 50340 ccgtgcgatt tgtgggtcga gtacaaattc ctggcaaagc ccccgcaacg ggcggtgaca 50400 ctcgacctat cggataacca acgtatctgg cttgcggaca agtaccgcaa ggggcgcgcg 50460 gtcgccgtgg tgttgctgtt ccctgcaaaa ttcggcgggg tgatctacac gcacttgtcg 50520 tggggcgaac ggaaaatcca gctacctgca ccggatgccg accacatcat caagcgtgaa 50580 ctgatcgccg agttcatcgt tcggagctgt acctgtgccg cctttaattc ctctcttgta 50640 taccggggcg aagatcgctc ggtcgctgta cctgatcgcc gcattttccg cggcgacata 50700 cctcattatt cggagcctac gtgatggcaa agcaaatacc tacggaactg tctatcgacc 50760 tggaaaccct cggaacctcc gtggaatcgg tgatcctttc ggtggcgatg gtgacgagca 50820 ccggcgaaaa gttccacata gcaatcgatc cgtccgagca aatcgccgcc ggccgtaaag 50880 tcgatgcgag cacgatcatg tggtggctcg gccccggcgc tggtgaaccg gcgcgcgggg 50940 caatgaccga actcatggcc aagcggaagt acggcatgga agacgccaag ctcgaaatca 51000 tgtcgttcct cgacggcgta ctgaagaaaa acccgcgcgt gcgcgtgtgg ggtaactccc 51060 cgtcgttcga ctgcgaaatg ctggcgaatt tcctcggctg taaaccgtgg ctcttcttca 51120 acgagcgcga tgttcgtacg gcacgcatgg tggtcgggcg tacccaggcc agtaccggac 51180 acgacgcgct ggccgacgca gaagcgcagc tcgtcgacgc catgcgtttc atcgaagtgg 51240 ccgacaagga ggcgcgcaaa tgaacatcgt ggaactcatt gaagcgatcg gcatggacaa 51300 catcgaagcg cagtccctca acaagtccac gctcaaagcc aataccgtca aagacgaaac 51360 cgtgatcaag ttcgtcacga agtccatgac gccgaccgac ttcgtgctcg gcaccaagat 51420 cgggctgatc ttgtggttcg acgcggacaa gttcaacgcg gccgtcgata aggtagaaag 51480 tgaaaaggcc gcggaaggct aaggtccgct gccggtgccg tgaatgcggc gctcggaaca 51540 ccaagcgcgg cgatctgaag ttcggactcg cacgcgctcg gtgccgggcg tgcggaaaga 51600 tcggcacgct gcgcatcgac aaatgggccg acagaagagg atggctggtc ggtaggttat 51660 gccgctgcaa cggtgtaccg ttcccgcacc gcccagggat ggtcgggtac atcacgtact 51720 gcggcgctga gattttcgtg gagtgcttac atggccaggg gcatcggatc gacgaagcgc 51780 cggcaggaac tgtcgaagcg tgcggcccgg ttgaagaacc agggctttac cctttctgaa 51840 atctcgaccc tcaccggtat accgcgcgac aaggtgcata tgcgcgtgaa gctcggcgag 51900 cgtctactga gcctggagtg aagcatgtgg aattattgcc ctgagtgtgg gtgcggaacg 51960 ttcgagaagc acgacagcta caacgtctgt gtgaactgcg ggcaggattg gtatcccgga 52020 acggactaca cgaacgtcgt gcgagcacac ctcagcaaga cgtaccaaga caaggacgcg 52080 gagatcgcgc gctacaagca gctgtaccac aaagcgctcg gtgcgatgga acggttgaag 52140 accccgacca gacgggacgt tgacgccatg atgtgcgtgc tgtcgtcgct cgtggcggcc 52200 atatccctgc tggagcgcgg cgggaagaaa gcagcggcat cggacaccat gttcaaccag 52260 atgctgctcg actacaaagc tgctgtgacc gtaggacgga aagcactacg gcgtatgcgc 52320 ggcgataatg accaagcgta cgacagcaac gcggaacgct tgaccaggga agcgctcggt 52380 cctggggcag gaataaatcc cgacgcaacg tccgtagacg atctgtttct cgacggtacg 52440 ccgccgaaca aaaaaggtga cctatgatcg aaagcatact caagcaaatc gacctgaccg 52500 ccaagctcgg ccaggacggt agtccgctcc aggccatgaa cgcgctgcgc atcatccggg 52560 agactatcgc caagcatgcc gtggtacatc cgacccgtag cgaaggtgag cgcaagctgt 52620 cggacctcgg taatgagctg cacaaccttt cgtgctctct cgcacacgat aacgaagaat 52680 gggctgaaca gctcagtagc atcgcccgcg aactttggag ttggccgcaa ccctccccga 52740 cgcaggccga gcaacactgg ccgaagttgg aacagccagc caaggtcggc ggcgtccgct 52800 tcagcgctgg cgtatcgtcg cggttggtag tcgaagccgc ccagcggctg tacaaattcg 52860 agtccactcc tgagaaagag gcggagcgca tcgagcggct ccaggcgttt cgcgagcaac 52920 tcgacccgtt caacctcgcc ccgcatgctg aagcgttcaa cgaagcgccc gctgaagcac 52980 tcaagccaga gcaggcagag gcggagcggc cggtagtggt gggctaccgc agcggcacgt 53040 ctggcggcat atacgcggat ggctacggcc tagagaaacc tgaaccgctg atgaccgtcg 53100 cccagcacga ccgcatcgtc ggggcgctgc ggttcgaacg ccagcagatg gaccgcgctt 53160 tcaccgcgtg tatcaacgag cgcgacgccg ccctggccag gatcgcggag ctggagaagc 53220 cagatcctga ctacacagca cccgcagatc gtaggctacg cccgcaaaaa ggaacttgcg 53280 ccactgctcg atccatccca acctgatggt agctacatct acattgggct ggaccatccg 53340 gcatgctggg ctgaagagcc gccttacgaa ttcttgaccc ctttgtacac cggtcctgtg 53400 tctcagaaca gcgcgccgga tgggtacgcg cttgtgccga ttgagccact tctcaacatg 53460 atgagtgaca aggatcacga caccagaata acggctgagc gccaactgct ttccatactc 53520 gccgccgcgc ccggcaactc ggctcagcac agcgtgccgg aggaattcag cttcgagtat 53580 cgccacccca atggagaaag ccatacggta acggtcagtc gggatcaagt gattagtgag 53640 atgtccgatt tcctgttcga agcgctgtgc agcaagttct gcaactgcga gccggtgggc 53700 gagacgaacg ttgtcgagtg ttcctgcgac gagtacgcgg aggaattcaa actgctcgcc 53760 gccgcgcccg gcaaggaagt gccgcaggca tggatcgatg ttcaggcaga gcgccgccgg 53820 caggtcaccg ccgaaggatg gacgccggag cacgacgatg cgcacacctg cgacgagatc 53880 gcggccttcg cgtgcttcta cgcgatgccg ccggcggcac gcgactggga caccagcagc 53940 accggctacg gcgacaccct gggcgaggcc attgtgcctg aaggctggga gccgaagacc 54000 ggtgatcgac gccgagagct ggtcaaggcc ggcggactga tcctggccga gatcgagcgc 54060 ctggatcgag cagccatgcg cagggaagac aatgatggag gtgcagagca atgaacctgt 54120 cctgggactt catgaagtcc atcgctgagc gggaaagcgt gaaagaggta ctgtcggaat 54180 tcctcaagga atcgacgctc aaagtgaacg gcgctgacgc actgctggtg ctgcacatcg 54240 tatcggcgta caccacctgc gacggcagcc acggcgggcc agcatgtggt gaccctgatt 54300 gctgcgccaa tcagaaacct gacgacgcga aaattcgcat gcagttggaa cgcgccgtga 54360 atgcattgcg tacgttgtgt aacgtcgaca cgaaggaaga catcgatgcg atgctgctcg 54420 ctatgcgtgc catgcccggt gacttgaacg accgcatcgc ggtcatagca accttggaac 54480 tactgaagga gctgatggaa tgacgaaaga cgaactgatg gaagcggtgc gtggcttcta 54540 cggcgacacg tcgcggtcgc gtgaagaaac acgcgaactg ctcgaagaag tgcgtgacga 54600 gatcgatatc ctgatcgagt cgctgtacga ggacgaatag ccgtcctcca gaaacaagaa 54660 acccggccac tggccgggtt ttttcttgca ccgcaaggaa gcgcgatagc aaggctccat 54720 ccgcagtgct cattttacca gaaacccggc catgtgtcgg gtttcttttt gctctgtaca 54780 gagctatggg gtgcggggtt tcactccggc agcggatacc tcgccttgat ttcctcgacc 54840 ttggcgatcc aggcgctgta gtccggttca gttccggcct tgatcgcgtc gaactcggcc 54900 tcggtcttga gcggatcact ttccaggcgg taggcatttg cccgcgcgac ggctgcggca 54960 tcgtattcag cttgccggcg ttcttcagcc tgctgctcag gggtcaccaa tttgctccag 55020 tcgatactca tttcggtaac tccaccgggc catcggcctc gataagcaac ggctcaggga 55080 atctagcggc ttcgctagca tccacgtcaa gcgggtagcg cagagtcaac tccagccggc 55140 cgtttcttcg tactacagga ccgacgaacc attccgactc aatagcctcg gacggcaact 55200 caccaccctc cgggagcggc gtaaaatcga actcctgacc gttcacagtg agtacatcac 55260 cagtcctgct cagcgacagg tgctcgttgc tatcggggag cggtgcatac ggcgacaact 55320 tgatgatcat cagaaccacc tcccgttggc tatcgcagag attgctgtcg cggttccggt 55380 cgccctcgaa gcgatgtcga atatccgcag cgtcacactg gtcgtactag caaccccgcc 55440 gacggttccc cagcctgcgc cagtccccca gcgaaataga ccgacactca ccgtcgggct 55500 accgacaaac gtcgcaggga aagaccaccc acgagtgccg gtaaacaagc tgccgtaagc 55560 ggtatcgacc gcctgatcgg taacgctggc gttgaaccag cagagctgcg taccgtctgc 55620 gagccggatg tattccccgt tcgcgttgct gcctcgctca agaatagagc cgatcggcga 55680 gcctccagac tgagctaccg taccaagaag ctgcgcatcg gacagcacgc gaatccacgg 55740 ctgccaagta ccagatccct tgcgtcggaa atagaagatg ttcgaagtcc gcggtacgaa 55800 cagctgcacc gcagttgctg cgtcgtaggg gtggtggtag agcatagaac caatagggtt 55860 cagcgaatcg atacccggcg gcagattcga ccagggcgac gtaccgatac cgtagaaccc 55920 acattcgtca gggaccgtgt tcgggtcgga gacggcccgg ttgaacgaca tacttttagg 55980 tacgccgccg atatagttca aggcgtttgc ctgcgtactg gcgttgataa tcgcccggcc 56040 tacggcggtg atcggcgttt gcgcccaggt attcgcaccg ttctgatacg gcagcacgtc 56100 cgttccgccg gccagacccg cgaagttgtt cacccgtgcc gtggccaggg ccgcgaacgc 56160 atcggttgcg gtggaagcgc cagtcccgcc gttggtgata ggtacggtgt cgctggcggc 56220 gaactgggac aggttcccgt tgccgccgcc gttgtcgatt accttgaggg ggattgcgtc 56280 agccattggt caccaccggt acgctgagcg agccaccggc ggcgagcgcc accgggagca 56340 tctggttgtt gttcaacgac acgcgaaggg tgccgccggc gcgcatatac accagcacgc 56400 caagaggtac accgagaagc gtatcgccgg ccggcagctc acgaggaaag ccgctgccgt 56460 ggacgagagg tctgcgggca gccatgcgtc acctcacgcc aggacgatcg gctggcggcc 56520 gatctctacg ttgaccacgg tagcgctcac cgcggtgccc agcggctgaa cgatctggcc 56580 ggaaccggta ggcggagtcg ccacgcccag gccgggagtg gtcgcgctga gccacacgtt 56640 accgggggtc atgccagtga cctgggtgtt cgagccttcg aagtacacgg tggcgttcgc 56700 cgcgctggac acggcagcga ggacgaaacc gtgcgccatc ttcgcagtgc cgccagcagc 56760 atcggctttg cgcactttga acgcgccggc atcggcccac acgttcacat agtcgccggc 56820 agccagcgcc tcggacgctt cgatgatcgc ggtgtcggca ccgataccgg acggcagcac 56880 ggagctgtcg agacggccgg tagagtcgag cgccgggata tcgccggcgt tacccgcgcc 56940 ggccgagacg acagtcgcct cgacctcggt ggggaagccg ttctggttgg aaaggtactt 57000 gtctgccatg tcacacctcc agcgtgatcg ccacgccaat gtcgataaat agagtagtag 57060 ggtcgagcgc gaagcctacg atcagcgaga acagcgcgcc agagggaacg gtttgcgtga 57120 gattgccatc ctggccgagg aacacggcac cgggtgtcca cgcccacccg gagtgctgca 57180 cttcaccgag gcgctgcaca tccactgtgc cgccagggga cgccgcattc agcgacagcc 57240 ccagggtgtt tatccgattg atcagcgtcg cgcaatcagc gtacaccact tggttggcgt 57300 cgatcggtgc gaccatgcga tgcccggaca tcggcaccga cgccaccttc tggatgatcg 57360 cgccgccggc cgggccgggt tcacccttgt cgcccttgcg cccaggctgc ccggccagga 57420 cgacgaacgc cgccgagcgc aagtcctgca cctgctgcgc ccccggctgg atcagcacct 57480 cggtgacggc ctgcgcaggc ggcaggacca tggcggtgta ctccagttgc gacgctggcc 57540 gcgccagggg caggacgatc tccatgtcgg ggtcacgcac aagcagcgcc tgagagcgct 57600 ccctggtgac aagcgcctgc ggtgtcgata ccgccacgga caggcactgg ccgacccggc 57660 ggacgactag agcctgacct gcgttcattt cgctacctcg gccgtgacgg tcactcggcc 57720 ggaccccacc gggtagacca cggtgaggtc ggcggggtcg tacagttcga ggtcgtacag 57780 cgccttgttc cagtccaggg tggcggtcac gtcagcaccg atgacgatgc ttatggtgct 57840 ggtcgggatg tcgatcacga cccggccatc agtcgtgctc ccggtcagca gagcatcggc 57900 gtcacccggc gtgcgccgga tggcgaagcg ggcggcgagg ccagtgaggt ccgcgggggt 57960 atagaagacg atggtaccgg ccccgccgaa tgccttgaac ccgatcccgt tcacgtcatt 58020 gagttcgagg ctgtccgggg tcaagacctt ggccaggtag aactgcccag gctgggtatt 58080 cagctcagga ggggatttca cgctctgcac ctcgaacggc cagccatcag acaggccgtg 58140 cccagggacc gtcagcacga ccggggcggt ggccgtagcg cccgtgatgg gcttgtagag 58200 tttgatcggg tcggcccagc ggaaggcgaa ttcgaacgtt ttcccctgga gaatctgcaa 58260 atcgatggtg caagtcatgg tgcgccctcc tgtgagctgc ggaaagtatg ccagccggcc 58320 cggagctgcg ccacgctgca cgttcccgcc gtagggggta gcagagtggc ggttccacaa 58380 ctggagcgca ccacgggcct atttggtgcc ctacagcctg tatcgatacc gttgatggtc 58440 cagagcacta ctattaattg caacgatgtt acgaaatttc cggaacgggc caaaatttcg 58500 taacacgccg cagccttagt gccacggggc ttacagcgat ttctgttacg atgttacgat 58560 tcttactact ttattccact acagaaaaaa taaaataaat atataaagaa tatagatact 58620 tagggccgcc gggggtacag ggtagtatgt acgtgctcca gctccgaaaa gttttttcgt 58680 gacattcgtg acattcgtga cagcctagtg ccacgcggcc tccagctgac ccaggctgtc 58740 acgatgttac gatcttggcc ctgtccgacc tctcttgttg agaacgtttc tcaaaatatc 58800 gattatggtt aaatgcgcca gggcgatatt tccgccctgg aacctatcga tcgatccaat 58860 ctttccacag cgcgttaccc ggaagagcgc tcagcgcggc ccccgtcacg tccccgtcca 58920 tcgtcttttc cccggccttg agcatgtagc tgaaggtcgg accgagggtg aacgccgggc 58980 tttcgatacc atcggtggcg aactggcgca cgccgagcag gccggcgcgt tccacacccc 59040 tccagatcag ttcacccgcg tcctggctct tgtaccagtc gggttcatcg cccgcgccct 59100 ggagcatggc cttgaggaag tcggcggcga tcatgaaggg cacgtacgcg gccagggtca 59160 gcatcggcgc atagttcccg ttccgcatct cgtgcgtggc gcggtcgagg atggtccgct 59220 ggaagctgta ggtgaactgc ttgaggtgcc acacgagcat ccagtgcggg tcactggccc 59280 aggctggacg gtccgccgcg tgcgggcgca ggactgcgcc gtccacccag cggccgatgg 59340 cttcgcgcac cagacggctt ttctcgatgg cgtccttcgg gttcatgccc tgggcgatga 59400 agtcctgcgc acggaacagc aggcgaccgt tcgcgtcggt ctgcacgtcc ttggcggtga 59460 taccaagctc gtcgaggtag cgtgtgctgt gctggttgac gcccgcggcg tggcgaatga 59520 tgaacttctc ggcggcgacg gtggccgccg agcgcatagc cgtgttccaa ccttccatca 59580 ggttgtactt gaacagcagg ttgttggtct tgcgcgccca gtccgacatg tagttggagc 59640 cgtacatgtc acccagcagg tcgagcacga acgactcttc cacggtgccg acatcctcag 59700 cgaagcgctg aatgtcgagc ttgttgccgt tgcgccgcag gctctgcggg atgttccgta 59760 caccggcttt gaaggcggtc caggcatcgc tcacttcccc gccgcgtacg acgatgccca 59820 gcgggtcgat aagggagctg aaaatcgaca gcggcagcac gacgaggttc tgccaagtga 59880 tcaggccgga catggcgctg cgcaggtgcg ggtcgatgtt gctaccgagc gtgccttcga 59940 gcgcacggat agccggcgct acatcccgtt cgatctgctc gtccgtcagg ccgtaccgct 60000 tggcttcttg cagctggtcc ttcaggcgtt caccgttccg tccgaagtgc ttcgtgtact 60060 ccccacgctt cgcagcctgg gtgacgtagc gggtcagcac acggacgata tccgggtcca 60120 tgtactgtgc gacggctgca cgatccttca gtcggatctt ccgttcgttg accgcctgca 60180 tgtacgggga gtagccggcc aagtcttcac tcagcgccag ttgcccctcg gtggtggtca 60240 acgtctcggc cacggaggta gcgatgtcgg gcgtcatgtc gatccagttc ccgttgtcgt 60300 cacgtacttg cccgacctgc accagcgcat cgacgaagtt atcgaagtcg gcgtcgatcg 60360 cctcccgact ccacgcctgc gggaagtagt cctgaacgtt cgccacgtcg acgttggaca 60420 ccttcatgta gttgaagatg cgacggagca acgacttggt gtcgtcgtac ttctgcgcca 60480 tggccggatc ggtcgggcgc acgttcctgt gaagcgccgc ggacagatcc gccagttgct 60540 gctcgtccat ggtcttgatg atgttggcca gctgcgtacc gaacaggttc gtcacttccc 60600 gcacggtctg gatgtacccg gcgcgttggc cctgggtatc gctgcgcgcg tagaactggt 60660 cagcgatctt gctcaacgcc gggttaccgt agttcttcaa ccggccgtgc gcggtgcgca 60720 ggaacttccc ggtgagcgta ctcacgcggt cagccactcg actgcttacc agggcgcgct 60780 ccgggccgga cagggactgc atcaccacgc ggttgacagc gctcggccgg cgcagcttcc 60840 catccttgaa tgcctggagg tacagctcgg ctttctgctc gttgttcagg atcgacaagg 60900 tgccgcgaat ccacccagcg aaccgggaca tccacgtctg cggctgcgcc tggatgtcga 60960 gcatgccact ggcccacaac tcgtacatgt aggcgatgcg ttcctccggg tcgctgagct 61020 gttcgagcgc ggccggttcg ttggccagca gggagcgcat cttgccgagc accaccgggt 61080 tactcgctgc gcggtccagc gccttgatga actggctttg ctgcttctgc ccgcgaagga 61140 cggaaatcaa cgcgtgcatg gattcatgga acgccgtgga catcgggctg gcggcgttga 61200 ccgctacctt gatgaaccgc tgcatggtcg ggttcccgtt gatgtccggg cgggtagggt 61260 ccagtttctc ggtgaacata ccgctgatac ccggcagcct ctcgatgctg aacatgacat 61320 cgctcggcag cacgcgagtg atgtagtcgt tcaggtcttt ggcttgctgc tggctcattt 61380 ggctcgcacc ctgcggccgg gcactctgct gggaagtctc gctgaggtac tgctggtgat 61440 acgcctccag cgcgtcgatg ttatcggaca ggtacgtcac agagcggcca gccagcccgg 61500 cctcgaagaa cgcgtcgtcg gcgatgaacg acaagcgccc caggcgcaga agacgctcag 61560 tcgctgccgg gtcagcccat tgtgccgaca gctgcttgtc gatccctgcg ccgaggatgt 61620 cccgcgcgcg ctgaacaccc tggcgagtgt cgaggctccg gcgggcttcc cggttcgccg 61680 ccgggttcat ggactcccgg cggttgtgca ggtcttcgcg cgtggcacgg tcgaaggcac 61740 gggccagatc accagcgatc tttgcctgcg ccggcacggt gatgtcgagc acgggcacgc 61800 cgatccggcg agccagcatg acggcggggg tactggcacc ggcggtgatc accacatcca 61860 cggggtcggt tccggtcggc cccaagatcc gcgcgtacgc gctcttgctg tacgggccgg 61920 tatcctgatc cacgtcgagt ctggtcccgc tgatggtgaa cccccggcgc gtgtaggcgt 61980 tcatcaggtt cgtggcgtcg cggctgcgaa gcacctcact acggttcaag gcgaaagcga 62040 ccttcaacgg cgtgccgttc atggctgcgg ccatcggcgc ggcccaggca cccggtacgt 62100 tcgtctgcgt ggtgttcatc cacgaccgct gctgcacgct ggcggcgacg ttgttcatgt 62160 gcgcgccgaa gtccagcggg gaaggcccag gccggcggcg gcctatcggc gtcggttcgt 62220 tccgcgcggc cgcaccttcc tgcccggtgg cggcttcgat ggtctgcgcc tgcatgcgct 62280 ccgggtcgag ttcctgcatg ccctgctggg cagcgaaatc ttcgaggttc cggcgttgca 62340 gctgctcgtc ggtgccggtg ttgtccaccg gagcaggccg gcggtcgagt tggcgctgcc 62400 agaagtcgcg cacggacggg tcttgggcct gggcagcgcc ctgggccagc aggcgtaggc 62460 tttcgcgcat tgggccgcgg tcggcaacgg tcctggccag ggtgtcgatg gggctgccgg 62520 gggtgcgcag ggagcctaaa tccatggccg gaggcagtgg ttcgccggtc agggtggcgg 62580 tattaccctc cagagccacg ccacgggggc tggcagcgcg caggagacgc gctgcggctt 62640 cgggaatggt agcggtgccc cctcgccgct gaagcgctcc caggagcgtc tggacggcgt 62700 attcgtcgat caagcgctca acgtccgcct gtcgtgcata ttgcacggtt cgctccgggt 62760 tttcgtacgt ttgtaccaag tcttggagcg cttcggcggt cgggctatcc aggccgatgg 62820 catcacgagg caggccggcg cgcggctggt ctgctccctg gcgcaggtcc gccacggtga 62880 ctgctacctc gccgctcccg tccttgtacc gggccaccac ggcggtgtcc ggtaactgga 62940 actggtagcc ggcgtcggcc agggtgccca ggccatcgga caaagcgtca cgcagcgcct 63000 gggcgtcacg acgaccgaat acctgcgcgc ctaccagacg gcgcaggtcc acggctacgt 63060 tcgtgccctc cggcgtcgtg gcagcgatgt agctgccggc ggacgggttg ttcggctctt 63120 ggttcagccg ctcaacggta gaacgacgaa gctgccgtac gctgcgaagg gcttgtgctg 63180 cacccgtagc gtcgggtcgg actgcccgaa caaggaccga acttgccagg gcgtcaggcg 63240 acagcccaag ttctgctgca acgtctgcgg gatcgacacc gagttcgcgc aaggctcgtt 63300 cagcgggcac gcgctcgata gacccgtccg ggttcgctct tcgagctgct tcttcggcac 63360 gctgaagtcg ttgcgtatcg gcacgggcga ttggggcggg gataccgagg ccgccagttt 63420 gaatccggcg gtttccggtg gtatcgccga accagttctc ggcggcggac tcgacggttc 63480 gagcttggtc gaactccccg ccgtcaagtt catcgtcaag agcgccagca gattggggag 63540 catcggatac ctcgcttgtg ctacggctgg gggactcacc gcgcaggctg gcgtccaggc 63600 cgtcgagcac ctgctgcggg ttggcgaagg cgcgttcgag gaacggttgc agctcgccgg 63660 tgccggtggt gagttcgaca cgcaacgcat tcgacagctg acggagatcc tgcggtcgca 63720 tggtgtcgcg gtactcaggg cgcaggcttt ggagcaggaa ttgatcgaag tcaccacgac 63780 gttgctgatc ttgccggatg gcacgcgcgg cggcttcatt cggttccagt gcgttcagga 63840 ccgagtacgc acgctcaccg aacacatcca gcgcaccgtc gatggtgttc tcgtcaa 63897 <210> 2 <211> 2430 <212> DNA <213> Unknown <220> <223> bacteriophage specific for Pseudomonas aeruginosa(YMC17/07/R4900a_PAE_BP) ORF 1 <400> 2 ttagttggac aggctgtcca aacgagtgcg caggtccggg tccaggccag ggaacgtgcg 60 gatggctgcc acggcgcgct ggcggtcgtc cgcgctcatg ttcctcgact gctggagcag 120 ccggcgggca taggcgttgg ccagcggagc gaattggctg gttcgttcgt cctgctggcg 180 cgaccggccc agtacgccgg gattgttgct ctggtactgg aatccgccca ggttgtacag 240 gttgccatcc cgcgtgcgca gcaccgggtc gccgttgatg acttggatcg agtccacgtt 300 cgaatccatg gtcgggtcca gtacgttacc gccggccacc actgcgttcg gcgtttcgga 360 cagagcgttg cctgctaccg caccgccgag gccgccggcg gctgcgccca ggatagcccg 420 ccctgcgctg accgccctcc ccgcgggggt acgacgtgcg gcagcggtca aaccgccgag 480 tgcagcgcca ccgaggccac ccaggagcgt acgagggtcg gtctggtcct gctgcccgcg 540 ctgcaccgtc tgcgctgcgt cgaagaaccg ctgctgggta gtcgggtcca tttcgctgac 600 cggccgaagg ctggccacgg agccatcgct gttcaggcgg tacacaccac ggcggaagtt 660 ctggtacgcc tgctgcacag cagcgaggcg ttctcgtgcc tgcggattgg tctgcgattc 720 gctgcgcagc gcttggagct gctgagcgta atcggcctcc tgctgctgta cccagttcgg 780 ttgatactgc gacaggaacg cttgggtggc ctgcggcact acggtttcgc cagactccgg 840 gtcttgacgg ccgaactggg cagccaaggc ggtgttgaag tcctcccggt tcgtgcctgc 900 gaagttcgcg tcgtcggccg atgcttgccg cccctgctgc atgcgcagac gttcgaggcc 960 catcagctgc tggaacgcgg cgttctgagc accgagccgg gcacgaagcg cacggtcacc 1020 gatctcagcc tgacgctcgt tgttgacgaa ggtgtccgcg gtgccctggc ggatggtgcc 1080 catttcgccg agacgacggt tctcacccat cagcgcacgg gcctgcatca ggtcggcggc 1140 actgccgctg cggatcaagc tctggatctg gccttcgttg atccgcatcc gctgctgcgc 1200 catccgagca tcggcaacag cctgacgacg agcgtcgcgt gcatcgagtt cggcgatcga 1260 cggcacgccg gcggacgaga tcgtgttggc cagcgggcga gcgctcgcag ccgaactccc 1320 ggtcgtaccg gatgcggcac cggccccacc ggggatattg gtgaacgtcg ggacaccacc 1380 gacggtagtg cgctgcacgg tgtcagtacc gccgccaggg cgcgcgaacg acaggctggt 1440 gggcgtagcc gcgccgagcg gtgcgctcgg ttggacagca gtcgcctcag tcggcgcagc 1500 ggcagcgggg gagggagtag ccggcgcagc aggcgcagta gcggcctcgg caacgatatc 1560 tcgctcggtc actgccggcg gagtaaccgc cggggccggg gccgtcactg caccggcggt 1620 caccggctcg gcgacagtag taccgcccag cgcgcggaac cgaggggtat taccctgagc 1680 gtcccgcccg gtgatcgggt ctaccgacat gctgctttcg cctccgggtc cggtcggcac 1740 gtccccgtct gcggcggaca ccatgacgtt ctcacgcggg gcttgaggtg ccaaaccacg 1800 ctgctggagg tcttccagcg ggctgacacc ggaccctcca atagctcggt caagggaacg 1860 aacagcgcca tcaccggcgg cgtaccccgc gctgcccagg gcagtcgctc cagcaatacc 1920 ggtggcaatg gcgccaggac cagaaggagc gccacccaca ccgccagcag ccgcgccaag 1980 agcaccccca acaccggcac ccaggagtgg ggcggcatcg aagccaacct ggcgagcagt 2040 ttgtccaaga tcgccttcgg ttccctcgta tacgcggcga gcattgtcga tagccggaat 2100 agcaccagcc aatgcaccga ctgcgccgcc caaacgtcgg ggggctacgc gggcctgctg 2160 cgcgccgccg agcacgcggt tggacttggc cagcgcttcc tgcacaccgg acggcatggg 2220 ttccggcgga agcccacgca tcggcgcagt gatggtacgc gtcgcggcgt tctgccggat 2280 acgcacagcc gagtcgtcag cagcgcttgc ggtgggcggc agcccgcttt caccgcggcg 2340 caggggccgg cgcgttccgt cgccaccggt gtagtcgatc tcgtcgacgg gaatctcttc 2400 gacgccgtat ccgagcggtt gacgagccat 2430 <210> 3 <211> 1173 <212> DNA <213> Unknown <220> <223> bacteriophage specific for Pseudomonas aeruginosa(YMC17/07/R4900a_PAE_BP) ORF 2 <400> 3 atggctgtca ctccagaact cgtatacgac ggagttggtt tcgtctcgaa cttggtcacc 60 gatgggaacc aacgcatgtt ggttctcgtc ggtcgcacgc agttctcttt gaacgtcttg 120 tactcgaacg acgccggttt gacttggaac tctacggggc tgcccccggc gatcaaccct 180 ggcgacttgg cccaaattga cgggtcgctt actgacgggc atcttacgct taccagctcc 240 gggtacacgc ccggtgggca gtacgtgagt tacctgttct gctccgatga tgctggtatg 300 tcgtggaccg aagttgcgat gccgagcggt tacagaaact tcgtcactgc cggctacgat 360 atcaccatgg ggtactactg gtttgtggta gaaatgcaat ccagcccgtg gaacagagcg 420 atctaccgta cgcaggatct ggtcaatcta gaactgatcc agatgctacc cggtaaccaa 480 gaaggcttca ctatccagac gttctataac aacaaggagg gtgcgctgag ttgggctggg 540 cgcaatgctt ggaactccag caatggcggt aacctcctta ccggcggtat tgttggtagc 600 agcatactca cgcatgttga gtatcctatc gtaccggcca ccacgtattt ctacgatagt 660 ctggttatct gcaaaccggc gtatcctaac gacgggcaga tttaccttgg tattgacacg 720 agcacttacg agatcgccgt caatgcgcag caaccgaacc cggcacccgc ggcgtacttc 780 gatggtgaag taggtatcgt atcagcgcgc attaccaatg atggttcgaa tttcttcgac 840 tcgtacttcg ctcgcatcgg cggaacttgg cagcagactt cgcccgtacc tacaaaccaa 900 caaccggttg cattcgtcaa aggactggac gacctgattt acgtcctcgg gaacaacggc 960 atcctttcgt cgactgttat cggtgcgact ttcacccagg aatacactgg attccccagc 1020 tccggtattc tctcgccgct catggggaaa gtgcaggatg gcttgtgtgt gctgttcgac 1080 aatggccaga tttaccgcgt gccgctgctc ccgccggagc cgccggttgt gggtaaattc 1140 tggaccgaca tagaatactg cgaagaattt taa 1173 <210> 4 <211> 957 <212> DNA <213> Unknown <220> <223> bacteriophage specific for Pseudomonas aeruginosa(YMC17/07/R4900a_PAE_BP) ORF 3 <400> 4 atggccatcg acgatacgat cgaatttttg caggacacgg ttaacgatgc cctgcgcact 60 gcgcgggaaa ccacctcccg tatccagaac aacttcgcgc cgccgctttc gaagccgtca 120 ctgagctaca cgctacagaa accggtcatt gagccgccgc cgaacttcgg tgacctgctg 180 cccggtgata cgactggtga gacggtggcg ttcctcgacg gcgaggtaga gaagtggctt 240 gagcagtatt tcccggagtt gacggcctgc ctgcgcacca agcccgaaga gtggctgtgt 300 ggcatcctta ccggacagaa gccgttcggc ctggacaagt cggtgttcga agctgaatgg 360 cacatcagcc gcgacaggga gactcgcgca cgtgaaagcg ctgtccagca gatccgtgtc 420 gatttctcca accgaggatt ctccctccct cccggtgccc tggtcggtgc tgtatcgcgt 480 gaagaagagc gcatgtccga tgccatcgct gacgtgaacc gcgcgcaaac catccgcgcc 540 gaagagatca aactcgacct gatgaagttc gcggaagagc aggctatccg gttgaaactc 600 ggcatcatgc aggcgctggc tgatttctac cgacagtggc tcgacattcc gaataaagac 660 ttggaagccg gacgaatcaa agccatggcc tacagctcgt tgacctcggc gctggccaac 720 tactaccaag tcgagcttgg gttcgagcag atcaggctgc gcgccgctga gtctcgcatg 780 gaaggcggca tcagcaacga tcggaacgtg atcgctgcgt ccaacgtgaa caactcggcg 840 gatgccctgg ccactgctgt gcgcgcgttc ggtgacgccg ccgctgctgc cgcaaacgcc 900 cagtctgcgc tccaggccga gatcgccagc gctacggccg gtggaggtaa cccgtaa 957 <210> 5 <211> 1863 <212> DNA <213> Unknown <220> <223> bacteriophage specific for Pseudomonas aeruginosa(YMC17/07/R4900a_PAE_BP) ORF 5 <400> 5 atggccaacg ggctgcgaaa aactgggcaa acgaatacgt tccctgagcg gccccctgtc 60 cctggccgcc cggcgtactg ctacaccgag cagcgtatcg tcccgaacgt aaacggcggc 120 cagccgatcg gcgatgatta cttcggatcg cataacgcca atagcgccac cggctccggt 180 tcgtatgcgg ttggcgttcc gcagtacacc gacaaggttc cgcagtacac gtcgatgtgg 240 aaggtcgtca atgtgacgat ctgcgttcct gccgtaccgt ccgaacccgg tatccctggg 300 aagaccatcg tcgatccgaa gaccggatgg aacgctggcg gccgcagcgt gacggctgtt 360 gaaggtgatg cgatcctgaa gttcaccgtg ccggataaac cgaccggcgt ccttgttggg 420 ttctctgatg gacgcttcga caactcgttc ggccacccga cacatgcgtt cgccttctac 480 cctgaccggt tccgtatcta cgatcgtggt gtgatcatct tcgaagactt cttccggttc 540 accaaccggt acgccatgtc gcgcgtcggc ggccgggtca cgttctacga agtcaacccg 600 aacgatgatt cttcgcttcg ccccatcgtc aatggcatca cgccttccgg cgggacgatc 660 tacgctgacg ccacgctgta ctcggtcggc gacttcgtga acgacccatc gttcggcggt 720 aactcgtctg cgcagctcaa tgcgctggtc ccgcgtcttc gcccgaccat ctacgaagcg 780 acgtatgccg gtgttgattc tgaacttccg cggatggtac tgatcgcaga tgccgtcgag 840 ccgcaggtta tcaacggtat cgtccccatg ccactgggga acatttcgaa ctactccggc 900 gctaccctgg tgcggactct accgcgcttg gtgcttcaag ccggtacgtc cgatttcgtg 960 gctccatggt cctacgtctc ggcgcatatc cctcgaccgt tcgggagtac caccatcctc 1020 accggcgaag tgcttggcct ggacaacacg atcccgacgc cgcagcggtt gatctcggat 1080 cgtccgtacg cagaagccgg tggcaagtgg ccgtctcggt acatcatcga cgtttgggaa 1140 aacctctggc cgccgggcac cctgatggtg ccggagccga tgcctgtata cagcactgcc 1200 atgctcgacg cacccgtgct gctcatggtc acggacggca tggagatcag cggcaccatc 1260 gacttgatca tgctggtcag cctggatgcc tacgactacc tcggcctgaa cacgacgttc 1320 actctggaaa gcaccatcga actgatgatg cgcgacgggc tggcggtcta ctcgaacatc 1380 agcaccgcgc gggagactgc gctccagtac gccgtcaacg tgctgaccgg cgcgctgacc 1440 acctaccaga atttcggctt caccggcttt gcccgcgtgg gtaatgacac gttcgggatc 1500 aagaacgacg gcctgtatcg cctcgaaggt gagacggacg atggtgaact gctccgcgcg 1560 ttgatcgact tcggtgctga cgactacggc gtgaagaaca ccaagcggtt gtcgagcgcg 1620 tacgctggta tcaccacgga cgggcgtgtg tacttccgca tcaccggcga tgacggtgaa 1680 gagcgcgtgt acacccttgc cggcgaaagt cctgagttcc gcacgccgga tggtgttgcg 1740 aaaggcgtcg ctgctcgcca ctggaggctt cgcctggaag tcgaagacgc ttcgttcgcg 1800 gatctggaca acatcgaagt ggaggtcggg gtttcctccc gcagaatcca tcggaggaac 1860 tga 1863 <210> 6 <211> 444 <212> DNA <213> Unknown <220> <223> bacteriophage specific for Pseudomonas aeruginosa(YMC17/07/R4900a_PAE_BP) ORF 6 <400> 6 atggcactga agtacagctc tggtctgcgc aattcgatga tcgccgacca acctcttcgc 60 aacctgctga ccggctcggt aatccgaatc tactccggct cggctccggc caccgctgat 120 gctacgctcg gctcggccgt gctgttggta gagatcagcg tgaacggctc cggcaacggc 180 gtgagcttcg aaagcaccgt cagcaacggc actttgacca aatcgctgtc cgaggtctgg 240 aacggcacct gtgttgcgac tggcactgca tcgttcttcc gcatggtaca gcccacggac 300 gatggatcgg cgagcaacat cgatccgcgc atccagggca ccgttgctgt gagcggcgcg 360 gacatgaaca tcactcagcc taacctcacc agcggtgcgg ttcagtcgct ggaatacttc 420 tacctgacca tgccggagtc gtaa 444 <210> 7 <211> 1197 <212> DNA <213> Unknown <220> <223> bacteriophage specific for Pseudomonas aeruginosa(YMC17/07/R4900a_PAE_BP) ORF 8 <400> 7 atgagcatcg agacgcgcga caactgggcc agcgggtcca acaacatcgc caagccggag 60 cggctgccgg agaactccgt cgtcaaggcg atgaacatgg atcccaccaa cggtgggaaa 120 ttcgagctgc gtaccggctt cgtcaaggtg aatgactgcg ccgctggccg ggccgtgttc 180 ccgctcggca cggccattct gttcgtcgat ggcggcgacc tcaaagtatt cgacgccagg 240 accaaccagg ggcatgtcgt cgggtcggtt aaccccaacg gtgaagtggc cggctgcgaa 300 cacaacaacc agctgtacct gtctaccccc accgaaagcc ttcgtttcga cggcaacacg 360 gttcggaagt ggggagtgcc gtcgccggta tacaccatca gtctcgtcga cggccacttg 420 ccgaccggaa cgtacaaggt ggctgtgaca gcttatggcg agcagggtga agagtccggt 480 gctgacgccg ttgccgtgtc cgtaccgggt ggtaaagcga tccagatttc gtgcaacgac 540 ccgcggtcct gcacggtgta ttgcagctct gtgaacggat cgacgttgta cgcccagggg 600 ctggtcagtc tgaacacgtt catcatcacg tccacggtgg ataacactca gcggttcact 660 accgacgaaa tgacccctat gccgccgtgc tcgctccttg tgtcgcacca cgctgtcatc 720 gttggggcct acaacaacat catcgtgatg accgagccga tgtggccgca cttgaccaac 780 cccatcactc gattcatcca gctaccgcgc gacatcacca tgctcgccag cgtcgacacc 840 ggcgtgttcg tcgccaccga cgaggaaacc tactggctga ccgatgtcga aacggacgag 900 ccgagttcgg tgcgcaagac gaacttcggc gcagtgcgcg ggaccgctgt caagctgccc 960 gatggccgcg cggcttggtt tacccggtac ggccaagcca taggcgacgc cagcgggaac 1020 attgaactgc caaaccgggt aaactatgct cccgacattg cgactgatgg tgctgccggc 1080 gtgctagaac acaacggtaa ccagttggtc gtcactaccc tgaaaggcca aacgaccacc 1140 aattcactcg gagccggaga tttctggcag cttgaggtaa tcgacaatga ccagtag 1197 <210> 8 <211> 624 <212> DNA <213> Unknown <220> <223> bacteriophage specific for Pseudomonas aeruginosa(YMC17/07/R4900a_PAE_BP) ORF 9 <400> 8 atggtcatca gtaagcagca gttcgaggcg ttgttccctg acgctcccga cgaagtattc 60 gaacccctgg tacgcagcat ggtccgctac gacatcacgt cgacggcgcg tgctgcggcg 120 taccttgctc aaatcggcca tgaatcctcc ggcctcaccc gcttcgaaga aaatctcaac 180 tacagcgctg cccgtttagc cgctgtgtgg cccagtcgct acaaagcaca cagcggtggc 240 cccaacgccc tggctacgca aatcgcgcgc aacccgcaag ccatcgccaa caacacgtac 300 gccaaccgca tgggcaatgg cgacgtgctc agtggtgatg gctggcggta tcgtggtcgc 360 ggcccgttgc aggtcaccgg caaggatggc taccgcaggg cacaggtcat gaccggacgc 420 ccgttcgtag atgacccgga catgatggcc acctacgacg gcggcctcga agccgccgcc 480 gctacgtggc gagacaaggg ctgcaatacc ctggcggacc agggtcggtt cagcgagatc 540 acccgccgga taaacggcgg gatgaatgga gctgaggaca gggaaaaccg ttggcagaag 600 gccaagaagg tactggcgca atga 624 <210> 9 <211> 660 <212> DNA <213> Unknown <220> <223> bacteriophage specific for Pseudomonas aeruginosa(YMC17/07/R4900a_PAE_BP) ORF 13 <400> 9 atgggcaccc gtgtagctga tcttgtcacg acgttccggg aagaaatgcg ggataaggtc 60 cagccttact tctggtcgaa cgatctgctg gtcagctaca tccgggaagc tcagctgaag 120 atcgccgaga aaaccctctg cttggtcggc cagttcaccc ttgaggtgga gcctgggacc 180 ggcatcgtca tcatggacga ggcgatcatc cgtcctcgcc gcgcctggat cgaatcccag 240 cgcggcgaag tcgagatcaa ctgcgtagaa gatcagctcc cggcattcgg cgtgcaagat 300 gcttggaact gccacggcag caaccgtacg ttgacggtgc agttcgacca gcaaggcgat 360 gtcgaactgg cgctctaccg ccccaagccc aacaccgcgc tccagctcac tatcgctgcg 420 taccgtcgcc cggtatgcgg cctgacgatc aacgacaagc tggagatcaa ttctcggtac 480 gaccgtgccg tgctgttcta catgaagtac ctcggcctgc tcgtacaaga cgctgaggtg 540 ttcgacaagt cggaatcgaa tgagcaactt cggctgttcg gcatggaact cggcgacatc 600 aaagagtcgc aggccataag ccaccgctcg ttccagccga ttcgctacaa cgagtattag 660 660 <210> 10 <211> 450 <212> DNA <213> Unknown <220> <223> bacteriophage specific for Pseudomonas aeruginosa(YMC17/07/R4900a_PAE_BP) ORF 14 <400> 10 atggctggca aaacccccgt ccagaacacc gtccaatacg tctccctgac cgatcaggtc 60 gtggccacca tcactgggca cgcgtttcgg ttcgaggccg gcgtaccgcg ttccatcccg 120 aaccacaacc tcgtgctgaa ggctgtacgc gaagctggtt gcgtcgatgt gaacagcatc 180 accgacgaga agttgcgcgc ttccctgaag ctcaccggcg agccgggcac cgctaccacc 240 gtagaccagc agatcgacaa caacgcggct gaacgcgtcg accagatcct ggccgccatc 300 aagactctgg tggatcgcgg cgactctgcc gacttcgcct ccggcggtaa gccgaagacc 360 gaagcaatcg cctccatcac cggcttcgaa gtgaaagccg ctgaacgcga ctccgcctgg 420 aagctgtacc agaccgacaa gccggagtaa 450 <210> 11 <211> 432 <212> DNA <213> Unknown <220> <223> bacteriophage specific for Pseudomonas aeruginosa(YMC17/07/R4900a_PAE_BP) ORF 15 <400> 11 atggcaactc tggaaaacac cgcacgccag tacccgctgt tcatcgagca gaccctcgat 60 ttcagcgatc tggtcgacgg tcaggccgct accctgaccc tcgaattgca aaacggcgcg 120 atcctcgtcc cggagatcag caagctgctg gtcaccaccg catcgaacgc tgccggtgct 180 gcaaccctgg acatcggcgt catcgagccg gggctggcag ccgacccgga cggcatcgcc 240 gccgatctgg atctgaaaac caccggcgcg aaagtcctgg ctccggccaa gctgacctac 300 ccgaacggcg cagtgatcac cttcactgct accgcttcca ctggtggcac cgccggtaag 360 ttcaagttcc tgctggccta catcgtcgaa ggtcgcggca acgagactta cggctccccg 420 gcgtacaact ga 432 <210> 12 <211> 1131 <212> DNA <213> Unknown <220> <223> bacteriophage specific for Pseudomonas aeruginosa(YMC17/07/R4900a_PAE_BP) ORF 16 <400> 12 atgccgttgc ccgtccaagg taactacacc aactttgcgc gcctgaccaa cgaacagaag 60 accgtatggt cccttcagtt ctggcggcaa gcgcgtaacg ccgcgttcat caacatgttc 120 ctcggcaccg atgccaactc gatgatccag cagatcaccg aactgcgtcg tgacgagaaa 180 ggcgcacgcg ccgtaatcac cctgatcgct gacatggttg gcgacggtgt ggtcggcgac 240 aaccaactgg aaggtaacga agaggcgctg accgccttcg ataccgtcat ccagctggac 300 cagatgcgcg ccgccaacgt ccacgaaggt cgcatggccg accagcgttc catcgtcaac 360 ttccgtacta ccagccgcga catgctggcg tactggctgg ccgaccgtat ggaccaactg 420 gcgttcctgt cgctggccgg cgtgagctat gcctatcgca ccaacggtgc gctgcgtggt 480 agctcgccgt tcccgaacct caccttcgcc gccgacgtta ctccgccttc ggccaaccgt 540 cgtctgcgct gggatggcac caacaaggtg ctggttccga acgccgccac ctccgacgtt 600 accgccgctg ataccccgag ctacgctctg ctggtcaacc tcaaggcgta cgcgaagacc 660 aagtacatcc gtggtctgcg cggcgacggc ggcgaggaaa tgtatcacgt gttcctcgac 720 ccgctggcca tggccaagct gaagctggac ccggactaca tcgccaacct gcgtagcggt 780 tacacccgcg gcaacgtgaa cccgctgttc aagggcggca tcgtgaccgt ggatggtctg 840 gtgattcacg agttccgcca cgtgtacaac acccgcggca tggctccggg tgccaagtgg 900 ggtgcctccg gcaacgttga cggctgctcg atgctcttct gcggcgcgca ggcgctgggc 960 ttcgccgata tcggcaaccc gcgctgggtc gagaaggaat tcgactacga caacaagcac 1020 ggtatctccg tggcgaagat cctcggcttc ctgaagcctc agttcccgtc gatctacgag 1080 gacggtaaca ccgaggactt cggtgtcatc aacgtgtacg tggccgccta a 1131 <210> 13 <211> 1881 <212> DNA <213> Unknown <220> <223> bacteriophage specific for Pseudomonas aeruginosa(YMC17/07/R4900a_PAE_BP) ORF 19 <400> 13 atgccgaata cgtcgagtga gcgtaagccg cgctggcact gctcgaagtg cgaatcgccg 60 atctataccc ccaggcacag caccgggatc tgtctgtcct gccgcgtcgc cggccgaggg 120 aacaagatcg tcgatgtagc gaatgatccc gtcgataccg tcgataccgt gccgatcccg 180 aaaacggcca agttgaagaa agaccggatc gacaagaaga agccccgcgc caacccgaag 240 atcatgcgcg agaacacgcg gtcgaattcg gcccacgtga tctacgagga cggcagtatc 300 ggggtcgtca gccgggatag ccacgagtac cagctggccg ccgcgcagaa gatcatggcc 360 gagcgcacgc tcatgcgccg gcggttcctc ccgttcgtgc agaagatgaa ctcgaagtac 420 gaggtagccg tcgcccacga gatcctggcg cgcgtactgg agcaatttct cgacgactcc 480 atgaatgggc ggtcgccccg cgtcatggtc acgttcccgc cgcggcacgg gaaatccgag 540 cagaccagcc ggaagttccc ggcctgggcg ctggggaaat acccggaggc agggatcatc 600 ctggccagct acggcatgga cttggccgag aagatgtccc gcgacatcct cagcacggtg 660 aagagccagg aatacaaggc gatcttcccg gacttggaac tggtcaacga gcgtatcgat 720 gactgggcca cgtcgaaagg cggcggtgta cgtgccgcgg gcgttggcgt cggcgtgact 780 ggtatgggct gccacatgct gatcatcgac gacccgttca aggaccggga atcggcggat 840 tcggagacga tccgggagaa gacttgggac tggtacacct cgacggcgct gactcgtttg 900 acccccggcg gcggcgtgct gctgatcaac acccgctggc acgatgatga cctgtccggc 960 cggctctgcg ccgcgatgca ggaagatcct gagtacgaga aatggaagat cgtcaacttc 1020 gctgccttgg ccgagaacga cgagtggctg acccaggacg atacgatcgt cgactcaccg 1080 ctgcccggcg ccgtaccgtt caggaaggcc ggggaagctc tgcacgaagc ccggtacagc 1140 cggaagtacc tgctcaatct gaaacggatt ttgcacgcac gggactggaa cagcctgtac 1200 cagcagaacc cggtgccgga cgacggggaa tacttcaagt cggactactt catcgagcac 1260 gaccctgggg acgagcgcta cgacggcacg gcgtacatcg ccgtggactt cgcgatcacc 1320 gagaagcaga ccagtgacta caccgtcatc gccgccgggt tgcacatgcc gaacgacacg 1380 atccacgtcg acgacatcat ccgtatgcgc acgggggaca gctcgaaggt ggtcacggcc 1440 atactcgaca ccgtgcagcg gtacaagtcg cacaaccctg tcctgggcgt ggaagatggg 1500 cagatttgga agtcgatcag gccgtacttc gaagccgagg ccaagcggcg gaagatttac 1560 gtcaaggttg agctgctgaa gccgctgacc gataaatcgg cacgtgcccg gccgctccag 1620 ggccgtatgg cgaaccacat ggtcacgctg cgccgcggcg ctcgctggat cgagacgatg 1680 aaggctgagt tccttcgatt cccggtaggc cggcacgatg atatagtcga cgcgcttgca 1740 tggatggcac agctgatcct tactaagaac ccaccgctcc ctctttccgc gcgccggccg 1800 cgtcgcgggg atcgcaccgt tgcgcagcag ttgtccgaca tcctgcgcgg cgtcgggaac 1860 ggcagtcaca tgagcgcatg a 1881 <210> 14 <211> 1476 <212> DNA <213> Unknown <220> <223> bacteriophage specific for Pseudomonas aeruginosa(YMC17/07/R4900a_PAE_BP) ORF 48 <400> 14 atgtcgaaca acgccaccgt caagaaagcc gtcaagtcgc tcagcgagat ccccgagcag 60 caccatgtcg ccgagatcgt ccaccacggc gacaagctga ccctgcccga aggcatgggc 120 gtcagcgatg ctatcgagct gctggagcgc cgccgcagct acctcgaaga agctgtcggc 180 ctgacgcgca ccttcaacgt cttcccctgg gacggcgcga acgccatcaa catcgccctg 240 gcgcgtcgtt tcggctgggc cgccgccgag gctactcctg gcttcttcgg cagcactccg 300 ccgaagatga tcaccatcga agtcggccct ggccagaccc gtcgtgtacc gtggggtcgc 360 ttcagcatgc cgggtatcga aggcttcgtg cagaccagcg ccagcatgaa agacggccgt 420 ctgtgtttcc agctggtcgc gcaggttctg cgtaaggacg agcagaccat cgagaagctg 480 ttcgatgaag tcgaagacgt gctgaagcac gagtcgatct acgccggtaa ggcgatcaag 540 atccgcttcc gtgacgacga cggcaacacc ctggaaatgc ccgagccgaa gttcctcgac 600 gtgagcggcg tgtcgcgcga catgctggtg tactcgaaag aagtcaccga ctccatcgaa 660 accaacctgt tcacgcccat cgagcgcgtc cacgactgca tcaagaacgg tatcccggtc 720 aagcgcggcg tcctgctggg cggtccgtac ggcaccggta agaccctggc cgccaccgtt 780 gcatcgcgtc tcgctgtcga cgccggcgta acctacctgt acgtgccgcg tgcggacgaa 840 ctggccgacg ccatcgagtt cgccaagcag taccaagacg tggcctgcgt gatcttctgc 900 gaggacatcg atcgctgcat gagcggcgag cgttcggtgg cgatggacga catcctgaac 960 atcctcgacg gcatcgacac caagtcgtcg cggatcatca ccgtcctcac caccaaccac 1020 ctgaccgaca tcaacccggc catgctgcgc cccggccgcc tggacgcgat catcgacgtg 1080 gttccgccgg atgcggaagc tgtcgttcgc ctgatcaagc tctacggcgc tggtgacatc 1140 gacgagcagg ctgatctgac cccggcggcc gagctgctgg ccggtgcgat tccggcggtc 1200 atcgccgagg tagtcaagcg ttcgaagctg gcccagctcc agctgcaagc gccgggcacc 1260 gcgatcgaga agatcaccgg cgacgcgatc ctgctggcgg cgcaggccat ccagagccaa 1320 gtcaagctgc tggccgagca gtcaatgccg cgtgtggctc cgctcaccat ggacagcctg 1380 ctgcgcaaca tcgtcaagga cgagttcgaa gcgctcgcaa ccgaactgga cagcattcgc 1440 caactgtccg aaagcatccg cgaacgcgta agctaa 1476 <210> 15 <211> 729 <212> DNA <213> Unknown <220> <223> bacteriophage specific for Pseudomonas aeruginosa(YMC17/07/R4900a_PAE_BP) ORF 62 <400> 15 atgcgctggt cgatcagtaa gctgcacgtc cgcgaaggct gtgcataccg ctacaaactg 60 aagtacatcg acaaagttcc cgaacctgaa cgtcccctcc cccctggtaa gtctgagcac 120 gcgaacgacc gcggctctcg tgtccacgag cagaacgaac tattcgttcg cggtgaagtg 180 gacaagctgc cggcagaatc tgctgacttc caagccttga tcgaagacct gcaagaacgc 240 ttccgcgccg gcttggtcat gctggagcat gactggtgct tcgacgaaga ttgggaaccc 300 tgctcgcccg aagagcgggc cgccatcgcc atcgtcgacg tggctgtctg gatcgttaaa 360 gatcgctggc tcctgatcat cgattacaaa accgggcgca agtacgaaac caagcacatg 420 gaccagatgc agctctatgc cctggccgcc ttcaagaaat ggccgttcct cgaacgagtc 480 accaccgaac tctggtatct cgatatcgac gagatatcga ccagtcactt cacccgaaac 540 catatcccgg ctatccagcg cgcgttccat aaccgcgtcg ggaagatgga acgggacacc 600 gaattcaaac cggccgcgaa tatctacagc tgccggtact gcccgtacaa ggacgggatc 660 tgtccgcacg cggtagacga aaaaacgccc gtgaagggca acgaatgggc ctctgagtgg 720 aagatatga 729 <210> 16 <211> 1362 <212> DNA <213> Unknown <220> <223> bacteriophage specific for Pseudomonas aeruginosa(YMC17/07/R4900a_PAE_BP) ORF 64 <400> 16 atggcaaagt tcaaaccgat caaactgatg ccgcaccaga agaagacgct gaagaagcgc 60 ggcgaaactt cgatcttgct ggatctgtcc gaaccgggca ccgggaagtc cgtggcgcat 120 gcgacgcact tcgtgaagca tcggcaagca ggcggcggcg ctgggttgat cgtcgcgccg 180 ttgtcgttga tcgatacggt atggccacac gagatcggcc tggtgaaccc ggacgtggat 240 gtgagcgtag cgttcgccac caaccgagcc aaggcgttcc agcctgggca cgacatatat 300 gtcaccaact acaacggcct ggagtacctg tccgaaaacc ccagcctcat gcggaagttg 360 ggaatcgatt ggttcctcgg cgacgaggcc actgccttca agaacccgca ggccaagcgc 420 acgaaacgct gccataaact ggttcggaac gtcgagttca aagcgctgct gtccggttcg 480 ctcggcgcga agatgatcac cgattacttt gcaccgacgc tgatacttga cgatggtaaa 540 cgcctgggat ggcagttcag ccgattccgc gaagcaacct gctacccggt gcaagttggc 600 cggcaagcgc acatgatcca atgggagccg cgcgaaggcg cagacttggc cgtggctcag 660 ctcttgcagg acatcagcat ccgtcacctc ttcgccacca cggtgaagca gagcatccgc 720 acgatcgaat tcaagctgcc gccgaagctg cgcaagttgt acgagcagat ggcgcgggag 780 caagccatgt tcctcaagga caaggtgatc accgcggcga acggtggggc agccgcgcag 840 aagttgctcc agatcgccag cggctcgacc tacgacaacc agaaggccaa caccctgctc 900 gacatgcagc ggtacgaact tgtcgccgat ctggccgagg aacgcgaaaa gaccctgatc 960 gcgttccagt ggcaccacca gcgtgaagcg cttgagctgc tgctgaaaaa gcgtgggcgg 1020 accaccgcat atatcgatgg caccgtaccg ggcgagaagc gcaaagctat cgtcgaagcg 1080 cacaaacgcg gtgagatcga tgacctgctt cttcaaccgc aagcggctgc acacggcctt 1140 accctggtga atgccaggac tacgatttgg gccacgccga cctacgacta cgagctgttc 1200 gaccagctca accggcggac ctatcggact ggccagagcc aggattgcga agtcatcgtg 1260 atatgcgccg agaacacact cgacgccaaa gccttcgagg tctgcacgac caaaggcaag 1320 cgcatgatga cgatgttcga gtacatccgc gacttcacgt aa 1362 <210> 17 <211> 1965 <212> DNA <213> Unknown <220> <223> bacteriophage specific for Pseudomonas aeruginosa(YMC17/07/R4900a_PAE_BP) ORF 65 <400> 17 atgacgatta tggttccgcg catccatgac gggatgaaac ccgttacgct gcgcccgctg 60 aaaaagttca aaccgctggt ggtcgacttc gaaacctact ggggtccgaa gtattccctg 120 cgcatgatgt ccaccagtga ctacgttcgc ggtgaccagt tcaagatcca ctgcgtaggt 180 gccaagctgg gcaacgccaa gacgcgcatc ttcaccgaca tgaagaagtt cgctgcgtgg 240 ctggctaagg tccaggctga gtacgagatc gagttaatag gccacaacct gtacttcgac 300 ggcttgatcc tcagcgagta tttcggattc gtgccggcgg cttaccgctg cacgatgtcg 360 atgtcgaaag ggctgttccg caacaccatc gcgcacggcc ttgacaccgt agcgaagctg 420 ttcggcctgg ccggtaaagt aaaggcccag gccaacgtga acacgttcgg caaatgggat 480 ctcacgcggc acgagttgag tgacctcggc gaatactgca tcgacgattg cgaagacacc 540 tacagaatct accaggccat gcgtccgtac ataccggacg atgaaatgga catcatccac 600 gacaccgttc gttgtttctg cgacccggtg cttcgcgtga acggaccgat gctcgaagaa 660 gcgatcgccg aagtcgaagc caagcgtgcg gtcttgtaca agcaagcgat cgaactggtg 720 aacaccctcg ctccggggct ggtcaacgcc aagcgcccgt tcgagacggt gctgcgatct 780 gctgtcgatt tcccgctgct gcttgaagca ctcggcgttg aagtgccgat gaagcagaac 840 gataaaggct tgtggatacc agcactggcc aagaaagaca cagggttcgt cgagctgtgc 900 gaagaccctg atcctctggt ccgtctcctg tgtgaagcgc gacttcagtt cacgtcgaac 960 cagaccgtca cgcgtgcgca gcgcctgctg gacgctaccc aggacggagc actgctgccg 1020 gtgatgtacg gctactgcgg cgcattgtcg atgcgctgga cagccggcaa caagatgaac 1080 ctccagaacc ttcagcgcgg gtcggcactt cgccgagcca tcgaagcgcc gaagggctgg 1140 cacatcatga ccggggactc ggcgcagatc gaagcacgga ttctggcgta catagctggg 1200 cagtgggatc tggtcgaagc gttccgcgtc ggcgcggacg tgtactccga attcgccatg 1260 gagatttacc cggatgtcga ggtaagcaag gaaaacccgg atacggaaac cgagcgtcac 1320 gtaggtaaga cttccatcct cggcctgggt tacggcatgg ggttcaggaa gttcatcacc 1380 acgatggcga ccagcttcat ccccgtgctg atggaagtcg aagacgccaa gcacgtcgtg 1440 aacacgtacc gcacgaagta cccgatgatc ccggcgttgt ggaagtacct cgacagcatc 1500 ctggccgata tggctgctgg taacagcggg ttcatcgagt tccagtgcgg gcttcgcctg 1560 gaatacgaac ctgaccggat ctggatgccg aatggcctgt gcctgcatta ccccgaactc 1620 cgtgaagagt acgacgagga cactgggcgg aagaacggct acacctactc gatcgtccgc 1680 gggaagaacg tcagccggaa gaaaatctac ggcgggctgc tgactgaaaa catcgtccag 1740 tgcttggcgc ggatcgtagt gggtgaccag atgcggctca tggcgaaagc ctaccgtgtg 1800 gtcatgacca cacacgacga agtgtcgatg ctggtccggg ctacgaagac ggcgctggcc 1860 aaggccacga agttcatggt gaaaacgatg tccactgcac cctggtgggc acctgacctg 1920 ccggtggcga ctgaagtgaa ggacgccccg tactactgca agtag 1965 <210> 18 <211> 540 <212> DNA <213> Unknown <220> <223> bacteriophage specific for Pseudomonas aeruginosa(YMC17/07/R4900a_PAE_BP) ORF 73 <400> 18 atggcaaagc aaatacctac ggaactgtct atcgacctgg aaaccctcgg aacctccgtg 60 gaatcggtga tcctttcggt ggcgatggtg acgagcaccg gcgaaaagtt ccacatagca 120 atcgatccgt ccgagcaaat cgccgccggc cgtaaagtcg atgcgagcac gatcatgtgg 180 tggctcggcc ccggcgctgg tgaaccggcg cgcggggcaa tgaccgaact catggccaag 240 cggaagtacg gcatggaaga cgccaagctc gaaatcatgt cgttcctcga cggcgtactg 300 aagaaaaacc cgcgcgtgcg cgtgtggggt aactccccgt cgttcgactg cgaaatgctg 360 gcgaatttcc tcggctgtaa accgtggctc ttcttcaacg agcgcgatgt tcgtacggca 420 cgcatggtgg tcgggcgtac ccaggccagt accggacacg acgcgctggc cgacgcagaa 480 gcgcagctcg tcgacgccat gcgtttcatc gaagtggccg acaaggaggc gcgcaaatga 540 540 <210> 19 <211> 393 <212> DNA <213> Unknown <220> <223> bacteriophage specific for Pseudomonas aeruginosa(YMC17/07/R4900a_PAE_BP) ORF 79 <400> 19 atgaacctgt cctgggactt catgaagtcc atcgctgagc gggaaagcgt gaaagaggta 60 ctgtcggaat tcctcaagga atcgacgctc aaagtgaacg gcgctgacgc actgctggtg 120 ctgcacatcg tatcggcgta caccacctgc gacggcagcc acggcgggcc agcatgtggt 180 gaccctgatt gctgcgccaa tcagaaacct gacgacgcga aaattcgcat gcagttggaa 240 cgcgccgtga atgcattgcg tacgttgtgt aacgtcgaca cgaaggaaga catcgatgcg 300 atgctgctcg ctatgcgtgc catgcccggt gacttgaacg accgcatcgc ggtcatagca 360 accttggaac tactgaagga gctgatggaa tga 393 <210> 20 <211> 303 <212> DNA <213> Unknown <220> <223> bacteriophage specific for Pseudomonas aeruginosa(YMC17/07/R4900a_PAE_BP) ORF 82 <400> 20 atgatcatca agttgtcgcc gtatgcaccg ctccccgata gcaacgagca cctgtcgctg 60 agcaggactg gtgatgtact cactgtgaac ggtcaggagt tcgattttac gccgctcccg 120 gagggtggtg agttgccgtc cgaggctatt gagtcggaat ggttcgtcgg tcctgtagta 180 cgaagaaacg gccggctgga gttgactctg cgctacccgc ttgacgtgga tgctagcgaa 240 gccgctagat tccctgagcc gttgcttatc gaggccgatg gcccggtgga gttaccgaaa 300 tga 303 <210> 21 <211> 957 <212> DNA <213> Unknown <220> <223> bacteriophage specific for Pseudomonas aeruginosa(YMC17/07/R4900a_PAE_BP) ORF 83 <400> 21 atggctgacg caatccccct caaggtaatc gacaacggcg gcggcaacgg gaacctgtcc 60 cagttcgccg ccagcgacac cgtacctatc accaacggcg ggactggcgc ttccaccgca 120 accgatgcgt tcgcggccct ggccacggca cgggtgaaca acttcgcggg tctggccggc 180 ggaacggacg tgctgccgta tcagaacggt gcgaatacct gggcgcaaac gccgatcacc 240 gccgtaggcc gggcgattat caacgccagt acgcaggcaa acgccttgaa ctatatcggc 300 ggcgtaccta aaagtatgtc gttcaaccgg gccgtctccg acccgaacac ggtccctgac 360 gaatgtgggt tctacggtat cggtacgtcg ccctggtcga atctgccgcc gggtatcgat 420 tcgctgaacc ctattggttc tatgctctac caccacccct acgacgcagc aactgcggtg 480 cagctgttcg taccgcggac ttcgaacatc ttctatttcc gacgcaaggg atctggtact 540 tggcagccgt ggattcgcgt gctgtccgat gcgcagcttc ttggtacggt agctcagtct 600 ggaggctcgc cgatcggctc tattcttgag cgaggcagca acgcgaacgg ggaatacatc 660 cggctcgcag acggtacgca gctctgctgg ttcaacgcca gcgttaccga tcaggcggtc 720 gataccgctt acggcagctt gtttaccggc actcgtgggt ggtctttccc tgcgacgttt 780 gtcggtagcc cgacggtgag tgtcggtcta tttcgctggg ggactggcgc aggctgggga 840 accgtcggcg gggttgctag tacgaccagt gtgacgctgc ggatattcga catcgcttcg 900 agggcgaccg gaaccgcgac agcaatctct gcgatagcca acgggaggtg gttctga 957 <210> 22 <211> 678 <212> DNA <213> Unknown <220> <223> bacteriophage specific for Pseudomonas aeruginosa(YMC17/07/R4900a_PAE_BP) ORF 86 <400> 22 atgaacgcag gtcaggctct agtcgtccgc cgggtcggcc agtgcctgtc cgtggcggta 60 tcgacaccgc aggcgcttgt caccagggag cgctctcagg cgctgcttgt gcgtgacccc 120 gacatggaga tcgtcctgcc cctggcgcgg ccagcgtcgc aactggagta caccgccatg 180 gtcctgccgc ctgcgcaggc cgtcaccgag gtgctgatcc agccgggggc gcagcaggtg 240 caggacttgc gctcggcggc gttcgtcgtc ctggccgggc agcctgggcg caagggcgac 300 aagggtgaac ccggcccggc cggcggcgcg atcatccaga aggtggcgtc ggtgccgatg 360 tccgggcatc gcatggtcgc accgatcgac gccaaccaag tggtgtacgc tgattgcgcg 420 acgctgatca atcggataaa caccctgggg ctgtcgctga atgcggcgtc ccctggcggc 480 acagtggatg tgcagcgcct cggtgaagtg cagcactccg ggtgggcgtg gacacccggt 540 gccgtgttcc tcggccagga tggcaatctc acgcaaaccg ttccctctgg cgcgctgttc 600 tcgctgatcg taggcttcgc gctcgaccct actactctat ttatcgacat tggcgtggcg 660 atcacgctgg aggtgtga 678 <210> 23 <211> 4878 <212> DNA <213> Unknown <220> <223> bacteriophage specific for Pseudomonas aeruginosa(YMC17/07/R4900a_PAE_BP) ORF 88 <400> 23 atgcgaccgc aggatctccg tcagctgtcg aatgcgttgc gtgtcgaact caccaccggc 60 accggcgagc tgcaaccgtt cctcgaacgc gccttcgcca acccgcagca ggtgctcgac 120 ggcctggacg ccagcctgcg cggtgagtcc cccagccgta gcacaagcga ggtatccgat 180 gctccccaat ctgctggcgc tcttgacgat gaacttgacg gcggggagtt cgaccaagct 240 cgaaccgtcg agtccgccgc cgagaactgg ttcggcgata ccaccggaaa ccgccggatt 300 caaactggcg gcctcggtat ccccgcccca atcgcccgtg ccgatacgca acgacttcag 360 cgtgccgaag aagcagctcg aagagcgaac ccggacgggt ctatcgagcg cgtgcccgct 420 gaacgagcct tgcgcgaact cggtgtcgat cccgcagacg ttgcagcaga acttgggctg 480 tcgcctgacg ccctggcaag ttcggtcctt gttcgggcag tccgacccga cgctacgggt 540 gcagcacaag cccttcgcag cgtacggcag cttcgtcgtt ctaccgttga gcggctgaac 600 caagagccga acaacccgtc cgccggcagc tacatcgctg ccacgacgcc ggagggcacg 660 aacgtagccg tggacctgcg ccgtctggta ggcgcgcagg tattcggtcg tcgtgacgcc 720 caggcgctgc gtgacgcttt gtccgatggc ctgggcaccc tggccgacgc cggctaccag 780 ttccagttac cggacaccgc cgtggtggcc cggtacaagg acgggagcgg cgaggtagca 840 gtcaccgtgg cggacctgcg ccagggagca gaccagccgc gcgccggcct gcctcgtgat 900 gccatcggcc tggatagccc gaccgccgaa gcgctccaag acttggtaca aacgtacgaa 960 aacccggagc gaaccgtgca atatgcacga caggcggacg ttgagcgctt gatcgacgaa 1020 tacgccgtcc agacgctcct gggagcgctt cagcggcgag ggggcaccgc taccattccc 1080 gaagccgcag cgcgtctcct gcgcgctgcc agcccccgtg gcgtggctct ggagggtaat 1140 accgccaccc tgaccggcga accactgcct ccggccatgg atttaggctc cctgcgcacc 1200 cccggcagcc ccatcgacac cctggccagg accgttgccg accgcggccc aatgcgcgaa 1260 agcctacgcc tgctggccca gggcgctgcc caggcccaag acccgtccgt gcgcgacttc 1320 tggcagcgcc aactcgaccg ccggcctgct ccggtggaca acaccggcac cgacgagcag 1380 ctgcaacgcc ggaacctcga agatttcgct gcccagcagg gcatgcagga actcgacccg 1440 gagcgcatgc aggcgcagac catcgaagcc gccaccgggc aggaaggtgc ggccgcgcgg 1500 aacgaaccga cgccgatagg ccgccgccgg cctgggcctt ccccgctgga cttcggcgcg 1560 cacatgaaca acgtcgccgc cagcgtgcag cagcggtcgt ggatgaacac cacgcagacg 1620 aacgtaccgg gtgcctgggc cgcgccgatg gccgcagcca tgaacggcac gccgttgaag 1680 gtcgctttcg ccttgaaccg tagtgaggtg cttcgcagcc gcgacgccac gaacctgatg 1740 aacgcctaca cgcgccgggg gttcaccatc agcgggacca gactcgacgt ggatcaggat 1800 accggcccgt acagcaagag cgcgtacgcg cggatcttgg ggccgaccgg aaccgacccc 1860 gtggatgtgg tgatcaccgc cggtgccagt acccccgccg tcatgctggc tcgccggatc 1920 ggcgtgcccg tgctcgacat caccgtgccg gcgcaggcaa agatcgctgg tgatctggcc 1980 cgtgccttcg accgtgccac gcgcgaagac ctgcacaacc gccgggagtc catgaacccg 2040 gcggcgaacc gggaagcccg ccggagcctc gacactcgcc agggtgttca gcgcgcgcgg 2100 gacatcctcg gcgcagggat cgacaagcag ctgtcggcac aatgggctga cccggcagcg 2160 actgagcgtc ttctgcgcct ggggcgcttg tcgttcatcg ccgacgacgc gttcttcgag 2220 gccgggctgg ctggccgctc tgtgacgtac ctgtccgata acatcgacgc gctggaggcg 2280 tatcaccagc agtacctcag cgagacttcc cagcagagtg cccggccgca gggtgcgagc 2340 caaatgagcc agcagcaagc caaagacctg aacgactaca tcactcgcgt gctgccgagc 2400 gatgtcatgt tcagcatcga gaggctgccg ggtatcagcg gtatgttcac cgagaaactg 2460 gaccctaccc gcccggacat caacgggaac ccgaccatgc agcggttcat caaggtagcg 2520 gtcaacgccg ccagcccgat gtccacggcg ttccatgaat ccatgcacgc gttgatttcc 2580 gtccttcgcg ggcagaagca gcaaagccag ttcatcaagg cgctggaccg cgcagcgagt 2640 aacccggtgg tgctcggcaa gatgcgctcc ctgctggcca acgaaccggc cgcgctcgaa 2700 cagctcagcg acccggagga acgcatcgcc tacatgtacg agttgtgggc cagtggcatg 2760 ctcgacatcc aggcgcagcc gcagacgtgg atgtcccggt tcgctgggtg gattcgcggc 2820 accttgtcga tcctgaacaa cgagcagaaa gccgagctgt acctccaggc attcaaggat 2880 gggaagctgc gccggccgag cgctgtcaac cgcgtggtga tgcagtccct gtccggcccg 2940 gagcgcgccc tggtaagcag tcgagtggct gaccgcgtga gtacgctcac cgggaagttc 3000 ctgcgcaccg cgcacggccg gttgaagaac tacggtaacc cggcgttgag caagatcgct 3060 gaccagttct acgcgcgcag cgatacccag ggccaacgcg ccgggtacat ccagaccgtg 3120 cgggaagtga cgaacctgtt cggtacgcag ctggccaaca tcatcaagac catggacgag 3180 cagcaactgg cggatctgtc cgcggcgctt cacaggaacg tgcgcccgac cgatccggcc 3240 atggcgcaga agtacgacga caccaagtcg ttgctccgtc gcatcttcaa ctacatgaag 3300 gtgtccaacg tcgacgtggc gaacgttcag gactacttcc cgcaggcgtg gagtcgggag 3360 gcgatcgacg ccgacttcga taacttcgtc gatgcgctgg tgcaggtcgg gcaagtacgt 3420 gacgacaacg ggaactggat cgacatgacg cccgacatcg ctacctccgt ggccgagacg 3480 ttgaccacca ccgaggggca actggcgctg agtgaagact tggccggcta ctccccgtac 3540 atgcaggcgg tcaacgaacg gaagatccga ctgaaggatc gtgcagccgt cgcacagtac 3600 atggacccgg atatcgtccg tgtgctgacc cgctacgtca cccaggctgc gaagcgtggg 3660 gagtacacga agcacttcgg acggaacggt gaacgcctga aggaccagct gcaagaagcc 3720 aagcggtacg gcctgacgga cgagcagatc gaacgggatg tagcgccggc tatccgtgcg 3780 ctcgaaggca cgctcggtag caacatcgac ccgcacctgc gcagcgccat gtccggcctg 3840 atcacttggc agaacctcgt cgtgctgccg ctgtcgattt tcagctccct tatcgacccg 3900 ctgggcatcg tcgtacgcgg cggggaagtg agcgatgcct ggaccgcctt caaagccggt 3960 gtacggaaca tcccgcagag cctgcggcgc aacggcaaca agctcgacat tcagcgcttc 4020 gctgaggatg tcggcaccgt ggaagagtcg ttcgtgctcg acctgctggg tgacatgtac 4080 ggctccaact acatgtcgga ctgggcgcgc aagaccaaca acctgctgtt caagtacaac 4140 ctgatggaag gttggaacac ggctatgcgc tcggcggcca ccgtcgccgc cgagaagttc 4200 atcattcgcc acgccgcggg cgtcaaccag cacagcacac gctacctcga cgagcttggt 4260 atcaccgcca aggacgtgca gaccgacgcg aacggtcgcc tgctgttccg tgcgcaggac 4320 ttcatcgccc agggcatgaa cccgaaggac gccatcgaga aaagccgtct ggtgcgcgaa 4380 gccatcggcc gctgggtgga cggcgcagtc ctgcgcccgc acgcggcgga ccgtccagcc 4440 tgggccagtg acccgcactg gatgctcgtg tggcacctca agcagttcac ctacagcttc 4500 cagcggacca tcctcgaccg cgccacgcac gagatgcgga acgggaacta tgcgccgatg 4560 ctgaccctgg ccgcgtacgt gcccttcatg atcgccgccg acttcctcaa ggccatgctc 4620 cagggcgcgg gcgatgaacc cgactggtac aagagccagg acgcgggtga actgatctgg 4680 aggggtgtgg aacgcgccgg cctgctcggc gtgcgccagt tcgccaccga tggtatcgaa 4740 agcccggcgt tcaccctcgg tccgaccttc agctacatgc tcaaggccgg ggaaaagacg 4800 atggacgggg acgtgacggg ggccgcgctg agcgctcttc cgggtaacgc gctgtggaaa 4860 gattggatcg atcgatag 4878

Claims (14)

  1. 카바페넴(carbapenem) 계열 항생제 내성 녹농균(Pseudomonas aeruginosa)에 특이적인 사멸능을 가지며,
    서열번호 8의 염기서열로 이루어진 핵산을 포함하는, 기탁번호 KCCM12962P인 박테리오파지.
  2. 삭제
  3. 제1항에 있어서,
    상기 카바페넴 계열 항생제는 아미카신(amikacin), 아제트레오남 (azetreonam), 세프타지딤(ceftazidime), 시프로플록사신(ciprofloxacin), 콜리스틴(colistin), 세페핌(cefepime), 젠타마이신(gentamicin), 이미페넴(imipenem), 레보플록사신(levofloxacin), 메로페넴(meropenem), 피페라실린(piperacillin), 피페라실린-타조박탐(piperacillin-tazobactam) 및 이들의 조합으로 이루어진 군에서 선택되는 하나 이상인, 박테리오파지.
  4. 삭제
  5. 제1항에 있어서,
    상기 박테리오파지는 서열번호 2 내지 7, 서열번호 9 내지 23중 적어도 하나 이상의 염기 서열로 이루어진 핵산을 더욱 포함하는, 박테리오파지.
  6. 제1항에 있어서,
    상기 박테리오파지는 서열번호 1로 염기서열로 이루어진 유전체를 포함하는 것인, 박테리오파지.
  7. 삭제
  8. 제1항에 있어서,
    상기 박테리오파지는 포도비리대(Podoviridae)에 속하는 것인, 박테리오파지.
  9. 제1항의 박테리오파지를 포함하는, 항생제.
  10. 제1항의 박테리오파지를 포함하는, 소독제.
  11. 삭제
  12. 삭제
  13. 제1항의 박테리오파지를 포함하는, 식품 조성물.
  14. 제1항의 박테리오파지를 포함하는, 사료 조성물.
KR1020210136865A 2021-10-14 2021-10-14 항생제 내성 슈도모나스균 특이적 박테리오파지 KR102646232B1 (ko)

Priority Applications (2)

Application Number Priority Date Filing Date Title
KR1020210136865A KR102646232B1 (ko) 2021-10-14 2021-10-14 항생제 내성 슈도모나스균 특이적 박테리오파지
PCT/KR2021/014331 WO2023063453A1 (ko) 2021-10-14 2021-10-15 항생제 내성 슈도모나스균 특이적 박테리오파지

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
KR1020210136865A KR102646232B1 (ko) 2021-10-14 2021-10-14 항생제 내성 슈도모나스균 특이적 박테리오파지

Publications (2)

Publication Number Publication Date
KR20230053402A KR20230053402A (ko) 2023-04-21
KR102646232B1 true KR102646232B1 (ko) 2024-03-11

Family

ID=85987809

Family Applications (1)

Application Number Title Priority Date Filing Date
KR1020210136865A KR102646232B1 (ko) 2021-10-14 2021-10-14 항생제 내성 슈도모나스균 특이적 박테리오파지

Country Status (2)

Country Link
KR (1) KR102646232B1 (ko)
WO (1) WO2023063453A1 (ko)

Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR101789877B1 (ko) * 2015-10-01 2017-10-26 연세대학교 산학협력단 항생제 내성을 갖는 슈도모나스 균속을 용균하는 박테리오파지
KR101788401B1 (ko) * 2015-10-01 2017-10-19 연세대학교 산학협력단 항생제 내성을 갖는 슈도모나스 균속을 용균하는 박테리오파지
KR101779262B1 (ko) 2015-11-26 2017-09-18 연세대학교 산학협력단 항생제 내성을 갖는 슈도모나스 균속을 용균하는 박테리오파지
KR101824778B1 (ko) * 2015-11-26 2018-02-01 연세대학교 산학협력단 항생제 내성을 갖는 슈도모나스속 균을 용균하는 박테리오파지
KR20180073489A (ko) * 2016-12-22 2018-07-02 주식회사 옵티팜 신규한 녹농균 특이 박테리오파지 pa4 및 이를 포함하는 항균 조성물

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
Pseudomonas phage KPP25 DNA, complete sequence, GenBank: AB910393.1, 2015.07.02.

Also Published As

Publication number Publication date
WO2023063453A1 (ko) 2023-04-20
KR20230053402A (ko) 2023-04-21

Similar Documents

Publication Publication Date Title
KR101261873B1 (ko) 식중독을 유발하는 살모넬라에 특이적 사멸능을 갖는 박테리오파지
KR101237233B1 (ko) 녹농균 및 황색포도상구균을 사멸시키는 박테리오파지
KR20100035879A (ko) 엔테로코쿠스 및 스트렙토코쿠스 특이적 사멸능을 갖는 신규한 리신 단백질
CN113166730A (zh) 新型猪链球菌噬菌体str-sup-1及其在抑制猪链球菌细菌增殖方面的用途
KR101993122B1 (ko) 신규한 클렙시엘라 속 세균 특이 박테리오파지 kp1 및 이를 포함하는 항균 조성물
KR20180042748A (ko) 신규한 포도상구균 특이 박테리오파지 sa7 및 이를 포함하는 항균 조성물
KR102066920B1 (ko) 신규한 크로노박터 사카자키 특이 박테리오파지 cs3 및 이를 포함하는 항균 조성물
KR102189126B1 (ko) 항생제 내성을 갖는 아시네토박터 속의 균을 용균하는 신규한 박테리오파지
KR102646232B1 (ko) 항생제 내성 슈도모나스균 특이적 박테리오파지
KR102037394B1 (ko) 신규한 크로노박터 사카자키 특이 박테리오파지 cs4 및 이를 포함하는 항균 조성물
KR101779262B1 (ko) 항생제 내성을 갖는 슈도모나스 균속을 용균하는 박테리오파지
KR101824778B1 (ko) 항생제 내성을 갖는 슈도모나스속 균을 용균하는 박테리오파지
KR101863593B1 (ko) 신규한 살모넬라균 특이 박테리오파지 sp1 및 이를 포함하는 항균 조성물
KR101789877B1 (ko) 항생제 내성을 갖는 슈도모나스 균속을 용균하는 박테리오파지
KR102193101B1 (ko) 항생제 내성을 갖는 클렙시엘라 속의 균을 용균하는 신규한 박테리오파지
KR102237011B1 (ko) 병원성 살모넬라균 특이 신규 박테리오파지 kfs-sm 및 이를 포함하는 항균 조성물
KR102037383B1 (ko) 신규한 비브리오균 특이 박테리오파지 vp2 및 이를 포함하는 항균 조성물
KR20180073489A (ko) 신규한 녹농균 특이 박테리오파지 pa4 및 이를 포함하는 항균 조성물
KR102193495B1 (ko) 신규한 아시네토박터 바우마니 균 특이 박테리오파지 ab63 및 이를 포함하는 항균 조성물
KR101940019B1 (ko) 항생제 내성을 갖는 클렙시엘라(Klebsiella)속 균을 용균하는 박테리오파지
KR101788401B1 (ko) 항생제 내성을 갖는 슈도모나스 균속을 용균하는 박테리오파지
KR102269089B1 (ko) 항생제 내성을 갖는 아시네토박터 속의 균을 용균하는 신규한 박테리오파지
KR20190069901A (ko) 신규한 비브리오균 특이 박테리오파지 vp2 및 이를 포함하는 항균 조성물
KR102142018B1 (ko) 항생제 내성을 갖는 클렙시엘라 속의 균을 용균하는 신규한 박테리오파지
KR101449417B1 (ko) 살모넬라 엔테리카의 박테리오파아지 및 그 용도

Legal Events

Date Code Title Description
E902 Notification of reason for refusal
E701 Decision to grant or registration of patent right
GRNT Written decision to grant