JP2009278963A - Method for functionally improving plant organism - Google Patents

Method for functionally improving plant organism Download PDF

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JP2009278963A
JP2009278963A JP2008157207A JP2008157207A JP2009278963A JP 2009278963 A JP2009278963 A JP 2009278963A JP 2008157207 A JP2008157207 A JP 2008157207A JP 2008157207 A JP2008157207 A JP 2008157207A JP 2009278963 A JP2009278963 A JP 2009278963A
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Tomoaki Otsuka
具明 大塚
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a method for functionally improving plant organisms intended for dealing with such problems that although at present the emphasis is laid only on carbon dioxide to a global warming phenomenon, a globally large problem related to food with the global warming phenomenon cannot be disregarded, and it is essential to totally improve ruin of forests and fields, related to environment damage by manure or agricultural chemicals with production of food, and therefore all earthmen can save the earth environment only by executing the idea in life from each positions. <P>SOLUTION: This method is based on a concept that it is effective that each nation faithfully observes each standard based on the Kyoto Protocol, and immediately seriously moves to actual effect as a common obligation, and claiming reasons or logics only worsens the environment and is a completely zero action for improving contribution to a decrease in global energy, and therefore only faithful execution saves the earth. <P>COPYRIGHT: (C)2010,JPO&INPIT

Description

自然環境及び生活環境の改善に伴う農業技術の改善に関する。  It relates to the improvement of agricultural technology accompanying the improvement of the natural environment and living environment.

植物は酸素供給者として酸素消費者である動物との生存と不可分の関係にある。現下では炭酸ガス濃度増加による地球的温暖化の見地から森林保護の必要性が特にクローズアップされている。
しかし、植物の生理機構については未だ不明な点が多く、例えば、衰弱した老樹の若返りには、根元に孔を穿って、根部えの通気性を良くしたり、殺虫剤により害虫駆除をしたり、幹に孔を明けて植物ホルモンや漢方薬を注入するような対症療法が行われているだけである。
しかし、多くの樹木について、これらの処置を施すのは労力や費用の面で非常に困難と共にその効果は全く期待できない。特に農薬には、特異性が乏しいから有用な害虫以外の益虫や天敵まで殺してしまうこと以外に昆虫の捕食者である鳥類まで害を及ぼす結果、生態系が破壊される恐れがある。
Plants have an inseparable relationship with animals that are oxygen consumers as oxygen providers. At present, the need for forest protection is particularly highlighted from the viewpoint of global warming due to increased carbon dioxide concentration.
However, there are still many unclear points about the physiological mechanisms of plants.For example, when rejuvenating an old tree, a hole is made in the root to improve the air permeability of the root, and pest control with an insecticide. Or just symptomatic treatment, such as opening a hole in the trunk and injecting plant hormones and herbal medicines.
However, for many trees, it is very difficult to apply these treatments in terms of labor and cost, and the effect cannot be expected at all. In particular, pesticides have a low specificity, and in addition to killing beneficial insects and natural enemies other than useful pests, there is a risk of destroying ecosystems as a result of harming birds that are insect predators.

そこで、本発明が解決を意図する課題は、誰でも出来る簡単な方法で、植物生体の機能的な改善を図り植物生体の活性化による生命力の延命、病虫害の防除、衰弱樹木の賦活、老衰した樹木の若返り、果実の増収、菌根の増殖、さし木の活着率等の増進、野菜の糖度と味覚のアップ等を目的に有効な植物生体の機能的な改善方法を提供する。  Therefore, the problem that the present invention intends to solve is a simple method that anyone can do, to improve the function of the plant organism, prolong the life of the plant by activating the plant organism, control disease and insect damage, activate the weakened tree, Provided is a functional improvement method of plant organisms effective for rejuvenation of trees, increase of fruit yield, growth of mycorrhiza, increase of survival rate of cuttings, increase of sugar content and taste of vegetables, and the like.

(1)概念
植物生体の「動的平衡」は生体内の水分バランスの良否による。これを恒常的に維持することが「ホメオシタシス」である。
本発明が植物生体内に存在する不用機能を破り、生体電位の平衡を図り、生体の生理機構を円滑に進行させる機能的な改善方法が本発明の目的である。
(1) Concept “Dynamic equilibrium” of a plant organism depends on the water balance in the organism. It is “homeocytosis” to maintain this constantly.
It is an object of the present invention to provide a functional improvement method in which the present invention breaks unnecessary functions existing in the living body of a plant, balances the bioelectric potential, and smoothly advances the physiological mechanism of the living body.

(2)概要
植物の持つ生理機能は、全て水分が中心になっているが、その水分を培地から吸収して植物生体内における水分バランスの生理作用が一番難儀だと言われているが、再々起こす水ストレスがその証である。
本発明は、長年に亘る研究経緯から、生体の偉大さと潜在能力と未分化生体との関連から機能的な改善に至ったのである。
植物が水中より上陸以来約5億年前とも言われている。地球環境を知り尽くした生物であり、そのDNAを有し、未分化生体ながら地球上の最生命力を有する生物である。
即ち、植物の上陸当時の地球環境は、想像を絶する苛酷な環境時代に生体自身が備えたと思われる一種の砦に相当する備えが現存するが、現下の地球環境では全く不用な長物であり、遺物との判断から生体の機能的な改善に至ったのである。
従って、生体が有するカスバリー帯(絶縁体)や、強固すぎると思われる細胞壁やコルク細胞によると思われる生体内部(高電位)と表皮外部(低電位)を金属線で結び生体電位のバランス改善に至り、恒常的に改善するとの判断から本発明に及んだのである。
(2) Overview Although the physiological functions of plants are all centered on moisture, it is said that the physiological action of moisture balance in the plant body by absorbing the moisture from the medium is the most difficult, The water stress that occurs again is proof.
The present invention has led to functional improvements from the relationship between the greatness of the living body, the potential, and the undifferentiated living body, from the research background over many years.
It is said that about 500 million years ago since the plant landed underwater. It is a living organism that knows the global environment, has the DNA, and is an undifferentiated living organism that has the most vital power on the earth.
In other words, the global environment at the time of the landing of the plant is a provision that corresponds to a kind of fort that the living organism itself seems to have prepared in an unimaginable harsh environmental era, but it is a long thing that is totally unnecessary in the current global environment, From the judgment of the relic, it has led to functional improvements of the living body.
Therefore, the body potential (insulator) of the living body, the cell wall and cork cells that seem to be too strong, and the inside of the living body (high potential) and the outside of the epidermis (low potential) are connected by metal wires to improve the balance of the biopotential. Therefore, the present invention has been reached from the judgment that it is constantly improved.

用途
樹木、野菜、果木、花木、自然木、人工林、森野、公園、神社、仏閣、学校、街路樹、さし木栽培、水耕栽培、衰弱した植物の賦活、老衰樹木の若返り、果実の増収、菌根の増殖、植物全般に関連する病気治療など。
Applications Trees, vegetables, fruit trees, flower trees, natural trees, artificial forests, forests, parks, shrines, Buddhist temples, schools, street trees, cuttings cultivation, hydroponics, activation of weakened plants, rejuvenation of old trees, increased yield of fruits, Mycorrhiza growth, treatment of diseases related to plants in general.

適用形態
植物生体は、それぞれの役割を忠実に頑固に守り、各役割を分担して伸長成長をする生物である。
植物は水中から発生し、環境の変化から上陸に及んだ経緯から「水ストレス」の持病持ちの関係から、恒常的な「水分バランス」が最大の生命的な要件である。然しながら、生体の内部と外部を仕切る中間部に「カスバリー帯」という約3億年前の遺物か残存し、現下の生体バランスの妨げになって、生体の水分バランスや養分や生長ホルモン等の配分輸送の妨げ抑制になっていると思われる。
即ち、成長の妨害になっているから生体の伸長成長のストレスに及んでいると思われる係る理由から不用な長物的なカスバリー帯を主体とする成長抑制組織を破る手段で生体の活性化実験を繰り返した結果が、生体の活性化を起因とする成長促進と共に良質な野菜や果実や材質の良好な木材の生産と共に現下の二酸化炭素の吸収と固定促進の削減効果の確認も出来るに至ったので最新の農業技術として本発明に至ったのである。
Application form Plant organisms are organisms that faithfully defend their roles and divide each role to grow and grow.
Plants are generated from the water, and the constant “moisture balance” is the greatest vital requirement because of the relationship between the prevalence of “water stress” and the background from the change of environment to landing. However, a remnant of about 300 million years ago called the “Cassbury Zone” remains in the middle part that separates the inside and outside of the living body, hindering the current living body balance, and the distribution of water balance, nutrients, growth hormones, etc. It seems that it is preventing the transportation.
That is, because it is a hindrance to growth, it is considered that it has reached the stress of growth and growth of the living body. Repeated results have confirmed the reduction effect of the current carbon dioxide absorption and fixation promotion as well as the production of good quality vegetables, fruits and wood with good quality as well as the growth promotion due to the vitalization of the living body The present invention has been reached as the latest agricultural technology.

本発明の技術とは、すこぶる単純で簡単で容易であるが、誰でも考えられる程容易な技術ではない。即ち、昭和30年ごろより発生した全国の松枯れ(マツノザイセンチウ)事件以来、その対策以来20数年を要して生体の一部の解明を経て現下に至ったのである。その結果が容易で誰でも出来る方法と共に安価で手間を要しないシンプルな手段である。即ち、針ピンや釘、ステップル等を植物生体に「差し込み又は打ち込む」という極めて簡単な方法で、良質な野菜や樹木が成長、生産されるからである。例えば、ヒノキの建築材は植林より約200年を要するところ、本件の実験データーは約30%の短縮成長力が生まれる。
即ち、60年の短縮生産が可能であり140年で良質な建築材が可能になる。従って、くぬ木やナラ木等の伐採後の萌芽実験に於いても約40%の早期生長システム生産が可能になるデーターもある。このような生体の機能的な改善方法は、国際的にも全く例はなく、且つ、生体効果も長期に及ぶ可能性はすこぶる高いものがある。理由は、全て「植物生体が未分化生体」である所以であると思われる。
The technology of the present invention is quite simple, easy and easy, but not as easy as anyone can think of. In other words, since the pine wilt incident that occurred around 1955, it took 20 years since its countermeasures to elucidate a part of the living body and reached the present state. The result is an easy and inexpensive method that can be used by anyone as well as an inexpensive method. That is, good quality vegetables and trees are grown and produced by an extremely simple method of “inserting or driving” a needle pin, a nail, a staple or the like into a plant body. For example, cypress construction material takes about 200 years from planting, but the experimental data in this case has a shortened growth potential of about 30%.
That is, 60 years of shortened production is possible, and 140 years of quality building materials become possible. Therefore, there is data that enables early growth system production of about 40% even in sprout experiments after cutting down kunugi and oak trees. There is no example of such a method for improving the function of a living body internationally, and there is a very high possibility that a biological effect will last for a long time. The reason seems to be that “the plant body is an undifferentiated body”.

(1) 本発明による植物全体の機能的な改善形態は、生体の活性力や延命力や賦活力な どに加えて、味覚や材質、品質の促進、菌根の増殖等は、全て生体機能の活性化と新 陳代謝の促進と思われるが、この効果が将来的な展望の萌し的な形態となり、現下の 世界的な「食と住」との生活環境に大いに貢献できるものである。(1) The functional improvement mode of the whole plant according to the present invention is not only the vitality, life-prolonging ability, activation ability, etc., but also the taste, material, quality promotion, mycorrhiza growth, etc. This effect will be a motivated form of future prospects, and can greatly contribute to the current global “food and living” living environment. .

(2) 植物生体が有する電気とは、電気的極性(電場)は、生体の活性力を示す一種の 指標と思われる。
従って、同地の同種、同令の生体近傍の培地と生体胸高値(地上約130m)を電 圧測定する(オームの法則)と電位の高い生体程、活性力と成長と健康体であること が判る。
従って、本件発明に至る実験過程で「乾電池や太陽電池」を用いて胸高値の拡大を 求めて操えして、成長測定を試したが、多少の効果は認められたが、効果は左程なか った。その実験を通じる中で、本発明に係るアイデアが生まれて本発明の端緒となり 植物生体の機能的な改善方法に至ったのである。
即ち、草本植物や木本植物が、極めて単純な方法とは「針ピンや釘やステップル」 等を生体内に差し込み、打ち込みを以って、生体の内部(高電位)と外部(低電位) を直結方式で生体バランスが整い「水分バランス」が恒常化するという極めてシンプ ルな手段で改善する方法が可能になったのである。
(2) Electricity (electric field) of plant organisms is considered to be a kind of index indicating the vitality of living organisms.
Therefore, by measuring the voltage (Ohm's law) of the medium of the same species and the same age in the vicinity of the living body and the living body's chest high value (Ohm's law), the higher the potential of the living body, the more active, growing and healthy. I understand.
Therefore, in the experimental process leading to the present invention, the growth measurement was tried using “dry batteries and solar cells” to increase the breast height, and some effects were observed. It was not. Through these experiments, the idea of the present invention was born and became the beginning of the present invention, resulting in a functional improvement method for plant organisms.
In other words, herbaceous plants and woody plants are very simple methods: “needle pins, nails and staples” etc. are inserted into the living body and driven into the living body (high potential) and outside (low potential). It is now possible to improve this by a very simple means that the living body balance is adjusted by the direct connection method and the “moisture balance” becomes constant.

(3) 植物生体の導管近傍の電位と外側の表皮近傍の電位は、導管側電位が約120〜 300ミリボルト電位が高い(種別差がある)が、その原因は、全てカスバリー帯や 細胞壁、コルク細胞の影響と思われる判断から生体内の導管近傍と表皮近傍を結ぶ金 属線や針ピン、ステップル等を生体内に挿入させて生体内部(高電位)と生体外部( 低電位)を直結させて生体内に挿入させて電位のバランスをとる方法。即ち、同地、 同種、同令の樹木と非実験木(コントロール)を以って、比較実験をすると約30% 強の電位の拡大結果が生まれることが判った。従って、例示的に言うと、大木が釘1 〜2本打ち込むと約30%の成長力が可能となり、その効果が長期に亘る期待は、現 下の二酸化炭素の削減に大いに役立つ本発明である。(3) The potential in the vicinity of the conduit of plant organisms and the potential in the vicinity of the outer epidermis is approximately 120 to 300 millivolts in potential on the conduit side (there is a difference in type), all of which are caused by the cassbury zone, cell wall, cork A metal wire, a needle pin, a staple, etc. connecting the vicinity of the conduit and the epidermis in the living body is inserted into the living body based on the judgment that the effect of the cell seems to be directly connected inside the living body (high potential) and outside the living body (low potential). To balance the potential by inserting it into the living body. In other words, it was found that a potential expansion result of about 30% or more was produced when a comparative experiment was conducted using trees of the same type, the same species, the same age, and a non-experimental tree (control). Therefore, for example, if one or two nails are driven into a nail, about 30% growth potential is possible, and the long-term expectation is the present invention that is very useful for the current reduction of carbon dioxide. .

(4) 樹木の伸長成長は、樹種の平均的寿命の約三分の二までと言われ、肥大成長は寿 命までと言われている関係に対して、スギやマツの樹齢100年以上の樹体、スギ5 本、マツ10本に対して、各樹体の接木部と胸高値に各2ケ所に成長測定バンドを設 けて、各生体の接木部に各3本宛釘を挿入させて実施、その対象となる非実施木を各 選定して比較実施して見た。
10月1日より111月30日まで(2ケ月間)
スギ 5本の平均成長 接木部3,2ミリ 胸高値1,5ミリ
マツ 10本の平均成長 接木部3,0ミリ 胸高値1,5ミリ
上記の実施木に対するコントロール樹木
スギ 3本の平均成長 接木部0 胸高値0
マツ 5本の平均成長 接木部0 胸高値0
以上の結果から本件の機能的な改善方法の効果と思われる。
(4) Elongation growth of trees is said to be up to about two-thirds of the average lifespan of tree species, while hypertrophic growth is said to be up to lifespan, whereas cedar and pine trees are over 100 years old. For the tree body, 5 cedar trees and 10 pine trees, a growth measurement band is provided at each of the grafted part and the chest height of each tree, and 3 nails are inserted into the grafted part of each living body. The non-implemented trees that were the targets were selected and compared.
From October 1 to November 30 (2 months)
Average growth of 5 cedars, grafted parts 3,2 mm Breast height 1,5 mm Pine Average growth of 10 trees Grafted parts 3,0 mm Breast height 1,5 mm Control trees for the above implementation tree Average growth of 3 cedars Part 0 chest high 0
Average growth of 5 pines Grafting part 0 Breast high 0
From the above results, it seems that this is the effect of the functional improvement method.

(5) 草本植物の貫通針を以って、成長の実施する方法として無肥料培地(ポット)を 用いて各苗の選抜を移植して、各実施ポットを非実施ポット、共に各スポットの比較 実施して見た。
各移植後15日目に成長比較した。(各スポット)
非実施体の成長 実施体の成長
(1)レタス 平均 3cm やや成長 平均 5,2cm 成長
(2)ピーマン 平均 4cm やや成長 平均 8cm 成長
(3)チマ、サンチュウ
平均 2,5cm やや成長 平均 4cm 成長
以上の結果は、高さでは余り差がなかったが、活性力差と体積差の違いは大きい 差である。
(5) With a penetrating needle of a herbaceous plant, the selection of each seedling is transplanted using a non-fertilizer medium (pot) as a method for carrying out the growth. I did it.
Growth comparison was made on the 15th day after each transplantation. (Each spot)
Non-practice growth Practical growth (1) Lettuce Average 3cm Slightly growth Average 5,2cm Growth (2) Bell peppers Average 4cm Slightly growth Average 8cm Growth (3) Chima, Sangchu
Average 2,5 cm Average growth Average 4 cm Growth The above results were not much different in height, but the difference in active force and volume difference was a large difference.

(6) 京都議定書に基づく地球的な温暖化の対策として、農林水産省や環境省は(独) 森林総合研究所に委託して森林の樹木別の二酸化炭素量の吸収データーによる一例を 参考に試算すると以下のような計算が成り立つ。即ち、35年生のスギ林(平均木の 直径20cm、樹高18m、幹の材積が0,28)の場合、0,28×314g /m×1,23×(1+0,25)×0,5≒68kgが1年間の炭素ガスの吸収 固定データーである。要約するとスギの生木35年生は年間68kgの二酸化炭素の 吸収固定を示している。このデーターに対する本発明技術による成長率は約30%で ある。即ち、約20kgの吸収固定が可能的な計算が成り立つ訳である。
従って、本件の機能的な改善方法が、10年間続行すれば約200kgの固定が可 能であり、20年間の続行は400kgの固定率が生まれるという画期的な自然環境 に貢献と言われる所以である。
(6) As measures against global warming based on the Kyoto Protocol, the Ministry of Agriculture, Forestry and Fisheries and the Ministry of the Environment refer to an example based on absorption data of carbon dioxide by forest tree by entrusting to the National Forest Research Institute (Germany). When calculated, the following calculation is valid. That is, in the case of a 35-year-old cedar forest (average tree diameter 20 cm, tree height 18 m, trunk volume 0,28 3 ), 0,28 3 × 314 g / m 3 × 1,23 × (1 + 0,25) × 0 , 5 ≒ 68kg is one year of carbon dioxide absorption fixed data. In summary, a 35-year-old Japanese cedar tree shows absorption and fixation of 68 kg of carbon dioxide per year. The growth rate according to the present invention for this data is about 30%. That is, a calculation that can absorb and lock about 20 kg is established.
Therefore, if the functional improvement method of this case is continued for 10 years, it is possible to fix about 200 kg, and continuing for 20 years is said to contribute to the epoch-making natural environment that a fixed rate of 400 kg is born. It is.

(7) 本発明による生体の機能的な改善方法については正確なる論理は今後の課題に任 せるのが賢明だと思う反面で、植物生体に穴や傷をつけると生体内の「幹細胞や始原 細胞」の命令的な働きで、負傷部の処置作用が生体の活性化を生むとの想像は経験的 な面から生まれる。即ち、生体の健全部から負傷部えの「イオン電流」などの集中化 作用が生体の活性化を生むものと考えられるが、時間と共に鎮静化する時点(約24 時間)で、生体の機能的な改善に至ると思われる。
従って、約10日目に負傷部の肥大成長が確認される。係る経緯から生体の接木部 (根際)を直結すると、接木部の肥大成長が生体の台座作りの促進となり、環境に聡 い生体も安定感から素直な生体形作りが始まる。即ち、ストレスの少ない良質材が容 易化されて枝打ち等の不用論が生まれるのである。
本発明に於ける最特長は、施肥の費用である。即ち、従来の約五分の一の費用で済 むことは、生体機能の改善による吸収作用の活性力かすべてである。
(7) While I think that it is wise to leave the exact logic for the functional improvement method of the living body according to the present invention to the problem in the future, if a hole or a wound is made in the living body of the plant, “stem cells and From the empirical aspect, the imagination that the treatment of the injured part causes the vitalization of the living body by the command of the “cell” is born. In other words, it is thought that the concentration action from the healthy part of the living body to the injured part, such as “ion current”, activates the living body, but at the time of calming down with time (about 24 hours) It seems that it will lead to an improvement.
Therefore, the enlarged growth of the injured part is confirmed on the 10th day. If the grafted part (base) of the living body is directly connected from such a background, the enlarged growth of the grafted part promotes the creation of the pedestal of the living body, and the environment-friendly living body also begins to make a straight living body from a sense of stability. In other words, high-quality materials with less stress are made easier and the uselessness such as pruning is born.
The most important feature of the present invention is the cost of fertilization. In other words, the cost of about one-fifth of the conventional cost is all about the vitality of absorption by improving biological functions.

植物生体の電位測定方法
植物生体の接木部(根際部)の近傍培地と生体の幹の胸高値(地上約130cm)間に電圧測定テスターを用いて測定する。培地(−)、胸高値(+)で測定する。即ち、実施前と実施後の測定電位を以って生体の活性力を判定する。(実施直後は一時的に電位が降下する。従って、約24時間後の測定が良い)
Method for measuring the potential of a plant organism A voltage measurement tester is used to measure between the culture medium in the vicinity of the grafted portion (root portion) of the plant organism and the chest value of the trunk of the organism (about 130 cm above the ground). Measure with medium (-) and chest high (+). That is, the vitality of the living body is determined using the measured potential before and after the execution. (The potential drops temporarily immediately after execution. Therefore, the measurement after about 24 hours is good.)

本発明の一実施形態を示す平面図  The top view which shows one Embodiment of this invention 本発明の他の実施形態を示す平面図  The top view which shows other embodiment of this invention 本発明をトマトの根際近傍に針ピンを挿入して貫通した状態を示す側面図  The side view which shows the state which inserted and penetrated the needle pin to the root vicinity of this invention to the present invention 本発明をレタスの根際に針ピンを挿入して貫通した状態を示す縦断面図  The longitudinal cross-sectional view which shows the state which penetrated this invention by inserting the needle pin into the base of lettuce 本発明をマツの接木部に穴を穿ってセットした状態を示す正面図  The front view which shows the state which drilled the hole in the graft part of the pine and set this invention 本発明をくぬ木の接木部に穴を穿ってセットした状態を示す正面図  The front view which shows the state which drilled the hole in the grafting part of the wood and set this invention

符号の説明Explanation of symbols

1 針ピン
2 釘(ステンレス)
3 金属板(アルミ等)
4 圧着端子
5 ビニールカバー
6 スクリュウ釘
7 トマト
8 レタス
9 マツ
10 くぬ木
11 頭
1 Needle pin 2 Nail (stainless steel)
3 Metal plates (aluminum, etc.)
4 Crimp terminal 5 Vinyl cover 6 Screw nail 7 Tomato 8 Lettuce 9 Pine 10 Kunugi 11 head

Claims (3)

植物生体の導管近傍(内部)と表被近傍(外部)とを結ぶ金属線(金属針)を外部表被側より生体に直角的に挿入又は打ち込み、印加路を設け、又は、生体の外部より外部まで直角的に貫通する印加路を以って生体内部(高電位)と外部(低電位)とを金属線で直結させて内、外部の平衡的な電位の分配を以って、生体の活性化を図ることを特徴とした植物生体の機能的な改善方法。  A metal wire (metal needle) that connects the vicinity of the conduit of the plant body (inside) and the vicinity of the cover (outside) is inserted or driven perpendicularly to the living body from the outer cover side, and an application path is provided, or from the outside of the living body The living body inside (high potential) and the outside (low potential) are directly connected by a metal wire through an application path that penetrates to the outside at right angles, and the inside of the living body is distributed by balancing the external potential. A functional improvement method for plant organisms characterized by activation. 植物生体の内、外を結ぶ金属線は、単独又は複数箇所に挿入して生体電位の拡大(培地と胸高値の電位)を図ることを特徴とした請求項1の植物生体の機能的な改善方法。  2. The functional improvement of a plant organism according to claim 1, wherein metal wires connecting the inside and outside of the plant organism are inserted singly or in a plurality of places to increase the bioelectric potential (medium and high breast potential). Method. 金属線の外部(頭部)に金属板をセットして、太陽エネルギーの吸収拡大を以って、挿入針のイオン化反応で温度や波長刺激で、植物生体の活性化と生産物の糖度及び味覚の改善を図ることを特徴とした請求項1、2の植物生体の機能的な改善方法。  A metal plate is set on the outside (head) of the metal wire, and the absorption of solar energy is increased, the temperature and wavelength are stimulated by the ionization reaction of the insertion needle, the living body is activated, the sugar content and the taste of the product. The method for functionally improving a plant living body according to claim 1 or 2, wherein the improvement is improved.
JP2008157207A 2008-05-20 2008-05-20 Method for functionally improving plant organism Pending JP2009278963A (en)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2011052203A1 (en) * 2009-10-27 2011-05-05 Otuka Tomoaki Needle farming method
JP2019097471A (en) * 2017-11-30 2019-06-24 日本振興株式会社 Plant growth promotion method
RU2796686C1 (en) * 2022-02-22 2023-05-29 федеральное государственное бюджетное образовательное учреждение высшего образования "Ставропольский государственный аграрный университет" Device and method for measuring biopotentials in germinating seeds to determine optimal modes of their processing with a pulsed electric field

Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2002095351A (en) * 2000-09-20 2002-04-02 Teiji Yokota Grafting tool for grafting scion to stock

Patent Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2002095351A (en) * 2000-09-20 2002-04-02 Teiji Yokota Grafting tool for grafting scion to stock

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2011052203A1 (en) * 2009-10-27 2011-05-05 Otuka Tomoaki Needle farming method
CN102711439A (en) * 2009-10-27 2012-10-03 大塚具明 Needle farming method
JP5131876B2 (en) * 2009-10-27 2013-01-30 具明 大塚 $ 1 farming
JPWO2011052203A1 (en) * 2009-10-27 2013-03-14 大塚 具明 $ 1 farming
JP2019097471A (en) * 2017-11-30 2019-06-24 日本振興株式会社 Plant growth promotion method
RU2796686C1 (en) * 2022-02-22 2023-05-29 федеральное государственное бюджетное образовательное учреждение высшего образования "Ставропольский государственный аграрный университет" Device and method for measuring biopotentials in germinating seeds to determine optimal modes of their processing with a pulsed electric field

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