CN102952862B - PCR-DHPLC (polymerase chain reaction-denaturing high performance liquid chromatography) detection primer and detection method for genetically modified maize strain MON89034 - Google Patents

PCR-DHPLC (polymerase chain reaction-denaturing high performance liquid chromatography) detection primer and detection method for genetically modified maize strain MON89034 Download PDF

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CN102952862B
CN102952862B CN201110248329.6A CN201110248329A CN102952862B CN 102952862 B CN102952862 B CN 102952862B CN 201110248329 A CN201110248329 A CN 201110248329A CN 102952862 B CN102952862 B CN 102952862B
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dhplc
pcr
primer
detection method
detection
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CN102952862A (en
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章桂明
向才玉
凌杏园
潘广
程颖慧
康林
李鹤遥
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Animal and Plant Inspection and Quarantine Technology Center of Shenzhen Entry Exit Inspection and Quarantine Bureau
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Animal and Plant Inspection and Quarantine Technology Center of Shenzhen Entry Exit Inspection and Quarantine Bureau
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Abstract

The invention discloses a PCR-DHPLC (polymerase chain reaction-denaturing high performance liquid chromatography) detection primer and a detection method for genetically modified maize strain MON89034. The primer has strong specificity and can be used for PCR amplification and DHPLC analysis. The detection method is simple and convenient to operate, good in expansion performance and high in sensitivity, and multi-target detection of genetically modified maize strain MON89034 is realized. The DHPLC is used to analyze PCR amplified products, fragment size resolution can reach multiple bases, and resolution ratio is high. The PCR-DHPLC detection primer and the detection method for genetically modified maize strain MON89034 have the advantages that the detection method is simple, convenient, effective, reliable and especially suitable for departments of port inspection and quarantine and the like.

Description

Transgenic corn lines MON89034 PCR-DHPLC detects primer and detection method
Technical field
The present invention relates to a kind of detection of transgenic product, the PCR-DHPLC particularly relating to a kind of Transgenic corn lines detects primer and detection method.
Background technology
Mainly Standard PCR is adopted to the detection method of transgenic corns, the detection methods such as real-time fluorescence PCR, PCR-gene chip at present.Traditional Standard PCR detection method has certain limitation in platform extension, and along with the increase of target to be checked, need to re-start optimization to the consumption often overlapping primer in system and ratio, and take into account the factors such as amplification efficiency, workload is larger; On the other hand, the method for the gel electrophoresis analysis amplified production usually adopted, distinguish efficiency not high, detected result is undesirable.Although real-time fluorescence PCR more multiple Standard PCR detection method in detection sensitivity etc. has superiority, but due to the restriction that current instrument self and fluorescence dye are developed, non-interfering 4 fluorescence channels only can be provided simultaneously, also limit this technology in the expansion of detection flux, and testing cost is high.Conventional many cover PCR-gene chip detection methods, need many cover primers to increase, complex operation step, and are not suitable for large-scale high throughput testing.Denaturing high performance liquid chromatography (Denaturing High-performance Liquid Chromatography, DHPLC) be a kind of method for nucleic acid analysis of simple, quick, non-gel, have that good resolution, extendability are strong, sensitivity advantages of higher.The method is at 50 DEG C of condition analysis samples, and the wash-out at sample peak only determines elution order by the quantity of base pair, and the acetonitrile concentration having served as post improves, and nucleic acid fragment can according to molecular weight order from small to large by wash-out out.To be compared with marker by the elution peak that obtains and determine molecular size range, determine whether containing target detect gene.At present, the PCR of Transgenic corn lines MON89034 is not still had in conjunction with the detection technique (PCR-DHPLC) of DHPLC.
Summary of the invention
The object of this invention is to provide the primer that a kind of PCR-DHPLC for Transgenic corn lines MON89034 detects.
Another object of the present invention is to provide that a kind of scalability based on above-mentioned primer is good, the PCR-DHPLC detection method of sensitivity and the high Transgenic corn lines MON89034 of resolving power.
For achieving the above object, present invention employs following technical scheme:
The invention discloses the primer that the PCR-DHPLC for Transgenic corn lines MON89034 detects, the upstream primer of described primer contains sequence shown in Seq ID No.1, and downstream primer contains sequence shown in Seq ID No.2;
Seq?ID?No.1:5’-TTTTTCTCCATATTGACCATCATACTC-3’
Seq?ID?No.2:5’-ATATAGATGGACGGTTTAGATTGGC-3’。
It is pointed out that above-mentioned Seq ID No.1 and Seq ID No.2 is the distinguished sequence with the detection target sequence complementary pairing of Transgenic corn lines MON89034, there is very strong specific recognition.
Further, 5 ' end of described upstream primer also comprises sequence shown in Seq ID No.3, and 5 ' end of described downstream primer also comprises sequence shown in Seq ID No.4;
Seq?ID?No.3:5’-CGTGGCCTCGCGATCTGACT-3’
Seq?ID?No.4:5’-CTCAGCGGCGGAGCTACAGA-3’。
It is to be noted, above-mentioned Seq ID No.3 and Seq ID No.4 holds the one section sequence irrelevant with detecting target sequence of adding at 5 ' of upstream primer and downstream primer respectively, this sequence can be the sequence of other species far with detecting target sequence homology, also can be the sequence of one section of stochastic generation.This sequence may be used for the size of pcr amplification product, so that the further analysis of pcr amplification product.
In the present invention, preferably, described upstream primer has sequence shown in Seq ID No.5, and downstream primer has sequence shown in Seq ID No.6;
Seq?ID?No.5:5’-CGTGGCCTCGCGATCTGACTTTTTTCTCCATATTGACCATCATACTC-3’
Seq?ID?No.6:5’-CTCAGCGGCGGAGCTACAGAATATAGATGGACGGTTTAGATTGGC-3’。
It should be noted that, described Seq ID No.5 and Seq ID No.6 sequence add regulating and controlling sequence at its 5 ' end respectively by above-mentioned Seq ID No.1 and Seq ID No.2 sequence to form, illustrate that although above-mentioned regulating and controlling sequence shown in Seq ID No.3 and Seq ID No.4 can be the sequence of stochastic generation, but, be not that arbitrary sequence can be added, specific in the present invention, the unified of the physico-chemical property considering sequence shown in regulating and controlling sequence and Seq ID No.1 and Seq ID No.2 is needed to coordinate, and need to consider that shown in the Seq ID No.3 after adding regulating and controlling sequence and Seq ID No.4, sequence is as the overall performance detecting primer.
The invention also discloses a kind of PCR-DHPLC detection method for Transgenic corn lines MON89034, described detection method comprises the described primer of employing, is that template carries out pcr amplification, carries out dhplc analysis to pcr amplification product with maize dna.
Further, it is that reference standard carries out dhplc analysis that described detection method also comprises with marker, the dhplc analysis result of pcr amplification product and the dhplc analysis result of marker is compared.
Preferred above-mentioned detection method comprises the steps:
(A) adopt described primer, take maize dna as template, carry out pcr amplification;
(B) be that sample carries out DHPLC analysis with the pcr amplification product of step (A), be that reference standard carries out DHPLC analysis with marker simultaneously;
(C) the DHPLC analytical results of sample in step (B) and the DHPLC analytical results of marker are compared, determine the molecular size range of sample, thus judge whether the target sequence containing detecting.
Owing to adopting above technical scheme, beneficial effect of the present invention is:
Transgenic corn lines MON89034 of the present invention detects primer and has stronger specificity, can be used in follow-up multiplexed PCR amplification and DHPLC analysis.The present invention is directed to the problem that traditional electrophoretic analysis pcr amplification result is undesirable, PCR and DHPLC combined, provide a kind of easy and simple to handle, scalability good, sensitivity and the high Transgenic corn lines MON89034 detection method of resolving power.Utilize DHPLC to analyze pcr amplification product, several base can be reached to the PCR primer fragment differentiation rate of different size, even can distinguish the fragment of 1 base difference in size.Primer of the present invention and detection method are that Transgenic corn lines MON89034 detection provides a kind of simple, convenient, effective, reliable detection method, are particularly suitable for the departments such as Check and Examination of Port quarantine and use.
Accompanying drawing explanation
Figure is the partial results that in the embodiment of the present invention, DHPLC analyzes, in figure, top-down curve is labeled as M respectively, 1-18, M is marker, 1 is non-transgenic corn DNA, 2 is corn MON88017DNA, 3 is corn MIR604DNA, 4 is corn Bt176DNA, 5 is corn Bt11DNA, 6 is corn MON810DNA, 7 is corn GA21DNA, 8 is corn NK603DNA, 9 is modified corn MON 863 DNA, 10 is corn MON89034DNA, 11 is corn T25DNA, 12 is soybean A2704-12DNA, 13 is soybean A5547-12DNA, 14 is rape DNA, 15 is cotton LLcotton25DNA, 16 is non-transgenic cotton DNA, 17 is Bt63DNA, 18 is potato EH92-527-1DNA, each peak value of marker is followed successively by 80bp, 102bp, 174bp, 257bp, 267bp, 296bp, 434bp, 458bp, 587bp from left to right.
Embodiment
The present invention discloses the primer that the PCR-DHPLC for Transgenic corn lines MON89034 detects, and this primer designs for the distinguished sequence of transgenic corns MON89034 strain.Further, also the upstream and downstream of primer with the addition of respectively one section with detect target sequence and have nothing to do or regulating and controlling sequence that homology is far, for realizing the regulation and control of the clip size to amplified production.It is to be noted, described regulating and controlling sequence add just in order to obtain more excellent Detection results, therefore, the present invention is preferred, be the primer adding regulating and controlling sequence for the PCR of Transgenic corn lines MON89034 in conjunction with the primer of DHPLC technology for detection, there is sequence respectively shown in Seq ID No.5 to Seq ID No.6.
The invention also discloses a kind of PCR-DHPLC detection method for Transgenic corn lines MON89034, described detection method comprises the described primer of employing, carries out pcr amplification, carry out dhplc analysis to pcr amplification product with maize dna template.Further, it is that reference standard carries out dhplc analysis that described detection method also comprises with marker, the dhplc analysis result of pcr amplification product and the dhplc analysis result of marker are compared, judge the size of pcr amplification product according to comparison result, thus judge whether the target sequence containing detecting.In the present invention, the DHPLC elution peak of described primer extension product is 301bp.
Also by reference to the accompanying drawings the present invention is described in further detail below by specific experiment example.Following experimental example is only further detailed the present invention, should not be construed as limitation of the present invention.
Embodiment 1DNA extracts
CTAB method is adopted to extract sample DNA, specific as follows:
A) take sample 5g, in mortar, add the powder that liquid nitrogen grinding to sample is about 0.5mm size;
B) take the sample that 300mg grinds, proceed to rapidly in 2mL centrifuge tube, add the CTAB extracting solution 700 μ L of 65 DEG C of preheatings, mixing, puts into 65 DEG C of water-bath water-bath 30min;
C) 5 μ L RNase (10mg/mL) are added, 37 DEG C of water-bath 30min;
D) add the saturated phenol of equal-volume Tris, fully mix, the centrifugal 15min of 12000r/min;
E) get supernatant, add the mixing of isopyknic chloroform/primary isoamyl alcohol (24: 1), the centrifugal 15min of 12000r/min;
F) get supernatant, add the mixing of isopyknic chloroform/primary isoamyl alcohol (24: 1), the centrifugal 15min of 12000r/min;
G) add the Virahol of equal-volume precooling, jiggle, be placed in-20 DEG C of refrigerators and leave standstill 30min, the centrifugal 15min of 12000r/min;
H) abandon supernatant, add 70% ethanol 500 μ L, the centrifugal 3min of 12000r/min, removes supernatant, repeats 2 times;
I) obtain DNA precipitation, carry out drying, add 50 μ L ~ 100 μ L TE or aseptic deionized waters with freeze drier, after fully dissolving, the purity of measurement DNA and concentration are placed in-20 DEG C of refrigerators preserves.
Embodiment 2DNA concentration determination
Concentration and purity testing are carried out to the sample DNA extracted; Adopt ultraviolet spectrophotometer to measure 260nm and 280nm place absorption value, calculate purity and the concentration of nucleic acid respectively, calculation formula is as follows:
DNA purity=OD260/OD280
DNA concentration=50 × OD260mg/mL
The purity ratio of DNA is between 1.7 ~ 1.9, and concentration is greater than 10ng/ μ L.
Embodiment 3PCR increases
According to the binding site of transgenic corns MON89034 strain design specific detection primer, and add regulating and controlling sequence at 5 ' end of specific detection primer binding site, the detection primer (table 1) of synthesis containing regulating and controlling sequence, the up/down trip primer adding regulating and controlling sequence is adopted to carry out pcr amplification, sample arranges and comprises: non-transgenic corn DNA, the DNA of corn strain MON88017, the DNA of corn strain MIR604, the DNA of corn strain Bt176, the DNA of corn strain Bt11, the DNA of corn strain MON810, the DNA of corn strain GA21, the DNA of corn strain NK603, the DNA of corn strain MON863, the DNA of corn strain MON89034, the DNA of corn strain T25, the DNA of soybean line A2704-12, the DNA of soybean line A5547-12, the DNA of non-transgenic rape, the DNA of LLcotton25 strain, non-transgenic cotton DNA, the DNA of Bt63 strain, the DNA of potato strain EH92-527-1.
Table 1 Transgenic corn lines MON89034 detects primer binding site and primer
PCR reaction system cumulative volume is 50 μ L, each composition is respectively: multi-PRC reaction mixed solution Multiplex PCR Mix (TaKaRa) 25 μ L, 10 μm of ol/L primer each 1 μ L, DNA 2 μ L, 5U/ μ L Taq enzyme 0.25 μ L, supplying with sterilizing distilled water is 50 μ L.
PCR reaction conditions: 94 DEG C of sex change 1min; Then 35 circulations are entered, 94 DEG C of 30s, 57 DEG C of 1min, 72 DEG C of 1min; After loop ends, 72 DEG C extend 10min.
Embodiment 4DHPLC detects
PCR primer is placed on the automatic sampling platform of DHPLC; Open DHPLC control software design Navigator, in detection method, select Multiplex, be i.e. multiple clips analysis, set upper limit of detection is 600bp simultaneously, and lower limit is 70bp; Run two blank, i.e. empty needles, balance chromatographic column; Run a marker, for reference to contrast, detect the nucleic acid fragment size of sample; Analyze sample to be tested successively, partial results is shown in Fig. 1.
Result judges: observe the elution peak that DHPLC obtains, by the DNA fragmentation size with marker comparison and WAVE 4500 automatic analysis determination elution peak position, judge accordingly.
To the sample containing transgenic corns MON89034 product set member, its analytical results shows, the elution peak of this sample both containing 301bp; Other transgenic strain corn, non-transgenic corn and other be not that the genetically modified sample of corn does not all have elution peak as negative control.
Above content is in conjunction with concrete embodiment further description made for the present invention, can not assert that specific embodiment of the invention is confined to these explanations.For general technical staff of the technical field of the invention, without departing from the inventive concept of the premise, some simple deduction or replace can also be made, all should be considered as belonging to protection scope of the present invention.

Claims (3)

1., for the primer that Transgenic corn lines MON89034 PCR-DHPLC detects, it is characterized in that: the upstream primer of described primer is sequence shown in Seq ID No.5, and downstream primer is sequence shown in Seq ID No.6;
Seq?ID?No.5:5’-CGTGGCCTCGCGATCTGACTTTTTTCTCCATATTGACCATCATACTC-3’
Seq?ID?No.6:5’-CTCAGCGGCGGAGCTACAGAATATAGATGGACGGTTTAGATTGGC-3’。
2. the PCR-DHPLC detection method for Transgenic corn lines MON89034, it is characterized in that: described detection method comprises employing primer according to claim 1, be that template carries out pcr amplification with maize dna, dhplc analysis is carried out to pcr amplification product.
3. detection method according to claim 2, it is characterized in that: it is that reference standard carries out dhplc analysis that described detection method also comprises with marker, the dhplc analysis result of pcr amplification product and the dhplc analysis result of marker is compared.
CN201110248329.6A 2011-08-26 2011-08-26 PCR-DHPLC (polymerase chain reaction-denaturing high performance liquid chromatography) detection primer and detection method for genetically modified maize strain MON89034 Expired - Fee Related CN102952862B (en)

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CN101495635A (en) * 2006-05-26 2009-07-29 孟山都技术有限公司 Corn plant and seed corresponding to transgenic event MON89034 and methods for detection and use thereof

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应用多重PCR-DHPLC方法快速检测转基因马铃薯及EH92-527-1品系鉴定;白月等;《中国马铃薯》;20110630;第25卷(第3期);第129-134页 *
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