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1.
为了评估转基因玉米和大豆在山西动物饲料市场的占有率和标识情况,采用改良十六烷基三甲基溴化铵法(Hexadecyltrimethy ammonium bromide,CTAB)提取山西市场抽取的30份鸡和猪饲料,通过定性PCR打包筛查,对检测阳性结果打包饲料拆包并检测CaMV35S启动子、NOS终止子、玉米内标zSSIIb、大豆内标Lectin和Cry IA(b)基因。同时检测玉米和大豆转化体事件MON810和GTS40-3-2。结果表明,83.3%的饲料含有转基因成分。所抽取的玉米、大豆、猪饲料和鸡饲料转基因成分阳性率分别为6.67%、100%、93.3%和73.3%。实时荧光定量PCR检测结果与定性PCR一致。结果提示,鸡和猪饲料中转基因成分在山西市场的占有率较高。  相似文献   

2.
加工产品中转基因玉米Bt11成分实时荧光PCR定量(性)检测   总被引:6,自引:0,他引:6  
实验在玉米自身基因和外源基因的边界序列之间设计了具有品种和品系特异性的引物和探针 ,并以实时荧光PCR技术 ,建立了加工产品中转基因玉米Bt1 1成分品系鉴定检测和定量检测的方法。实验对加热条件和时间对检测转基因成分的影响作了探讨 ,并检测了部分市售食品和饲料。检测结果发现 ,加热时间温度越高、时间越长 ,对转基因成分定量检测的影响越大 ;在所检测的样品中可以检测出转基因玉米Bt1 1成分 ,有些样品还同时检出其他转基因成分。本研究实验建立的方法 ,可以用于加工产品中转基因成分的定量检测 ,也可以用于定性检测 ,或作为常规PCR定性检测后的确证实验方法。  相似文献   

3.
为了评估转基因抗草甘膦除草剂大豆的食用安全性,以20%的比例将转基因抗草甘膦除草剂大豆GTS40-3-2和其亲本非转基因大豆A5403豆粕分别添加到基础饲料中喂养两代Sprague-Dawley(SD)大鼠,采用定性、定量PCR和ELISA方法检测转基因大豆成分相关基因和蛋白在长期饲喂的大鼠体内代谢残留状况。结果表明,大鼠喂养转基因大豆豆粕后,除了大鼠肠粪和盲肠内容物检测到有转基因成分的残留,肠道菌群和实质脏器均未发现相关基因和蛋白。结果提示,长期饲喂转基因抗草甘膦除草剂大豆GTS40-3-2与亲本A5403大豆豆粕对SD大鼠具有同样的食用安全性。  相似文献   

4.
GTS40-3-2是抗草甘膦转基因大豆,为建立GTS40-3-2大豆转化体特异性PCR检测方法,本研究以GTS40-3-2标准品为实验材料,根据已公布转基因大豆GTS40-3-2基因与大豆基因组连接序列信息,利用Primer5.0软件设计了5对品系特异性引物,对每对引物进行了退火温度、特异性及扩增效率的PCR检测,结果显示,5对特异性引物均能够从GTS40-3-2中扩增出大小约279bp、238bp、470bp、490bp和257bp的预期产物,可用于特异性检测转基因大豆GTS40-3-2转化事件。以转基因大豆GTS40-3-2含量为5%、2%、1%、0.5%和0.1%的标准品进行PCR灵敏度检测,结果表明5对引物的检测灵敏度均能达到0.1%。通过荧光定量PCR对5对特异性引物的Ct值与溶解曲线比较,最后选择出RRS2引物对为转基因大豆GTS40-3-2品系特异性检测的最适引物。本文结果将为我国未来转基因生物产品成分检测提供科学合理的实验参考。  相似文献   

5.
利用微滴式数字PCR(droplet digital PCR, ddPCR)平台建立针对MON87705、MON87769、DP356043三种转基因大豆中外源基因的双重PCR检测方法。利用双重数字PCR方法检测特异性、定量范围等参数,优化所用引物探针组合及实验体系程序,检测外源基因与内标准基因的拷贝数。结果表明,所用引物探针组合在数字PCR方法中仅对目标大豆品系有荧光信号,具有特异性,可用于转基因大豆品系的筛选与鉴别。检测了大豆的转基因成分含量,结果与材料标准品参数基本一致,并根据结果设定定量检测限为0.5%,定性检测限为0.05%,可满足低纯度样品检测的需求。双重数字PCR体系能够准确且稳定的满足实际检测需要,在实际应用上具有良好的发展前景。  相似文献   

6.
转基因耐除草剂玉米G1105E-823C是经过改造的转mG2-aroA基因耐草甘膦玉米新品系,具有更高的草甘膦耐受性,目前已完成生产性试验,具有重要的产业化应用前景。但目前尚无针对G1105E-823C的转化体特异性检测方法的相关报道,这十分不利于对该品系的检测及监管。基于此,以G1105E-823C转化体特异性序列为靶标,建立了转基因耐除草剂玉米G1105E-823C的普通PCR和实时荧光PCR定性检测方法。结果表明,2种方法均能检测出转基因耐除草剂玉米G1105E-823C转化体成分,且具有较高的特异性。普通PCR检测方法检出限达0.1%,实时荧光PCR检测方法检出限达0.05%。研究建立的2种定性检测方法为转基因耐除草剂玉米G1105E-823C的精准检测提供了新的技术手段,可为农业转基因监管提供技术支撑。  相似文献   

7.
应用实时荧光PCR技术定性定量检测改良品质的转基因小麦   总被引:1,自引:0,他引:1  
目的:对转入高分子量谷蛋白亚基的小麦中转基因成分进行实时荧光PCR定性定量检测。方法:针对转基因小麦品系中通用的ubiquitin启动子,NOS终止子以及标记基因bar基因进行定性筛选检测,同时用已知为单拷贝的Wx012基因作为小麦物种内源特异参照基因,用单粒B73转基因小麦提取基因组DNA建立内源基因和外源基因的标准曲线,对转基因小麦样品A进行定量检测,同时优化实时荧光PCR条件反应条件。定量检测结果为5.35%。结果:研究的实时荧光PCR技术对转基因小麦中转基因成分能够快速准确地进行定性定量检测。  相似文献   

8.
抗虫和耐除草剂玉米双抗12-5是我国自主研发的转基因品种,该品种于2020年1月21日获得农业转基因生物安全证书,具有广阔的应用前景。转化体特异性PCR方法是进行转基因生物安全监管的最有效的技术手段之一,可以对转基因产品进行身份鉴定。本研究组织8家实验室对研发单位提供的的双抗12-5转化体特异性定性、定量PCR方法进行了验证,验证结果显示定性与定量PCR检测方法均具有稳定性好、特异性强和灵敏度高的特点,定量PCR方法能精确地定量检测质量分数为5%和0.5%的双抗12-5样品,并且具有良好的重复性和再现性,符合相关标准的要求。本研究有助于后续标准方法的建立和完善,为我国转基因生物安全监管提供技术支撑和决策依据。  相似文献   

9.
PCR—GeneScan法检测转基因产品   总被引:16,自引:0,他引:16  
利用PCR-GeneScan技术检测转基因在豆和转基因玉米,该方法的特点是PCR扩增反应后,用Genescan扫描替代琼脂糖凝胶电泳检测PCR产物。用此方法共检测了35S启动子,NOS终止子和抗除草剂(草甘膦)和抗虫(Bt)4种转基因成分,结果显示,本方法比传统的PCR一琼脂糖凝胶电泳法灵敏度高,重现性好,结果易判断,为分析检测转基因产品提供了一个实用,灵敏的方法。  相似文献   

10.
针对抗虫耐除草剂大豆转基因品系MON89788,从转基因植物基因组DNA的提取、核酸模板的质量和浓度控制、引物探针的筛选、PCR反应过程的建立等方面建立了一套完整的转基因大豆芯片式dPCR定量检测方法。本实验也对该方法的重复性和定量检测限进行考察。10组5%转基因品系大豆MON89788样品定量重复性RSD在1.17%-9.97%之间,均满足国际上转基因定量结果RSD小于25%的要求。用该方法对转基因含量为5%、1%、0.1%的大豆MON89788进行定量检测,其定量结果为5.20%、0.94%和0.11%,RSD分别为6.2%、3.6%和15.2%。该检测方法的定量限达到0.1%,能满足欧盟对转基因定量标识0.9%的要求。将本实验建立的方法用于转基因大豆的定量检测,能为规范我国转基因监管工作的实施提供强有力的技术支撑。  相似文献   

11.
本文采用重叠延伸PCR技术快速构建了转基因大豆GTS40-3-2、玉米NK603、油菜RT73和水稻TT51-1的4种品系作物的质粒标准分子.经快速PCR鉴定及测序分析验证后,将构建的阳性质粒标准分子应用于实时荧光定量PCR标准曲线的构建,并建立其相应的荧光定量PCR检测体系,同时对该体系的扩增效率、精确度、灵敏度等指标进行了评估. 结果显示,建立的实时荧光定量PCR检测体系中,目标序列的扩增效率均在97.434%~101.479%正常范围内(R2≥0.995),定量极限为20 copies,表明我们已成功构建了这4种转基因作物的品系质粒标准分子,并能有效应用于实时荧光定量PCR标准曲线的构建.  相似文献   

12.
转mCry1Ac基因玉米BT799对斑马鱼的生态毒理学效应   总被引:1,自引:0,他引:1  
转基因作物的饲用安全性问题一直是人们关注的焦点之一.为评估转mCry1Ac基因玉米BT799对鱼类的生态毒理效应,本研究以斑马鱼为受试动物,设置5个处理:含20%转基因玉米膨化饲料组(GMF)、含20%亲本玉米膨化饲料组(PF)、转基因玉米粉(GMM)、亲本玉米粉(PMM)以及商业饲料对照组(CF),通过98 d的喂养试验,调查斑马鱼的生长表现、组织病理、繁殖、肝脏中抗氧化酶活性及敏感蛋白mRNA的表达水平.结果表明:转mCry1Ac基因玉米对斑马鱼的各项生长指标、肝脏、脑和肠道的组织病理、产卵量、受精卵孵化率、肝脏中超氧化物歧化酶(SOD)和过氧化氢酶(CAT)活性,以及SOD、CAT、热激蛋白70(HSP70)和卵黄蛋白原(VTG)mRNA表达量均无显著影响.但在试验后期,饲料组(GMF和PF)和玉米粉组(GMM和PMM)斑马鱼的体重、体长和特定生长率显著低于商业饲料组;饲料组斑马鱼的孵化率显著低于玉米粉组和商业饲料组;饲料组(3.85±0.76)雄鱼肝脏中的VTG mRNA表达量显著高于玉米粉组(1.60±0.56).研究表明,转mCry1Ac基因玉米对斑马鱼没有明显生态毒理效应,但由于配制的膨化饲料与商业饲料在营养成分和适口性上的差异,可能导致个别指标与商业饲料组相比有显著差异.  相似文献   

13.
Maize is one of the main crops worldwide and an increasing number of genetically modified (GM) maize varieties are cultivated and commercialized in many countries in parallel to conventional crops. Given the labeling rules established e.g. in the European Union and the necessary coexistence between GM and non-GM crops, it is important to determine the extent of pollen dissemination from transgenic maize to other cultivars under field conditions. The most widely used methods for quantitative detection of GMO are based on real-time PCR, which implies the results are expressed in genome percentages (in contrast to seed or grain percentages). Our objective was to assess the accuracy of real-time PCR based assays to accurately quantify the contents of transgenic grains in non-GM fields in comparison with the real cross-fertilization rate as determined by phenotypical analysis. We performed this study in a region where both GM and conventional maize are normally cultivated and used the predominant transgenic maize Mon810 in combination with a conventional maize variety which displays the characteristic of white grains (therefore allowing cross-pollination quantification as percentage of yellow grains). Our results indicated an excellent correlation between real-time PCR results and number of cross-fertilized grains at Mon810 levels of 0.1–10%. In contrast, Mon810 percentage estimated by weight of grains produced less accurate results. Finally, we present and discuss the pattern of pollen-mediated gene flow from GM to conventional maize in an example case under field conditions.  相似文献   

14.
针对转基因大豆中普遍含有的35S启动子进行引物设计,以双链DNA染料SYBR GreenⅠ为荧光标记物,利用实时荧光定量PCR方法对大豆样品进行检测。该法检测转基因大豆的检测低限为0.005 nmol/L的35S启动子,线性范围达3个数量级,可快速区分转基因大豆和非转基因大豆,具有快速、简便、灵敏、安全、高通量、低成本等优点,可推广用于转基因植物产品的快速定量检测。  相似文献   

15.
5种转基因油菜转化体特异性多重PCR检测方法   总被引:1,自引:0,他引:1       下载免费PDF全文
【目的】全球转基因植物及其产品的数量和种类越来越多,迫切需要可同时精准高效检测多个转化载体的检测方法。【方法】针对RF1、MS8、Topas19/2、Oxy235和RF3等5个转基因油菜品系的侧翼序列及油菜内源基因cruciferin A(Cru A)序列设计多重聚合酶链式反应特异性引物,通过对转基因油菜、转基因大豆、转基因玉米、转基因水稻、转基因棉花等不同作物进行PCR扩增来测试所选择的引物特异性,优化多重PCR反应引物的浓度,用所建立的检测体系对不同混合比例的转基因油菜进行多重PCR扩增来测试所建立的检测方法的灵敏度。【结果】通过测试,仅在含有目标样品中检测出阳性结果,灵敏度达0.05%,表明所建立的6重PCR检测方法可同时精准检测RF1、MS8、Topas19/2、Oxy235和RF3等5种转基因油菜转化载体。【结论】所建立的6重转基因油菜转化体特异性PCR检测方法通量高、特异性好、灵敏度高,符合有关转基因产品检测的要求,可作为转基因油菜检测的有效方法。  相似文献   

16.
Based on the DNA sequences of the junctions between recombinant and cotton genomic DNA of the two genetically modified (GM) cotton varieties, herbicide-tolerance Mon1445 and insect-resistant Mon531, event-specific primers and probes for qualitative and quantitative PCR detection for both GM cotton varieties were designed, and corresponding detection methods were developed. In qualitative PCR detection, the simplex and multiplex PCR detection systems were established and employed to identify Mon1445 and Mon531 from other GM cottons and crops. The limits of detection (LODs) of the simplex PCR were 0.05% for both Mon1445 and Mon531 using 100 ng DNA templates in one reaction, and the LOD of multiplex PCR analysis was 0.1%. For further quantitative detection using TaqMan real-time PCR systems for Mon1445 and Mon531, one plasmid pMD-ECS, used as reference molecule was constructed, which contained the quantitative amplified fragments of Mon1445, Mon531, and cotton endogenous reference gene. The limits of quantification (LOQs) of Mon1445 and Mon531 event-specific PCR systems using plasmid pMD-ECS as reference molecule were 10 copies, and the quantification range was from 0.03 to 100% in 100 ng of the DNA template for one reaction. Thereafter, five mixed cotton samples containing 0, 0.5, 0.9, 3 and 5% Mon1445 or Mon531 were quantified using established real-time PCR systems to evaluate the accuracy and precision of the developed real-time PCR detection systems. The accuracy expressed as bias varied from 1.33 to 8.89% for tested Mon1445 cotton samples, and from 2.67 to 6.80% for Mon531. The precision expressed as relative standard deviations (RSD) were different from 1.13 to 30.00% for Mon1445 cotton, and from 1.27 to 24.68% for Mon531. The range of RSD was similar to other laboratory results (25%). Concluded from above results, we believed that the established event-specific qualitative and quantitative PCR systems for Mon1445 and Mon531 in this study are acceptable and suitable for GM cotton identification and quantification.  相似文献   

17.
PCR detection of genetically modified soya and maize in foodstuffs   总被引:17,自引:0,他引:17  
The detection of genetically modified foodstuffs is becoming both a food sales and legal necessity. This study reports a rapid DNA extraction/PCR-based method for the detection of genetically modified soya (GMS) and maize (GMM) in mixed samples of transgenic and unmodified soybeans and maize kernels, and a variety of processed samples including soya flour, soya protein isolates, extruded defatted soya, acid- and alcohol-precipitated soya concentrates, soya lecithin, maize grits, seasoned corn puffs and salted corn chips. The presence of GMS DNA was determined with two pairs of primers directed towards different GMS target sequences and GMM by one primer pair. In addition, a multiplex PCR reaction which utilises an internal positive control was developed for both genetically modified organisms (GMOs). Results indicated that the methods are sensitive and specific enough to detect GMS down to a level of 0.01% dry weight in single-product PCRs and 0.1% in multiplex PCRs and GMM down to 0.001% dry weight in single-product PCRs and 0.01% in multiplex PCR. The methods are considered to represent a viable route for the commercial detection of GMS and GMM in foodstuffs.  相似文献   

18.
For rough quantitative analysis of genetically modified maize contents, rapid methods for measurement of the copy numbers of the cauliflower mosaic virus 35S promoter region (P35S) and MON810 construct-specific gene (MON810) using a combination of a capillary-type real-time PCR system with a plasmid DNA were established. To reduce the characteristic differences between the plasmid DNA and genomic DNA, we showed that pretreatment of the extracted genomic DNA by a combination of sonication and restriction endonuclease digestion before measurement is effective. The accuracy and reproducibility of this method for MON810 content (%) at a level of 5.0% MON810 mixed samples were within a range from 4.26 to 5.11% in the P35S copy number quantification. These methods should prove to be a useful tool to roughly quantify GM maize content.  相似文献   

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