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首页> 外文期刊>Electronic Journal of Biotechnology >Detecting adventitious transgenic events in a maize center of diversity
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Detecting adventitious transgenic events in a maize center of diversity

机译:在玉米多样性中心检测不定转基因事件

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Background: The genetic diversity of maize in Peru includes several landraces (within race clusters) and modern open pollinated and hybrid cultivars that are grown by farmers across various regions, thereby making this country a secondary center of diversity for this crop. A main topic of controversy in recent years refers to the unintended presence of transgenic events in locally grown cultivars at main centers of crop diversity. Peru does not yet have biosafety regulations to control or permit the growing of genetically modified crops. Hence, the aim of this research was to undertake a survey in the valley of Barranca, where there were recent claims of authorized transgenic maize grown in farmers fields as well as in samples taken from feed storage and grain or seed trade centers. Results: A total of 162 maize samples (134 from fields, 15 from local markets, eight from the collecting centers of poultry companies, from the local trading center and four samples from seed markets) were included for a qualitative detection by the polymerase chain reaction (PCR) of Cauliflower Mosaic Virus (CaMV) 35S promoter (P35S) and nopaline synthase terminator (Tnos) sequences, as well as for six transgenic events, namely BT11, NK603, T25, 176, TC1507 and MON810. The 134 maize samples from farmers fields were negative for Cry1Ab delta-endotoxin insecticidal protein and enzyme 5-enolpyruvylshikimate-3-phosphate synthase (EPSPS) using lateral flow strips. The PCR analysis did not detect any of the six transgenic events in samples from farmers fields, local markets, seed trading shops and the local collecting center. There were four transgenic events (T25, NK603, MON810 and TC1507) in grain samples from the barns of poultry companies. Conclusions: This research could not detect, at the 95% probability level, transgenes in farmers' fields in the valley of Barranca. The four transgenic events in grain samples from barns of poultry companies were not surprising because Peru imports maize, mainly for animal feed, from Argentina and the United States that are known for growing transgenic maize.
机译:背景:秘鲁玉米的遗传多样性包括几个地方品种(在种族集群内)以及现代的开放授粉和杂交品种,这些品种由各个地区的农民种植,因此使该国成为该作物的次要多样性中心。近年来,争议的主要主题是在作物多样性主要中心的本地种植品种中意外出现了转基因事件。秘鲁尚未制定生物安全法规来控制或允许种植转基因作物。因此,这项研究的目的是在巴兰卡山谷进行调查,最近有人声称在农民田间以及从饲料储存和谷物或种子贸易中心采集的样品中种植了经过授权的转基因玉米。结果:总共包括了162个玉米样品(田间134个,本地市场15个,家禽公司采集中心,本地贸易中心的8个和种子市场的4个),用于通过聚合酶链反应进行定性检测。花椰菜花叶病毒(CaMV)35S启动子(P35S)和胭脂碱合酶终止子(Tnos)序列(PCR),以及六个转基因事件,即BT11,NK603,T25、176,TC1507和MON810。使用侧流条,来自农民田地的134个玉米样品的Cry1Abδ-内毒素杀虫蛋白和5-烯醇丙酮酸shi草酸酯-3-磷酸合酶(EPSPS)呈阴性。 PCR分析未发现农民田间,当地市场,种子贸易商店和当地采集中心的样品中的六个转基因事件。家禽公司谷仓的谷物样品中有四个转基因事件(T25,NK603,MON810和TC1507)。结论:这项研究未能以95%的概率检测到Barranca谷地农民田间的转基因。家禽公司谷仓的谷物样品中的四个转基因事件不足为奇,因为秘鲁从阿根廷和美国进口了主要用于动物饲料的玉米,而阿根廷以美国种植转基因玉米而闻名。

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