首页> 外文期刊>Pest Management Science >Assessment of the high-dose concept and level of control provided by MON 87701 x MON 89788 soybean against Anticarsia gemmatalis and Pseudoplusia includens (Lepidoptera: Noctuidae) in Brazil
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Assessment of the high-dose concept and level of control provided by MON 87701 x MON 89788 soybean against Anticarsia gemmatalis and Pseudoplusia includens (Lepidoptera: Noctuidae) in Brazil

机译:评估MON 87701 x MON 89788大豆对巴西双歧杆菌和假正鞭毛虫(鳞翅目:夜蛾科)的高剂量概念和控制水平

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BACKGROUND: Genetically modified MON 87701 x MON 89788 soybean (Glycine max), which expresses the Cry1Ac and EPSP-synthase proteins, has been registered for commercial use in Brazil. To develop an Insect Resistance Management (IRM) program for this event, laboratory and field studies were conducted to assess the high-dose concept and level of control it provides against Anticarsia gemmatalis and Pseudoplusia includens. RESULTS: The purified Cry 1 Ac protein was more active against A. gemmatalis [LC_(50) (FL 95%) = 0.23 (0.15-0.34) μg Cryl Ac mL~(-1) diet] than P. includens [LC_(50) (FL 95%) = 3.72 (2.65-4.86) μg Cry1Ac mL~(-1) diet]. In bioassays with freeze-dried MON 87701 x MON 89788 soybean tissue diluted 25 times in an artificial diet, there was 100% mortality of A. gemmatalis and up to 95.79% mortality for P. includens. In leaf-disc bioassays and under conditions of high artificial infestation in the greenhouse and natural infestation in the field, MON 87701 x MON 89788 soybean showed a high level of efficacy against both target pests. CONCLUSIONS: The MON 87701 x MON 89788 soybean provides a high level of control against A. gemmatalis and P. includes, but a high-dose event only to A. gemmatalis.
机译:背景:表达Cry1Ac和EPSP合酶蛋白的转基因MON 87701 x MON 89788大豆(Glycine max)已在巴西进行了商业注册。为了开发此事件的昆虫抗性管理(IRM)程序,进行了实验室和现场研究,以评估其对双生抗龋齿和假正毛菌包括的高剂量概念及其控制水平。结果:纯化的Cry 1 Ac蛋白对产双歧杆菌[LC_(50)(FL 95%)= 0.23(0.15-0.34)μgCrAc Ac mL〜(-1)饮食]的活性比假单胞菌[LC_( 50)(FL 95%)= 3.72(2.65-4.86)μgCry1Ac mL〜(-1)饮食]。在冻干的MON 87701 x MON 89788大豆组织在人工饮食中稀释25倍的生物测定中,双歧曲霉的死亡率为100%,包涵体的死亡率高达95.79%。在圆盘生物测定中以​​及在温室中大量人工侵害和田间自然侵害的条件下,MON 87701 x MON 89788大豆对两种目标害虫均显示出高水平的功效。结论:MON 87701 x MON 89788大豆提供了高水平的防治双歧杆菌和P.的功能,但仅对双歧杆菌有高剂量的控制。

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