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A QTL that enhances and broadens Bt insect resistance in soybean

机译:增强和扩大大豆Bt昆虫抗性的QTL

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Effective strategies are needed to manage insect resistance to Bacillus thuringiensis (Bt) proteins expressed in transgenic crops. To evaluate a multiple resistance gene pyramiding strategy, eight soybean (Glycine max) lines possessing factorial combinations of two quantitative trait loci (QTLs) from plant introduction (PI) 229358 and a synthetic Bt cry1Ac gene were developed using marker-assisted selection with simple sequence repeat markers. Field studies were conducted in 2000 and 2001 to evaluate resistance to corn earworm (Helicoverpa zea) and soybean looper (Pseudoplusia includens), and detached leaf bioassays were used to test antibiosis resistance to Bt-resistant and Bt-susceptible strains of tobacco budworm (TBW; Heliothis virescens). Based on defoliation in the field and larval weight gain on detached leaves, lines carrying a combination of cry1Ac and the PI 229358 allele at a QTL on linkage group M were significantly more resistant to the lepidopteran pests, including the Bt-resistant TBW strain, than were the other lines. This is the first report of a complementary additive effect between a Bt transgene and a plant insect resistance QTL with an uncharacterized mode of action that was introgressed using marker-assisted selection.
机译:需要有效的策略来控制昆虫对苏云金芽孢杆菌(Bt)蛋白在转基因作物中表达的抗性。为了评估多重抗性基因金字塔策略,使用具有简单序列的标记辅助选择技术开发了八个大豆(Glycine max)品系,它们具有来自植物引入(PI)229358的两个数量性状基因座(QTL)的因子组合和合成的Bt cry1Ac基因重复标记。在2000年和2001年进行了田间研究,以评估对玉米耳虫(Helicoverpa zea)和大豆弯弯虫(Pseudoplusia includens)的抗性,并采用离体叶生物测定法测试对Bt抗药性和Bt易感性烟草芽孢杆菌(TBW)的抗药性。 ; Heliothis virescens)。根据田间的落叶和离体叶片上幼虫的体重增加,在连锁群M的QTL上携带cry1Ac和PI 229358等位基因组合的品系对鳞翅目害虫(包括对Bt耐药的TBW菌株)的抗性要强于其他行。这是关于Bt转基因与植物抗药性QTL之间互补互补作用的首次报道,该抗性具有通过使用标记辅助选择而渗入的未表征的作用方式。

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  • 来源
    《Theoretical and Applied Genetics 》 |2004年第5期| 1051-1057| 共7页
  • 作者单位

    Department of Crop and Soil Sciences University of Georgia;

    Department of Crop and Soil Sciences University of GeorgiaMonsanto Company;

    Department of Crop and Soil Sciences University of Georgia;

    Department of Entomology University of Georgia;

    Department of Crop and Soil Sciences University of Georgia102 Center for Applied Genetic Technologies;

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