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Relationships between exogenous-toxin quantity and increased biomass of transgenic Bt crops under elevated carbon dioxide

机译:二氧化碳升高下外源毒素数量与转基因Bt作物生物量增加的关系

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Field-OTC experiments were conducted with the goals of ascertaining if increased biomass in Bt transgenic cotton and rice grown under elevated CO-2 results in diminished exogenous-Bt toxin, and assessing the effectiveness of Bt transgenes against lepidopteran pests. Bt cotton responded differently, in terms of Bt-toxin quantity, than Bt rice, and both indicated differences among developmental stages. Dramatic biomass increase significantly diluted Bt-toxin content in 45-DAS ("days after seedling") petioles and shoots and 90-DAS Bt cotton squares, and in the 50-DAS tissues and 100-DAS leaf sheaths of Bt rice. Moreover, the dilution effect was partially responsible for decreased Bt-toxin in these tissues, but not responsible for significant decreases in Bt-toxin in 90-DAS Bt cotton leaves and bolls. Furthermore, elevated CO-2 significantly affected the fitness and performance of Chilo suppressalis, and the susceptible and resistant colonies of Helicoverpa armigera, although adversely affected Bt-gene expression for the transgenic cotton and rice.
机译:进行现场OTC实验的目的是确定在高CO 2浓度下种植的Bt转基因棉花和水稻中生物量的增加是否导致外源Bt毒素减少,并评估Bt转基因对鳞翅目害虫的有效性。 Bt棉花对Bt毒素的反应与Bt水稻的反应不同,并且两者都表明发育阶段之间存在差异。显着的生物量显着提高了45-DAS(“苗后天数”)叶柄和枝条和90-DAS Bt棉块以及Bt水稻的50-DAS组织和100-DAS叶鞘中的稀释Bt毒素含量。此外,稀释作用是造成这些组织中Bt毒素减少的部分原因,而不是造成90-DAS Bt棉叶和铃中Bt毒素显着减少的原因。此外,升高的CO-2显着影响Chilohibialis的适应性和性能,以及棉铃虫的易感和抗性菌落,尽管对转基因棉花和水稻的Bt基因表达产生不利影响。

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