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Field efficacy of cotton expressing two insecticidal proteins of Bacillus thuringiensis

机译:表达棉花三桂杀虫蛋白的棉花田间疗效

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Field studies were conducted in 1999 and 2000 to evaluate field efficacy of cotton (Gossypium hirsutum L.) expressing two insecticidal proteins of Bacillus thuringiensis Berliner (Bt) on various lepidopteran pests. Near-isogenic varieties includingnon-transgenic, single-toxin, and dual-toxin cotton were compared for heltothine numbers, numbers of occasional lepidopteran pests, damaged terminals, bolls, and squares, and seed cotton yield. Relative to the non-Bt cotton cultivar, both single and dual-toxin cotton caused a significant reduction in the numbers of heliothine larvae, damaged terminals, and damaged squares and bolls found during visual sampling. Generally, fewer heliothines were found in MON15985 than in DPL50B or DPL50 (Table 1, Figure1). Additionally, fewer heliothines were found in unsprayed subplots with cotton expressing both Cry1Ac and Cry2Ab than non-Bt subplots treated with insecticide. There was no significant difference in damaged terminals, squares, or bolls (predominantly due to bollworm) between single and dual-toxin varieties, but both Bt cultivars exhibited less damage than non-Bt cotton. Cotton expressing one and two insecticidal proteins reduced cumulative bollworm populations 79 percent and 96 percent for both years,respectively. Although single-toxin cotton only incited a 14 percent cumulative reduction of fall armyworms, populations were reduced by 96 percent in cotton expressing two Bt toxins compared with non-Bt cotton and cotton expressing Cry1Ac alone. Dual-toxin Bt cotton caused a 94 percent cumulative reduction in soybean loopers, when compared to non-Bt cotton. More soybean loopers were found in the single-toxin Bt cotton than the non-Bt cultivar. Although both single and dual toxin improved seed cotton yield over non-Bt cotton, there was no significant difference between the two varieties. These data suggest that the insertion of the Cry2Ab gene will provide substantially better control of a wide range of lepidopteran pests when compared to cotton expressing Cry1Ac alone. Since armyworms and loopers are not as affected by the single-toxin cultivar as heliothines, the true benefit of this second toxin-producing gene will likely be more apparent for these occasional pests. However, control of bollworms should also be improved.
机译:现场研究是在1999年和2000年进行的评估表达苏云金杆菌(BT)的各种鳞翅目害虫双价抗虫蛋白的棉花田间药效(陆地棉)。近等基因品种includingnon转基因,单毒素,和双毒素的棉花是为heltothine数字,偶尔鳞翅目害虫的数目,损坏端子,棉铃,和广场,和籽棉产量进行比较。相对于非转基因棉花栽培品种,包括单和双 - 毒素的棉花造成heliothine幼虫,损坏端子的数字的显著减少,和受损的正方形和棉铃视觉采样过程中发现的。一般而言,较少的heliothines在MON15985中发现比DPL50B或DPL50(表1,图1)。此外,少量heliothines与棉花既表达的Cry1Ac和Cry2Ab比用杀虫剂处理过的非Bt次要情节次要情节未喷洒的发现。有受损端子,正方形,或棉铃单和双毒素品种之间没有显著差异(主要是由于棉铃虫),但两者的Bt品种表现出比非转基因棉花的损害更小。棉花中表达一个和两个杀昆虫蛋白分别减少累积棉铃虫群体79%和96%两种年。虽然单毒素棉只煽动下降粘虫的14%累积压下,群由96%减少在棉花与非转基因棉花和棉花单独表达Cry1Ac的比较表达两种Bt毒素。相对于非转基因棉花当双毒素的Bt棉花造成大豆弯针94%累积压下,。更多大豆尺蠖在单毒素Bt棉花比非Bt品种被发现。尽管单,双毒素提高籽棉产量比非Bt棉,有两个品种之间没有显著差异。这些数据表明,相比于棉单独表达的Cry1Ac当Cry2Ab的基因的插入将提供多种鳞翅目害虫的基本上更好的控制。由于粘虫和弯针未作为受单毒素品种作为heliothines,该第二产生毒素的基因的真正益处将可能是对这些不定期害虫更加明显。然而,棉铃虫的控制也有待改进。

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