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对高剂量表达合成苏云金芽孢杆菌cry1A基因以防治鳞翅目害虫的转基因大豆进行实验室和田间评估。

Laboratory and field evaluations of transgenic soybean exhibiting high-dose expression of a synthetic Bacillus thuringiensis cry1A gene for control of Lepidoptera.

作者信息

MacRae Ted C, Baur Matthew E, Boethel David J, Fitzpatrick Bentley J, Gao Ai-Guo, Gamundi Juan Carlos, Harrison Leslie A, Kabuye Victor T, McPherson Robert M, Miklos John A, Paradise Mark S, Toedebusch Andrea S, Viegas Alejo

机构信息

Monsanto Company, 700 Chesterfield Parkway West, Chesterfield, MO 63017, USA.

出版信息

J Econ Entomol. 2005 Apr;98(2):577-87. doi: 10.1093/jee/98.2.577.

Abstract

Transgenic lines of soybean, Glycine max (L.) Merrill, expressing a synthetic cry1A gene (tic107) from Bacillus thuringiensis (Bt), were evaluated in screenhouse and conventional field trials for efficacy against lepidopteran pests. In screenhouse trials, Bt soybean and negative checks (isogenic segregants and parental lines) were evaluated against Anticarsia gemmatalis Hübner and Pseudoplusia includens (Walker) in the United States and against A. gemmatalis, Epinotia aporema (Walsingham), Rachiplusia nu (Guenée), and Spilosoma virginica (F.) in Argentina. Bt soybean exhibited virtually complete efficacy against each of these pests, whereas negative checks suffered significant damage. Bt soybean and negative checks also were evaluated in conventional trials against native populations of A. gemmatalis and P. includens in the southeastern United States. Each of these insects caused significant damage to negative checks in one or more locations, whereas Bt soybean exhibited virtually complete efficacy against these pests. In the laboratory, lyophilized leaf tissues from Bt soybean incorporated in artificial diet at a concentration representing a 25-fold dilution of fresh tissue caused complete mortality of A. gemmatalis and near complete mortality of P. includens neonates after 11 d, whereas mortality on negative checks did not exceed 10% for either insect. Average TIC107 expression approached or exceeded 50 microg/g fresh weight at V3 stage of growth and 200 microg/g by R6 stage of growth. These results demonstrate that expression of TIC107 in soybean can not only achieve highly efficacious control of several lepidopterans under field conditions but also provide a high dose for effective insect resistance management.

摘要

对表达来自苏云金芽孢杆菌(Bt)的合成cry1A基因(tic107)的大豆转基因品系[大豆(Glycine max (L.) Merrill)]进行了温室和常规田间试验,以评估其对鳞翅目害虫的防治效果。在温室试验中,针对美国的豆蚀叶野螟(Anticarsia gemmatalis Hübner)和棉铃虫(Pseudoplusia includens (Walker))以及阿根廷的豆蚀叶野螟、豆荚小卷蛾(Epinotia aporema (Walsingham))、银纹夜蛾(Rachiplusia nu (Guenée))和草地贪夜蛾(Spilosoma virginica (F.))对Bt大豆和阴性对照(同基因分离株和亲本系)进行了评估。Bt大豆对这些害虫中的每一种都表现出几乎完全的防治效果,而阴性对照则遭受了严重损害。还在常规试验中针对美国东南部豆蚀叶野螟和棉铃虫的本地种群对Bt大豆和阴性对照进行了评估。这些昆虫中的每一种在一个或多个地点对阴性对照造成了严重损害,而Bt大豆对这些害虫表现出几乎完全的防治效果。在实验室中,将Bt大豆冻干叶组织以相当于新鲜组织25倍稀释的浓度掺入人工饲料中,11天后导致豆蚀叶野螟完全死亡,棉铃虫幼虫几乎完全死亡,而两种昆虫在阴性对照上的死亡率均未超过10%。在生长的V3阶段,TIC107的平均表达接近或超过50微克/克鲜重,到生长的R6阶段达到200微克/克。这些结果表明,TIC107在大豆中的表达不仅可以在田间条件下实现对几种鳞翅目害虫的高效防治,而且还能提供高剂量用于有效的抗虫管理。

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