首页> 美国卫生研究院文献>Applied and Environmental Microbiology >Mechanism of Resistance to Bacillus thuringiensis Toxin Cry1Ac in a Greenhouse Population of the Cabbage Looper Trichoplusia ni
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Mechanism of Resistance to Bacillus thuringiensis Toxin Cry1Ac in a Greenhouse Population of the Cabbage Looper Trichoplusia ni

机译:大白菜尺er温室大棚种群对苏云金芽孢杆菌毒素Cry1Ac的抗性机制

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摘要

The cabbage looper, Trichoplusia ni, is one of only two insect species that have evolved resistance to Bacillus thuringiensis in agricultural situations. The trait of resistance to B. thuringiensis toxin Cry1Ac from a greenhouse-evolved resistant population of T. ni was introgressed into a highly inbred susceptible laboratory strain. The resulting introgression strain, GLEN-Cry1Ac-BCS, and its nearly isogenic susceptible strain were subjected to comparative genetic and biochemical studies to determine the mechanism of resistance. Results showed that midgut proteases, hemolymph melanization activity, and midgut esterase were not altered in the GLEN-Cry1Ac-BCS strain. The pattern of cross-resistance of the GLEN-Cry1Ac-BCS strain to 11 B. thuringiensis Cry toxins showed a correlation of the resistance with the Cry1Ab/Cry1Ac binding site in T. ni. This cross-resistance pattern is different from that found in a previously reported laboratory-selected Cry1Ab-resistant T. ni strain, evidently indicating that the greenhouse-evolved resistance involves a mechanism different from the laboratory-selected resistance. Determination of specific binding of B. thuringiensis toxins Cry1Ab and Cry1Ac to the midgut brush border membranes confirmed the loss of midgut binding to Cry1Ab and Cry1Ac in the resistant larvae. The loss of midgut binding to Cry1Ab/Cry1Ac is inherited as a recessive trait, which is consistent with the recessive inheritance of Cry1Ab/Cry1Ac resistance in this greenhouse-derived T. ni population. Therefore, it is concluded that the mechanism for the greenhouse-evolved Cry1Ac resistance in T. ni is an alteration affecting the binding of Cry1Ab and Cry1Ac to the Cry1Ab/Cry1Ac binding site in the midgut.
机译:圆白菜弯管虫Trichoplusia ni是在农业条件下对苏云金芽孢杆菌产生抗性的仅有的两种昆虫之一。温室进化的抗性烟粉虱对苏云金芽孢杆菌毒素Cry1Ac的抗性特征被引入到高度近交的易感实验室菌株中。对所得的渗入菌株GLEN-Cry1Ac-BCS及其近等基因易感菌株进行了比较遗传和生化研究,以确定抗药性的机制。结果表明,GLEN-Cry1Ac-BCS菌株中肠蛋白酶,血淋巴黑色素化活性和中肠酯酶没有改变。 GLEN-Cry1Ac-BCS菌株对苏云金芽孢杆菌11 Cry毒素的交叉抗性模式显示,抗性与烟草中的Cry1Ab / Cry1Ac结合位点相关。这种交叉抗性模式不同于先前报道的实验室选择的对Cry1Ab抗性的T.ni菌株中发现的交叉模式,这显然表明温室进化的抗性涉及与实验室选择的抗性不同的机制。确定苏云金芽孢杆菌毒素Cry1Ab和Cry1Ac与中肠刷缘膜的特异性结合,证实了抗性幼虫中肠与Cry1Ab和Cry1Ac结合的丧失。中肠与Cry1Ab / Cry1Ac结合的丧失是一种隐性性状,与这种温室衍生的T. ni种群对Cry1Ab / Cry1Ac抗性的隐性遗传相一致。因此,可以得出结论,T。ni中温室进化的Cry1Ac抗性机制是一种改变,影响了Cry1Ab和Cry1Ac与中肠Cry1Ab / Cry1Ac结合位点的结合。

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