首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >PNAS Plus: Single amino acid mutation in an ATP-binding cassette transporter gene causes resistance to Bt toxin Cry1Ab in the silkworm Bombyx mori
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PNAS Plus: Single amino acid mutation in an ATP-binding cassette transporter gene causes resistance to Bt toxin Cry1Ab in the silkworm Bombyx mori

机译:PNAS Plus:ATP结合盒转运蛋白基因中的单个氨基酸突变导致家蚕对Bt毒素Cry1Ab的抗性

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摘要

Bt toxins derived from the arthropod bacterial pathogen Bacillus thuringiensis are widely used for insect control as insecticides or in transgenic crops. Bt resistance has been found in field populations of several lepidopteran pests and in laboratory strains selected with Bt toxin. Widespread planting of crops expressing Bt toxins has raised concerns about the potential increase of resistance mutations in targeted insects. By using Bombyx mori as a model, we identified a candidate gene for a recessive form of resistance to Cry1Ab toxin on chromosome 15 by positional cloning. BGIBMGA007792-93, which encodes an ATP-binding cassette transporter similar to human multidrug resistance protein 4 and orthologous to genes associated with recessive resistance to Cry1Ac in Heliothis virescens and two other lepidopteran species, was expressed in the midgut. Sequences of 10 susceptible and seven resistant silkworm strains revealed a common tyrosine insertion in an outer loop of the predicted transmembrane structure of resistant alleles. We confirmed the role of this ATP-binding cassette transporter gene in Bt resistance by converting a resistant silkworm strain into a susceptible one by using germline transformation. This study represents a direct demonstration of Bt resistance gene function in insects with the use of transgenesis.
机译:来自节肢动物细菌病原体苏云金芽孢杆菌的Bt毒素广泛用作杀虫剂或转基因作物中的昆虫防治。在几种鳞翅目害虫的田间种群和用Bt毒素选择的实验室菌株中发现了对Bt的抗性。表达Bt毒素的农作物的广泛种植引起了人们对目标昆虫抗药性突变潜在增加的担忧。通过使用家蚕作为模型,我们通过定位克隆鉴定了对15号染色体上的Cry1Ab毒素具有隐性抗性的候选基因。在中肠中表达了BGIBMGA007792-93,其编码类似于人多药抗性蛋白4的ATP结合盒转运蛋白,并且与拟南芥和另外两个鳞翅目物种对Cry1Ac的隐性抗性相关的基因同源。 10个易感和7个抗性家蚕菌株的序列揭示了在抗性等位基因的预测跨膜结构外环中常见的酪氨酸插入。我们通过使用种系转化将抗性蚕株转化为易感株,从而证实了该ATP结合盒转运蛋白基因在Bt抗性中的作用。这项研究通过转基因技术直接证明了昆虫中Bt抗性基因的功能。

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