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Insect Resistance to Bacillus thuringiensis Toxin Cry2Ab Is Conferred by Mutations in an ABC Transporter Subfamily A Protein

机译:ABC转运蛋白亚家族A蛋白的突变赋予了对苏云金芽孢杆菌毒素Cry2Ab的昆虫抗性。

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摘要

The use of conventional chemical insecticides and bacterial toxins to control lepidopteran pests of global agriculture has imposed significant selection pressure leading to the rapid evolution of insecticide resistance. Transgenic crops (e.g., cotton) expressing the Bt Cry toxins are now used world wide to control these pests, including the highly polyphagous and invasive cotton bollworm Helicoverpa armigera. Since 2004, the Cry2Ab toxin has become widely used for controlling H. armigera, often used in combination with Cry1Ac to delay resistance evolution. Isolation of H. armigera and H. punctigera individuals heterozygous for Cry2Ab resistance in 2002 and 2004, respectively, allowed aspects of Cry2Ab resistance (level, fitness costs, genetic dominance, complementation tests) to be characterised in both species. However, the gene identity and genetic changes conferring this resistance were unknown, as was the detailed Cry2Ab mode of action. No cross-resistance to Cry1Ac was observed in mutant lines. Biphasic linkage analysis of a Cry2Ab-resistant H. armigera family followed by exon-primed intron-crossing (EPIC) marker mapping and candidate gene sequencing identified three independent resistance-associated INDEL mutations in an ATP-Binding Cassette (ABC) transporter gene we named HaABCA2. A deletion mutation was also identified in the H. punctigera homolog from the resistant line. All mutations truncate the ABCA2 protein. Isolation of further Cry2Ab resistance alleles in the same gene from field H. armigera populations indicates unequal resistance allele frequencies and the potential for Bt resistance evolution. Identification of the gene involved in resistance as an ABC transporter of the A subfamily adds to the body of evidence on the crucial role this gene family plays in the mode of action of the Bt Cry toxins. The structural differences between the ABCA2, and that of the C subfamily required for Cry1Ac toxicity, indicate differences in the detailed mode-of-action of the two Bt Cry toxins.
机译:使用常规化学杀虫剂和细菌毒素来控制全球农业的鳞翅目害虫已经施加了巨大的选择压力,导致对杀虫剂的抗性迅速发展。如今,表达Bt Cry毒素的转基因作物(例如棉花)已在世界范围内用于控制这些害虫,包括高度多食性和入侵棉铃虫Helicoverpa armigera。自2004年以来,Cry2Ab毒素已被广泛用于控制棉铃虫,通常与Cry1Ac结合使用以延迟耐药性的进化。分别在2002年和2004年分离棉铃虫和点状绣球菌对Cry2Ab的抵抗力是杂种,使得这两个物种都能够鉴定Cry2Ab的抵抗力(水平,适应性成本,遗传优势,互补性测试)。然而,未知的基因身份和遗传变化赋予这种抗性,以及详细的Cry2Ab作用方式也是未知的。在突变株中未观察到对Cry1Ac的交叉抗性。 Cry2Ab耐药棉铃虫家族的双相连锁分析,然后进行外显子引物内含子杂交(EPIC)标记定位和候选基因测序,确定了我们命名的ATP结合盒(ABC)转运蛋白基因中三个独立的与耐药相关的INDEL突变HaABCA2。在抗性品系的点状杆菌中也鉴定出缺失突变。所有突变都截断了ABCA2蛋白。从田间棉铃虫种群中分离出同一基因中的其他Cry2Ab抗性等位基因表明,抗性等位基因频率不相等,并且具有Bt抗性进化的潜力。鉴定出与抗性有关的基因是A亚家族的ABC转运蛋白,这为该基因家族在Bt Cry毒素的作用方式中起关键作用提供了证据。 ABCA2和Cry1Ac毒性所需的C亚科之间的结构差异表明,两种Bt Cry毒素在详细的作用方式上存在差异。

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