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昆虫 ABC 基因家族:比较基因组学及其在杀虫剂转运和抗性中的作用。

The ABC gene family in arthropods: comparative genomics and role in insecticide transport and resistance.

机构信息

Laboratory of Agrozoology, Department of Crop Protection, Faculty of Bioscience Engineering, Ghent University, Coupure Links 653, B-9000 Ghent, Belgium.

Laboratory of Agrozoology, Department of Crop Protection, Faculty of Bioscience Engineering, Ghent University, Coupure Links 653, B-9000 Ghent, Belgium; Institute for Biodiversity and Ecosystem Dynamics, University of Amsterdam, Amsterdam, The Netherlands.

出版信息

Insect Biochem Mol Biol. 2014 Feb;45:89-110. doi: 10.1016/j.ibmb.2013.11.001. Epub 2013 Nov 28.

Abstract

About a 100 years ago, the Drosophila white mutant marked the birth of Drosophila genetics. The white gene turned out to encode the first well studied ABC transporter in arthropods. The ABC gene family is now recognized as one of the largest transporter families in all kingdoms of life. The majority of ABC proteins function as primary-active transporters that bind and hydrolyze ATP while transporting a large diversity of substrates across lipid membranes. Although extremely well studied in vertebrates for their role in drug resistance, less is known about the role of this family in the transport of endogenous and exogenous substances in arthropods. The ABC families of five insect species, a crustacean and a chelicerate have been annotated in some detail. We conducted a thorough phylogenetic analysis of the seven arthropod and human ABC protein subfamilies, to infer orthologous relationships that might suggest conserved function. Most orthologous relationships were found in the ABCB half transporter, ABCD, ABCE and ABCF subfamilies, but specific expansions within species and lineages are frequently observed and discussed. We next surveyed the role of ABC transporters in the transport of xenobiotics/plant allelochemicals and their involvement in insecticide resistance. The involvement of ABC transporters in xenobiotic resistance in arthropods is historically not well documented, but an increasing number of studies using unbiased differential gene expression analysis now points to their importance. We give an overview of methods that can be used to link ABC transporters to resistance. ABC proteins have also recently been implicated in the mode of action and resistance to Bt toxins in Lepidoptera. Given the enormous interest in Bt toxicology in transgenic crops, such findings will provide an impetus to further reveal the role of ABC transporters in arthropods.

摘要

大约 100 年前,果蝇 white 突变体标志着果蝇遗传学的诞生。white 基因被证明编码了第一个在节肢动物中被广泛研究的 ABC 转运蛋白。现在,ABC 基因家族被认为是所有生命王国中最大的转运蛋白家族之一。大多数 ABC 蛋白作为初级主动转运蛋白发挥作用,在转运跨脂质膜的大量不同底物的同时结合并水解 ATP。尽管它们在脊椎动物中因其在药物抗性中的作用而被研究得非常透彻,但对于该家族在节肢动物中内源性和外源性物质转运中的作用知之甚少。五种昆虫、一种甲壳类动物和一种螯肢动物的 ABC 家族已被详细注释。我们对七种节肢动物和人类的 ABC 蛋白亚家族进行了彻底的系统发育分析,以推断可能提示保守功能的直系同源关系。大多数直系同源关系存在于 ABCB 半转运蛋白、ABCD、ABCE 和 ABCF 亚家族中,但在物种和谱系内经常观察到并讨论特定的扩张。接下来,我们调查了 ABC 转运蛋白在异生物/植物化感物质转运中的作用及其在杀虫剂抗性中的参与。ABC 转运蛋白在节肢动物中外源物抗性中的作用在历史上记录不多,但越来越多的使用无偏差异基因表达分析的研究现在指出了它们的重要性。我们概述了可以将 ABC 转运蛋白与抗性联系起来的方法。ABC 蛋白最近也被牵连到鳞翅目昆虫对 Bt 毒素的作用机制和抗性中。鉴于人们对转基因作物中 Bt 毒理学的极大兴趣,这些发现将促使人们进一步揭示 ABC 转运蛋白在节肢动物中的作用。

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