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多个三磷酸腺苷结合盒转运体基因参与了棉蚜对噻虫嗪的抗性。

Multiple ATP-binding cassette transporters genes are involved in thiamethoxam resistance in Aphis gossypii glover.

机构信息

College of Plant Science, Jilin University, Changchun 130062, PR China; School of Agricultural Science, Zhengzhou University, Zhengzhou 450001, PR China.

College of Plant Science, Jilin University, Changchun 130062, PR China.

出版信息

Pestic Biochem Physiol. 2020 Jul;167:104558. doi: 10.1016/j.pestbp.2020.104558. Epub 2020 Mar 4.

Abstract

ATP-binding cassette (ABC) transporters represent the largest known group of efflux pumps, utilizing ATP to translocate a broad spectrum of substrates across lipid membranes, which play an important role in phase III of the detoxification process. The presence of ABC transporters and their potential association with insecticide resistance have not been investigated in Aphis gossypii, one of the most economically important agricultural pests worldwide. In this study, the ABC transporter inhibitor-verapamil significantly increased thiamethoxam toxicity against resistant cotton aphids, suggesting that ABCs are involved in thiamethoxam resistance. ABC transporter genes were identified using the A. gossypii genome database and transcriptome data. A total of 69 ABC transporters were identified and grouped into seven subfamilies (A-G), including 4 ABCAs, 5 ABCBs, 25 ABCCs, 2 ABCDs, 1 ABCE, 4 ABCFs and 30 ABCGs. Of these ABC transporters, 53 were predicted to be functional, 19 were full transporters, 30 were half-transporters and 4 had two NBDs. Subfamilies C and G accounted for 77% (32 and 45%, respectively) of the genes. The transcripts of 20 of 26 ABCs based on the transcriptome were upregulated, and ABCA1, ABCA2, ABCB1, ABCB4, ABCB8, ABCD1, ABCD2, ABCE1, ABCF1, ABCF3, ABCG7, ABCG15, ABCG17, ABCG24, ABCG27, ABCG30, MRP1, MRP7, MRP14 and MRP21 transcripts were significantly increased in the thiamethoxan resistant strain compared to the susceptible strain with qRT-PCR. The suppression of overexpressed ABCs (ABCA2, ABCD1, ABCD2, ABCE1 and ABCG15) significantly increased the thiamethoxam sensitivity of resistant aphids. These results suggest that ABC transporters might be involved in thiamethoxam resistance in A. gossypii and will facilitate further work to validate the functional roles of these ABCs in thiamethoxam resistance. These results are useful for understanding the multiple resistance mechanisms of thiamethoxam and the management of insecticide-resistant cotton aphids.

摘要

三磷酸腺苷结合盒(ABC)转运蛋白是最大的已知外排泵家族,利用三磷酸腺苷将广泛的底物转运穿过脂质膜,在解毒过程的第三阶段发挥重要作用。在棉蚜(全世界最重要的农业害虫之一)中,尚未研究 ABC 转运蛋白的存在及其与杀虫剂抗性的潜在关联。在本研究中,ABC 转运蛋白抑制剂维拉帕米显著增加了噻虫嗪对抗性棉蚜的毒性,表明 ABC 参与了噻虫嗪抗性。使用棉蚜基因组数据库和转录组数据鉴定 ABC 转运体基因。共鉴定出 69 种 ABC 转运体,并分为七个亚家族(A-G),包括 4 种 ABCA、5 种 ABCB、25 种 ABCC、2 种 ABCD、1 种 ABCE、4 种 ABCF 和 30 种 ABCG。在这些 ABC 转运体中,预测 53 种具有功能,19 种是完整转运体,30 种是半转运体,4 种具有两个 NBD。亚家族 C 和 G 分别占基因的 77%(分别为 32%和 45%)。根据转录组,26 种 ABC 中的 20 种的转录物上调,并且 ABCA1、ABCA2、ABCB1、ABCB4、ABCB8、ABCD1、ABCD2、ABCE1、ABCF1、ABCF3、ABCG7、ABCG15、ABCG17、ABCG24、ABCG27、ABCG30、MRP1、MRP7、MRP14 和 MRP21 的转录物在抗噻虫嗪菌株中明显高于敏感菌株,qRT-PCR 检测。过表达 ABC(ABCA2、ABCD1、ABCD2、ABCE1 和 ABCG15)的抑制显著增加了抗性蚜虫对噻虫嗪的敏感性。这些结果表明,ABC 转运蛋白可能参与了棉蚜对噻虫嗪的抗性,并且将有助于进一步验证这些 ABC 在噻虫嗪抗性中的功能作用。这些结果有助于理解噻虫嗪的多种抗性机制和杀虫剂抗性棉蚜的管理。

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