生物
谷胱甘肽S-转移酶
中华按蚊
拟除虫菊酯
溴氰菊酯
谷胱甘肽
转录组
基因
载体(分子生物学)
按蚊
基因表达
重组DNA
遗传学
生物化学
酶
疟疾
杀虫剂
农学
免疫学
作者
Fei Tao,Feng‐Ling Si,Rui Hong,Xiu He,Xiang‐Ying Li,Liang Qiao,Zhengbo He,Zhen‐Tian Yan,Shulin He,Bin Chen
摘要
Abstract BACKGROUND Glutathione S ‐transferases (GSTs), a multifunctional protein family, are involved in insecticide resistance. However, a systematic analysis of GSTs in Anopheles sinensis , an important vector for malaria transmission, is lacking. In this study, we investigated the diversity and characteristics of GST genes, and analyzed their expression patterns and functions associated with insecticide resistance in this species. RESULTS We identified 32 putative cytosolic and three putative microsomal GST genes in the An. sinensis genome. Transcriptome analysis showed that GSTs were highly expressed in larvae, and mainly expressed in the antennae, midgut and Malpighian tubules of adults. In addition, we found that GSTd2 and GSTe2 were significantly upregulated in four An. sinensis pyrethroid‐resistant field populations. Furthermore, silencing of GSTd2 and GSTe2 significantly increased the susceptibility of An. sinensis to deltamethrin, and recombinant GSTd2 and GSTe2 exhibited high enzymatic activity in the metabolism of 1‐chloro‐2,4‐dinitrobenzene and dichlorodiphenyltrichloroethane (DDT). CONCLUSION These results showed that GSTs are involved in the development of insecticide resistance in An. sinensis through transcriptional overexpression and enzymatic metabolization, facilitating our understanding of insecticide resistance in insects. © 2022 Society of Chemical Industry.
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