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一个微小RNA-1基因,即tci-miR-1-3p,通过靶向朱砂叶螨中的一个谷胱甘肽S-转移酶基因TCGSTM4参与乙螨唑抗性。

A microRNA-1 gene, tci-miR-1-3p, is involved in cyflumetofen resistance by targeting a glutathione S-transferase gene, TCGSTM4, in Tetranychus cinnabarinus.

作者信息

Zhang Y, Feng K, Hu J, Shi L, Wei P, Xu Z, Shen G, Li M, Xu Q, He L

机构信息

Academy of Agricultural Sciences, College of Plant Protection, Southwest University, Chongqing, China.

Department of Entomology, University of California, Riverside, CA, USA.

出版信息

Insect Mol Biol. 2018 Jun;27(3):352-364. doi: 10.1111/imb.12375. Epub 2018 Feb 8.

Abstract

microRNA-1 (miR-1) is a well-studied conservative microRNA (miRNA) involved in immune responses in mammals and insects. However, little is known about its role in pesticide resistance in arthropods. In this study, we found that a microRNA belong to miR-1 family (tci-miR-1-3p) was significantly down-regulated in a cyflumetofen-resistant strain (CYR) of Tetranychus cinnabarinus compared with its homologous susceptible strain (SS), indicating an involvement of miR-1 in cyflumetofen resistance in mites. One glutathione S-transferase (GST) gene (TCGSTM4, a mu class GST gene), a candidate target gene of tci-miR-1-3p, was found to be significantly down-regulated when tci-miR-1-3p was over-expressed. The specific interaction between tci-miR-1-3p and the target sequence in the 3' untranslated region of TCGSTM4 was confirmed. A decrease or increase in tci-miR-1-3p abundance through feeding miRNA inhibitors or mimics significantly increased or decreased TCGSTM4 expressions at the mRNA and protein levels, respectively. In addition, an over-expression of tci-miR-1-3p resulted in a decrease in the tolerance of T. cinnabarinus to cyflumetofen in both SS and CYR strains, and vice versa. After decreasing TCGSTM4 transcription via RNA interference, T. cinnabarinus became more sensitive to cyflumetofen in both resistant and susceptible mites, and the change in mortality was greater in CYR than that in SS. Moreover, the recombinant TCGSTM4 could significantly decompose cyflumetofen, indicating that TCGSTM4 is a functional gene responsible for cyflumetofen resistance in mites.

摘要

微小RNA-1(miR-1)是一种经过充分研究的保守微小RNA(miRNA),参与哺乳动物和昆虫的免疫反应。然而,其在节肢动物抗药性中的作用却鲜为人知。在本研究中,我们发现与朱砂叶螨的同源敏感品系(SS)相比,一种属于miR-1家族的微小RNA(tci-miR-1-3p)在朱砂叶螨的乙螨唑抗性品系(CYR)中显著下调,这表明miR-1参与了螨类对乙螨唑的抗性。一个谷胱甘肽S-转移酶(GST)基因(TCGSTM4,一种μ类GST基因),作为tci-miR-1-3p的候选靶基因,在tci-miR-1-3p过表达时被发现显著下调。证实了tci-miR-1-3p与TCGSTM4 3'非翻译区的靶序列之间存在特异性相互作用。通过喂食miRNA抑制剂或模拟物分别增加或降低tci-miR-1-3p丰度,可显著分别在mRNA和蛋白质水平上增加或降低TCGSTM4的表达。此外,tci-miR-1-3p的过表达导致朱砂叶螨的SS和CYR品系对乙螨唑的耐受性降低,反之亦然。通过RNA干扰降低TCGSTM4转录后,朱砂叶螨的抗性和敏感螨对乙螨唑均变得更加敏感,且CYR品系的死亡率变化比SS品系更大。此外,重组TCGSTM4能够显著分解乙螨唑,表明TCGSTM4是螨类对乙螨唑抗性的功能基因。

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