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朱砂叶螨(Boisduval)对杀螨剂敏感和抗性品系中羧酸酯酶基因的特征及其表达水平

Characteristics of carboxylesterase genes and their expression-level between acaricide-susceptible and resistant Tetranychus cinnabarinus (Boisduval).

作者信息

Wei Peng, Shi Li, Shen Guangmao, Xu Zhifeng, Liu Jialu, Pan Yu, He Lin

机构信息

Key Laboratory of Entomology and Pest Control Engineering, College of Plant Protection, Southwest University, Chongqing 400716, China.

College of Horticulture and Landscape Architecture, Southwest University, Chongqing 400716, China.

出版信息

Pestic Biochem Physiol. 2016 Jul;131:87-95. doi: 10.1016/j.pestbp.2015.12.007. Epub 2015 Dec 19.

Abstract

Carboxylesterases (CarEs) play important roles in metabolism and detoxification of dietary and environmental xenobiotics in insects and mites. On the basis of the Tetranychuscinnabarinus transcriptome dataset, 23 CarE genes (6 genes are full sequence and 17 genes are partial sequence) were identified. Synergist bioassay showed that CarEs were involved in acaricide detoxification and resistance in fenpropathrin- (FeR) and cyflumetofen-resistant (CyR) strains. In order to further reveal the relationship between CarE gene's expression and acaricide-resistance in T. cinnabarinus, we profiled their expression in susceptible (SS) and resistant strains (FeR, and CyR). There were 8 and 4 over-expressed carboxylesterase genes in FeR and CyR, respectively, from which the over-expressions were detected at mRNA level, but not DNA level. Pesticide induction experiment elucidated that 4 of 8 and 2 of 4 up-regulated genes were inducible with significance in FeR and CyR strains, respectively, but they could not be induced in SS strain, which indicated that these genes became more enhanced and effective to withstand the pesticides' stress in resistant T. cinnabarinus. Most expression-changed and all inducible genes possess the Abhydrolase_3 motif, which is a catalytic domain for hydrolyzing. As a whole, these findings in current study provide clues for further elucidating the function and regulation mechanism of these carboxylesterase genes in T. cinnabarinus' resistance formation.

摘要

羧酸酯酶(CarEs)在昆虫和螨类对饮食及环境中异源生物的代谢和解毒过程中发挥着重要作用。基于朱砂叶螨转录组数据集,鉴定出了23个羧酸酯酶基因(6个为全长序列,17个为部分序列)。增效剂生物测定表明,羧酸酯酶参与了甲氰菊酯抗性(FeR)和乙螨唑抗性(CyR)品系对杀螨剂的解毒和抗性过程。为了进一步揭示朱砂叶螨中羧酸酯酶基因表达与杀螨剂抗性之间的关系,我们分析了它们在敏感(SS)品系和抗性品系(FeR和CyR)中的表达情况。FeR和CyR品系分别有8个和4个羧酸酯酶基因过度表达,这些基因在mRNA水平而非DNA水平上被检测到过度表达。农药诱导实验表明,FeR和CyR品系中分别有8个上调基因中的4个和4个上调基因中的2个具有显著诱导性,但在SS品系中无法诱导,这表明这些基因在抗性朱砂叶螨中变得更强且更有效地抵御农药胁迫。大多数表达发生变化的基因以及所有可诱导基因都具有Abhydrolase_3基序,这是一个水解催化结构域。总体而言,本研究中的这些发现为进一步阐明这些羧酸酯酶基因在朱砂叶螨抗性形成中的功能和调控机制提供了线索。

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