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西方盲走螨中尼曼-皮克C2基因的表达及功能分析

Expression and functional analysis of Niemann-Pick C2 gene in Phytoseiulus persimilis.

作者信息

Zhou Hongxu, Yan Hong, Wang Endong, Zhang Bo, Xu Xuenong

机构信息

Lab of Predatory Mites, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, 100193, Beijing, China.

Key Laboratory of Natural Enemies Insects, Ministry of Agriculture and Rural Affairs, 100193, Beijing, China.

出版信息

Exp Appl Acarol. 2023 Feb;89(2):201-213. doi: 10.1007/s10493-023-00781-8. Epub 2023 Mar 15.

Abstract

As a new protein class of semiochemical binding and transporting, Niemann-Pick proteins type C2 (NPC2) in arthropods have received more attentions in recent decade. However, the gene function has not been studied in phytoseiid mites with biocontrol potential. In the current study, we cloned a NPC2 gene PpNPC2a from the transcriptome of Phytoseiulus persimilis Athias-Henriot. By encoding 181 amino acids with a conserved ML domain, PpNPC2a was found a homolog of NPC2-1 in Galendromus occidentalis Nesbitt. We then measured the spatio-temporal expression of PpNPC2a in P. persimilis, and found the highest expression in female adults compared to other stages. Due to the tiny body size of predatory mites, we only examined tissue expressions in two sections: the anterior part (gnathosoma and the first pair of legs) and the posterior part (idiosoma without the first pair of legs). Higher transcription of PpNPC2a was found in the posterior part. To investigate the potential function of PpNPC2a in P. persimilis, we interfered gene expression in female adults by feeding dsRNA, which resulted in a decrease of relative expression by 59.1 and 78.2% after 24 and 72 h, respectively. Compared with the control, dsNPC2a-treated P. persimilis were insensitive to the scent of leaves or plants infested by spider mites, suggesting a role of PpNPC2a in response to plant volatiles. However, the dsNPC2a-interfered mites could still respond to four representative compounds of herbivore-induced plant volatiles, including 4,8,12-trimethyl-1,3,7,11-tridecatetraene (TMTT), methyl salicylate (MeSA), β-caryophyllene and linalool. In short, our results indicated PpNPC2a may be involved in the chemosensory process of P. persimilis in response to whole-plant volatiles.

摘要

作为一类新的信息化学物质结合与转运蛋白,节肢动物中的尼曼-皮克C2型蛋白(NPC2)在近十年受到了更多关注。然而,具有生物防治潜力的植绥螨中该基因的功能尚未得到研究。在本研究中,我们从西方盲走螨的转录组中克隆了一个NPC2基因PpNPC2a。PpNPC2a编码181个氨基酸,具有保守的ML结构域,被发现是西方钝绥螨中NPC2-1的同源物。然后我们测定了PpNPC2a在西方盲走螨中的时空表达,发现与其他发育阶段相比,在雌成螨中表达量最高。由于捕食螨体型微小,我们仅检测了两个部位的组织表达:前部(颚体和第一对足)和后部(去除第一对足的躯体)。结果发现PpNPC2a在后部的转录水平更高。为了探究PpNPC2a在西方盲走螨中的潜在功能,我们通过喂食dsRNA干扰雌成螨中的基因表达,24小时和72小时后相对表达量分别下降了59.1%和78.2%。与对照相比,经dsNPC2a处理的西方盲走螨对被叶螨侵害的叶片或植物的气味不敏感,这表明PpNPC2a在对植物挥发物的反应中发挥作用。然而,经dsNPC2a干扰的螨类仍能对四种典型的植食性昆虫诱导的植物挥发物化合物做出反应,包括4,8,12-三甲基-1,3,7,11-十三碳四烯(TMTT)、水杨酸甲酯(MeSA)、β-石竹烯和芳樟醇。简而言之,我们的结果表明PpNPC2a可能参与西方盲走螨对全株挥发物的化学感受过程。

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