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茶尺蠖(Ectropis obliqua Prout)(鳞翅目:尺蛾科)中候选气味结合蛋白和化学感受蛋白的特性分析

Characterization of candidate odorant-binding proteins and chemosensory proteins in the tea geometrid Ectropis obliqua Prout (Lepidoptera: Geometridae).

作者信息

Sun Liang, Mao Teng-Fei, Zhang Yu-Xing, Wu Jian-Jian, Bai Jia-He, Zhang Ya-Nan, Jiang Xing-Chuan, Yin Kun-Shan, Guo Yu-Yuan, Zhang Yong-Jun, Xiao Qiang

机构信息

Key Laboratory of Tea Biology and Resources Utilization, Ministry of Agriculture, Tea Research Institute, Chinese Academy of Agricultural Sciences, Hangzhou, China.

State Key Laboratory for Biology of Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing, China.

出版信息

Arch Insect Biochem Physiol. 2017 Apr;94(4). doi: 10.1002/arch.21383. Epub 2017 Mar 21.

Abstract

Insects rely heavily on their sophisticated chemosensory systems to locate host plants and find conspecific mates. Although the molecular mechanisms of odorant recognition in many Lepidoptera species have been well explored, limited information has been reported on the geometrid moth Ectropis obliqua Prout, an economically important pest of tea plants. In the current study, we first attempted to identify and characterize the putative olfactory carrier proteins, including odorant-binding proteins (OBPs) and chemosensory proteins (CSPs). By analyzing previously obtained transcriptomic data of third-instar larvae, five OBPs and 14 CSPs in E. obliqua were identified. Sequence alignment, conserved motif identification, and phylogenetic analysis suggested that candidate proteins have typical characteristics of the insect OBP or CSP family. The expression patterns regarding life stages and different tissues were determined by quantitative real-time PCR. The results revealed that four transcripts (OBP2, OBP4 and CSP8, CSP10) had larvae preferential expression profiles and nine candidate genes (PBP1, OBP1 and CSP2, CSP4, CSP5, CSP6, CSP7, CSP11, and CSP13) were adult-biased expressed. Further specific tissue expression profile evaluation showed that OBP1, OBP2, OBP4, and PBP1 were highly expressed at olfactory organs, implying their potential involvement in chemical cue detection, whereas CSPs were ubiquitously detected among all of the tested tissues and could be associated with multiple physiological functions. This study provided a foundation for understanding the physiological functions of OBPs and CSPs in E. obliqua and will help pave the way for the development of a new environmental friendly pest management strategy against the tea geometrid moth.

摘要

昆虫严重依赖其复杂的化学感应系统来定位寄主植物并寻找同种配偶。尽管许多鳞翅目物种中气味识别的分子机制已得到充分研究,但关于茶尺蠖(Ectropis obliqua Prout)这一茶树重要经济害虫的相关信息报道较少。在本研究中,我们首次尝试鉴定和表征假定的嗅觉载体蛋白,包括气味结合蛋白(OBP)和化学感应蛋白(CSP)。通过分析先前获得的三龄幼虫转录组数据,在茶尺蠖中鉴定出了5种OBP和14种CSP。序列比对、保守基序鉴定和系统发育分析表明,候选蛋白具有昆虫OBP或CSP家族的典型特征。通过定量实时PCR确定了这些蛋白在不同生命阶段和不同组织中的表达模式。结果显示,4个转录本(OBP2、OBP4以及CSP8、CSP10)在幼虫中优先表达,9个候选基因(PBP1、OBP1以及CSP2、CSP4、CSP5、CSP6、CSP7、CSP11和CSP13)在成虫中偏向性表达。进一步的特定组织表达谱评估表明,OBP1、OBP2、OBP4和PBP1在嗅觉器官中高表达,这意味着它们可能参与化学信号检测,而CSP在所有测试组织中均有检测到,可能与多种生理功能相关。本研究为理解茶尺蠖中OBP和CSP的生理功能提供了基础,并将有助于为开发针对茶尺蠖的新型环保害虫管理策略铺平道路。

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