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Candidate pheromone receptors of codling moth Cydia pomonella respond to pheromones and kairomones

机译:mo蛾Cydia pomonella的候选信息素受体对信息素和海洛酮有反应

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摘要

Olfaction plays a dominant role in the mate-finding and host selection behaviours of the codling moth (Cydia pomonella), an important pest of apple, pear and walnut orchards worldwide. Antennal transcriptome analysis revealed a number of abundantly expressed genes related to the moth olfactory system, including those encoding the olfactory receptors (ORs) CpomOR1, CpomOR3 and CpomOR6a, which belong to the pheromone receptor (PR) lineage, and the co-receptor (CpomOrco). Using heterologous expression, in both Drosophila olfactory sensory neurones and in human embryonic kidney cells, together with electrophysiological recordings and calcium imaging, we characterize the basic physiological and pharmacological properties of these receptors and demonstrate that they form functional ionotropic receptor channels. Both the homomeric CpomOrco and heteromeric CpomOrco + OR complexes can be activated by the common Orco agonists VUAA1 and VUAA3, as well as inhibited by the common Orco antagonists amiloride derivatives. CpomOR3 responds to the plant volatile compound pear ester ethyl-(E,Z)-2,4-decadienoate, while CpomOR6a responds to the strong pheromone antagonist codlemone acetate (E,E)-8,10-dodecadien-1-yl acetate. These findings represent important breakthroughs in the deorphanization of codling moth pheromone receptors, as well as more broadly into insect ecology and evolution and, consequently, for the development of sustainable pest control strategies based on manipulating chemosensory communication.
机译:嗅觉在co蛾(Cydia pomonella)的寻偶和寄主选择行为中起着主导作用,,蛾是全世界苹果,梨和核桃果园的重要害虫。触媒转录组分析揭示了许多与蛾嗅觉系统相关的高表达基因,包括编码嗅觉受体(OR)CpomOR1,CpomOR3和CpomOR6a(属于信息素受体(PR)谱系)和共受体(CpomOrco)的基因。 )。使用异源表达,在果蝇嗅觉感觉神经元和人类胚胎肾细胞中,连同电生理记录和钙成像,我们表征了这些受体的基本生理和药理特性,并证明它们形成功能性离子受体通道。同源的CpomOrco和异源的CpomOrco +或OR复合物都可以被普通的Orco激动剂VUAA1和VUAA3激活,也可以被普通的Orco拮抗剂阿米洛利衍生物抑制。 CpomOR3响应植物挥发性化合物梨酸酯乙酯-((E,Z)-2,4-癸二烯酸乙酯),而CpomOR6a响应强信息素拮抗剂醋酸Codlemone(E,E)-8,10-十二碳烯基-1-基乙酸酯。这些发现代表了对苹果蛾蛾信息素受体的去孤儿化的重要突破,以及更广泛的昆虫生态学和进化研究的突破,因此,对于基于操纵化学感应通信的可持续虫害控制策略的发展也具有重大意义。

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