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昆虫气味受体共同受体亚基的一种空气传播拮抗剂对昆虫嗅觉行为的抑制作用

Inhibition of insect olfactory behavior by an airborne antagonist of the insect odorant receptor co-receptor subunit.

作者信息

Kepchia Devin, Moliver Scott, Chohan Kunal, Phillips Cameron, Luetje Charles W

机构信息

Department of Molecular and Cellular Pharmacology, University of Miami Miller School of Medicine, Miami, Florida, United States of America.

出版信息

PLoS One. 2017 May 31;12(5):e0177454. doi: 10.1371/journal.pone.0177454. eCollection 2017.

Abstract

Response to volatile environmental chemosensory cues is essential for insect survival. The odorant receptor (OR) family is an important class of receptors that detects volatile molecules; guiding insects towards food, mates, and oviposition sites. ORs are odorant-gated ion channels, consisting of a variable odorant specificity subunit and a conserved odorant receptor co-receptor (Orco) subunit, in an unknown stoichiometry. The Orco subunit possesses an allosteric site to which modulators can bind and noncompetitively inhibit odorant activation of ORs. In this study, we characterized several halogen-substituted versions of a phenylthiophenecarboxamide Orco antagonist structure. Orco antagonist activity was assessed on ORs from Drosophila melanogaster flies and Culex quinquefasciatus mosquitoes, expressed in Xenopus laevis oocytes and assayed by two-electrode voltage clamp electrophysiology. One compound, OX1w, was also shown to inhibit odorant activation of a panel of Anopheles gambiae mosquito ORs activated by diverse odorants. Next, we asked whether Orco antagonist OX1w could affect insect olfactory behavior. A Drosophila melanogaster larval chemotaxis assay was utilized to address this question. Larvae were robustly attracted to highly diluted ethyl acetate in a closed experimental chamber. Attraction to ethyl acetate was Orco dependent and also required the odorant specificity subunit Or42b. The addition of the airborne Orco antagonist OX1w to the experimental chamber abolished larval chemotaxis towards ethyl acetate. The Orco antagonist was not a general inhibitor of sensory behavior, as behavioral repulsion from a light source was unaffected. This is the first demonstration that an airborne Orco antagonist can alter olfactory behavior in an insect. These results suggest a new approach to insect control and emphasize the need to develop more potent Orco antagonists.

摘要

对挥发性环境化学感应线索的反应对昆虫生存至关重要。气味受体(OR)家族是一类重要的受体,可检测挥发性分子,引导昆虫找到食物、配偶和产卵地点。OR是气味门控离子通道,由一个具有可变气味特异性的亚基和一个保守的气味受体共受体(Orco)亚基组成,其化学计量未知。Orco亚基拥有一个变构位点,调节剂可与之结合并非竞争性抑制OR的气味激活。在本研究中,我们对一种苯基噻吩甲酰胺Orco拮抗剂结构的几种卤素取代变体进行了表征。通过在非洲爪蟾卵母细胞中表达并采用双电极电压钳电生理学方法,评估了Orco拮抗剂对黑腹果蝇和致倦库蚊OR的活性。一种化合物OX1w还被证明可抑制一组由不同气味激活的冈比亚按蚊OR的气味激活。接下来,我们研究了Orco拮抗剂OX1w是否会影响昆虫的嗅觉行为。利用黑腹果蝇幼虫趋化性试验来解决这个问题。在封闭的实验室内,幼虫被高稀释度的乙酸乙酯强烈吸引。对乙酸乙酯的吸引依赖于Orco,也需要气味特异性亚基Or42b。向实验室内添加空气中的Orco拮抗剂OX1w消除了幼虫对乙酸乙酯的趋化性。该Orco拮抗剂不是感觉行为的一般抑制剂,因为对光源的行为排斥不受影响。这是首次证明空气中的Orco拮抗剂可改变昆虫的嗅觉行为。这些结果提示了一种新的昆虫控制方法,并强调了开发更有效Orco拮抗剂的必要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d23b/5451006/f2b565aeb79f/pone.0177454.g001.jpg

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