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戊胺抑制人类和植物病原体昆虫媒介的湿度检测。

Pentylamine inhibits humidity detection in insect vectors of human and plant borne pathogens.

机构信息

Department of Molecular, Cell and Systems Biology, University of California Riverside, Riverside, CA, 92521, USA.

Interdepartmental Neuroscience Program, University of California Riverside, Riverside, CA, 92521, USA.

出版信息

Sci Rep. 2022 Oct 6;12(1):16732. doi: 10.1038/s41598-022-20488-x.

Abstract

Insects house humidity-sensing neurons in the antenna, which is presumed to be important for a variety of behaviors and survival since water is a crucial component of the environment. Here we use the simple olfactory system of the Asian Citrus Psyllid (ACP), a citrus pest that transmits a deadly bacterium, to identify volatile amines that significantly inhibited humidity-induced activation of antennal neurons. The inhibition of action potentials is observed by single sensillum recordings and mixing these odorants with humid air abolished the humidity avoidance behavior of ACP. The inhibition is conserved in the humidity-sensing coeloconic neurons of dipteran Drosophila melanogaster that are known to detect humidity, but it is not seen in other coeloconic neurons that are not sensitive to humidity. Dipteran mosquitoes Aedes aegypti and Anopheles gambiae oviposit in water, and the addition of the humidity-inhibiting odorants in a two-choice oviposition assay significantly reduces oviposition. Our results demonstrate that a naturally occurring volatile compound can effectively "mask" detection of an important environmental cue and modify behavior of important vectors of plant and human disease pathogens. Odorants targeting the conserved humidity sensing system of insects, therefore, offer a novel strategy for modifying their behavior.

摘要

昆虫在触角中感知湿度的神经元,这对于各种行为和生存是很重要的,因为水是环境的重要组成部分。在这里,我们利用亚洲柑橘木虱(ACP)的简单嗅觉系统,这是一种传播致命细菌的柑橘害虫,来识别出显著抑制触角神经元对湿度感应的挥发性胺类物质。通过单感器记录可以观察到动作电位的抑制,并且将这些气味与潮湿空气混合会消除 ACP 对湿度的回避行为。这种抑制作用在已知能够检测湿度的双翅目果蝇的湿度感应共感觉神经元中是保守的,但在其他对湿度不敏感的共感觉神经元中则没有观察到。双翅目蚊子埃及伊蚊和冈比亚按蚊在水中产卵,在二选一的产卵试验中添加抑制湿度的气味剂会显著减少产卵。我们的结果表明,一种天然存在的挥发性化合物可以有效地“掩盖”对重要环境线索的检测,并改变重要植物和人类疾病病原体传播媒介的行为。因此,针对昆虫保守湿度感应系统的气味剂为改变它们的行为提供了一种新策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/da1f/9537525/705566001b33/41598_2022_20488_Fig1_HTML.jpg

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