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TRPA1 介导的赤拟谷盗 Tribolium castaneum 驱避行为。

TRPA1-mediated repellency behavior in the red flour beetle Tribolium castaneum.

机构信息

Department of Chemistry for Life Sciences and Agriculture, Tokyo University of Agriculture, Sakuragaoka 1-1-1, Setagaya-ku, Tokyo, 156-8502, Japan.

出版信息

Sci Rep. 2022 Sep 10;12(1):15270. doi: 10.1038/s41598-022-19580-z.

Abstract

The sensory perception of irritant chemicals results in escape and repellency behavioral patterns in insects. Transient receptor potential channels are cation channels that function as sensor proteins for several types of signals, such as light, sound, temperature, taste, as well as chemical and physical stimuli; among these, the TRPA channel is widely conserved and activated by irritant chemicals. Certain plant-derived essential oils (EOs), produced by secondary metabolism, are mixtures of volatile compounds, which are used as repellents because they contain environmentally sustainable ingredients. Citronellal, which is present in citronella EO from Cymbopogon species, is a potentially viable insect repellent; however, the repellency capability against coleopteran beetles remains limited. We investigated the citronellal-derived repellency behavior for the red flour beetle Tribolium castaneum, in which TcTRPA1 and odorant receptor co-receptor (Orco) expressions were mediated by RNA interference. Area-preference tests showed dose-dependent repellency behavior for citronellal; additionally, both TcTRPA1 and TcOrco double-strand RNA (dsRNA) micro-injection showed clear TcTRPA1 and TcOrco transcript reductions, and only TcTRPA1 dsRNA treatment significantly impaired repellency behavior. The relative expression level of the TcTRPA1 transcripts, evaluated by quantitative reverse-transcription PCR (qRT-PCR), revealed dominant expression in the antennae, indicating the antennae-expressed TcTRPA1-mediated repellency behavior.

摘要

昆虫对刺激性化学物质的感觉感知会导致它们产生逃避和排斥的行为模式。瞬时受体电位通道是阳离子通道,作为传感器蛋白,可感知多种类型的信号,如光、声、温度、味觉以及化学和物理刺激;其中,TRPA 通道广泛存在且可被刺激性化学物质激活。某些植物衍生的精油(EOs)是次生代谢产物的混合物,作为驱避剂使用,因为它们含有可持续的环境成分。香茅醛存在于香茅属植物的香茅油中,是一种潜在可行的昆虫驱避剂;然而,它对鞘翅目甲虫的驱避能力仍然有限。我们研究了香茅醛对赤拟谷盗(Tribolium castaneum)的驱避行为,通过 RNA 干扰介导 TcTRPA1 和气味受体共受体(Orco)的表达。面积偏好测试显示香茅醛具有剂量依赖性的驱避行为;此外,TcTRPA1 和 TcOrco 双链 RNA(dsRNA)微注射均显示出明显的 TcTRPA1 和 TcOrco 转录物减少,只有 TcTRPA1 dsRNA 处理显著损害了驱避行为。通过定量逆转录 PCR(qRT-PCR)评估的 TcTRPA1 转录物的相对表达水平,揭示了触角中的优势表达,表明触角表达的 TcTRPA1 介导的驱避行为。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9ded/9464225/bb84b0795ac7/41598_2022_19580_Fig1_HTML.jpg

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