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薄荷醇的驱避作用是由红粉甲虫 Tribolium castaneum 中的 TRPM 通道介导的。

Contact repellency by l-menthol is mediated by TRPM channels in the red flour beetle Tribolium castaneum.

机构信息

Department of Chemistry for Life Sciences and Agriculture, Tokyo University of Agriculture, Tokyo, Japan.

Department of Bioscience, Tokyo University of Agriculture, Tokyo, Japan.

出版信息

Pest Manag Sci. 2021 Mar;77(3):1422-1427. doi: 10.1002/ps.6160. Epub 2020 Nov 16.

Abstract

BACKGROUND

Among insects, beetles are one of the most destructive pests of agricultural and stored products. Researchers have been investigating alternatives to pesticides for more sustainable pest management. Here, we focused on insect transient receptor potential (TRP) channel-targeted repellency. Among transient receptor potential melastatin (TRPM) channels, mammalian TRPM8 is activated by menthol and its derivatives, but few previous studies have reported on whether the insect TRPM channel is activated by chemical compounds. Here, we investigated whether the TRPM channel (TcTRPM) of the red flour beetle Tribolium castaneum (Herbst), a major stored-products pest, mediated the repellent behavior of l-menthol and its derivatives.

RESULTS

We initially investigated the repellent activity of l-menthol and menthoxypropanediol (MPD) against T. castaneum. The laboratory bioassay revealed that the repellent activities of l-menthol and MPD were dose dependent. RNA interference was used for transcriptional knockdown of TcTRPM and revealed that a reduced transcript level resulted in a significant decrease in l-menthol and MPD repellent activities. However, no significant decrease was observed for N,N-diethyl-3-methylbenzamide (DEET) repellency. The most abundant TcTRPM transcripts were observed in the antennae. However, antennae-plucked beetles maintained their repellent behavior with l-menthol.

CONCLUSION

The repellent activities of l-menthol and MPD for T. castaneum are mediated by TcTRPM, and it was suggested that the olfactory response is not adequate for avoidance, but that contact repellency might be a more important repellant method. © 2020 Society of Chemical Industry.

摘要

背景

在昆虫中,甲虫是农业和储存产品中最具破坏性的害虫之一。研究人员一直在研究替代农药的方法,以实现更可持续的害虫管理。在这里,我们专注于昆虫瞬时受体电位(TRP)通道靶向驱避性。在瞬时受体电位 melastatin(TRPM)通道中,哺乳动物 TRPM8 被薄荷醇及其衍生物激活,但以前很少有研究报道昆虫 TRPM 通道是否被化学化合物激活。在这里,我们研究了是否红粉甲虫 Tribolium castaneum(赫布斯特)的 TRPM 通道(TcTRPM),一种主要的储存产品害虫,介导了薄荷醇及其衍生物的驱避行为。

结果

我们最初研究了 l-薄荷醇和薄荷氧基丙二醇(MPD)对 T. castaneum 的驱避活性。实验室生物测定表明,l-薄荷醇和 MPD 的驱避活性呈剂量依赖性。RNA 干扰用于转录敲低 TcTRPM,并显示转录水平降低导致 l-薄荷醇和 MPD 驱避活性显著降低。然而,N,N-二乙基-3-甲基苯甲酰胺(DEET)驱避活性没有明显下降。在触角中观察到最丰富的 TcTRPM 转录物。然而,触角被剪掉的甲虫仍然对 l-薄荷醇保持驱避行为。

结论

l-薄荷醇和 MPD 对 T. castaneum 的驱避活性是由 TcTRPM 介导的,并且表明嗅觉反应不足以避免,但接触驱避可能是一种更重要的驱避方法。© 2020 化学工业协会。

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