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昆虫寄生线虫斯氏线虫对其宿主红棕榈象 Rhynchophorus ferrugineus 释放的信号的行为和分子反应。

Behavioral and molecular response of the insect parasitic nematode Steinernema carpocapsae to cues emitted by a host, the red palm weevil, Rhynchophorus ferrugineus.

机构信息

Department of Entomology and Nematology, Institute of Plant Protection, Agricultural Research Organization (ARO), The Volcani Center, Rishon Le Zion, Israel.

Department of Entomology and Nematology, Institute of Plant Protection, Agricultural Research Organization (ARO), The Volcani Center, Rishon Le Zion, Israel.

出版信息

Mol Biochem Parasitol. 2021 Jan;241:111345. doi: 10.1016/j.molbiopara.2020.111345. Epub 2020 Dec 5.

Abstract

As the larvae of the date palm pest, the red palm weevil, Rhynchophorus ferrugineus, feeds on the host tissue, they emit a distinctive sound which can be recorded outside of the infected tree. We evaluated the response of infective juveniles (IJs) of the entomopathogenic nematodes Steinernema carpocapsae to the R. ferrugineus larvae and it's sound source, separately. In the presence of the insect larvae, 50.2 % of total IJs moved toward those larvae. Recorded insect larvae sound emitted by the speaker resulted in 7% of total IJs near the sound source. RNA-Seq data indicated that more genes were downregulated in S. carpocapsae IJs exposed to insect and speaker compared to non-stimulated IJs. IJs exposed to insect exhibited more up-regulated genes than IJs exposed to speaker. Enriched pathways and biological processes in IJs were similar for both stimuli. The inhibition of locomotion, regulation of neurotransmitter secretion, response to biotic stimulus, and cellular response to chemical stimuli were enriched with unique GO terms for speaker treatment. The regulation of localization, sodium ion transmembrane transport, regulation of response to stress and response to organic substances were the GO categories enriched unique to insect. The host-parasitic interaction was regulated by the differential expression of Ras/MAP kinase, TGF-beta signaling, insulin signaling, AMPK signaling, PPAR signaling pathways and many developmental pathways. More prominent R. ferrugineus host localization by S. carpocapsae was primarily due to the differential transcriptional regulation of olfactory signal transduction, FOXO-family proteins, calcium signaling, WNT and mTOR signaling pathway. The neural basis for the nematode attraction to insect host is based on the chemosensation and the mechanosensation. Many neuropeptides and neuromodulators are involved in regulating the foraging behavior of S. carpocapsae. The results of this study provide new insights into the molecular mechanisms that allow these nematodes to seek insect hosts. Our finding, especially the molecular ones suggest that chemical cues emitted by the active insect host are stimulants of nematodes attraction. Whereas the sound emitted by the insect has minor effects on the nematode behavior.

摘要

作为棕榈科害虫红棕象甲的幼虫,红棕象甲幼虫以宿主组织为食时会发出独特的声音,这种声音可以在感染树外被记录下来。我们评估了昆虫病原线虫斯氏线虫对感染性幼虫(IJs)对红棕象甲幼虫及其声源的反应,分别进行了评估。在存在昆虫幼虫的情况下,有 50.2%的总 IJ 向那些幼虫移动。扬声器发出的昆虫幼虫声音导致靠近声源的总 IJ 数量增加了 7%。RNA-Seq 数据表明,与未受刺激的 IJ 相比,暴露于昆虫和扬声器的斯氏线虫 IJ 中更多的基因下调。与暴露于扬声器的 IJ 相比,暴露于昆虫的 IJ 中更多的基因上调。两种刺激下 IJ 中富集的途径和生物过程相似。对于扬声器处理,独特的 GO 术语富集了运动抑制、神经递质分泌调节、生物刺激反应和细胞对化学刺激的反应等途径和过程。定位调节、钠离子跨膜转运调节、应激反应调节和有机物质反应调节是仅在昆虫中富集的 GO 类别。宿主-寄生虫相互作用受到 Ras/MAP 激酶、TGF-β 信号、胰岛素信号、AMPK 信号、PPAR 信号通路和许多发育途径的差异表达调节。斯氏线虫对红棕象甲的宿主定位更为明显,主要是由于嗅觉信号转导、FOXO 家族蛋白、钙信号、WNT 和 mTOR 信号通路的转录调控差异。线虫对昆虫宿主的吸引力的神经基础基于化学感觉和机械感觉。许多神经肽和神经调质参与调节斯氏线虫的觅食行为。这项研究的结果提供了对允许这些线虫寻找昆虫宿主的分子机制的新见解。我们的发现,尤其是分子发现表明,活跃的昆虫宿主发出的化学线索是线虫吸引力的刺激物。而昆虫发出的声音对线虫行为的影响较小。

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