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细胞外囊泡改变了……中的固有免疫信号传导。 (原文句子不完整)

Extracellular Vesicles Alter the Innate Immune Signaling in .

作者信息

Toubarro Duarte, Kenney Eric, Heryanto Christa, Mallick Sreeradha, Simões Nelson, Eleftherianos Ioannis

机构信息

CBA and Faculty of Sciences and Technology, University of Azores, Rua Mãe de Deus no13, 9500-321 Ponta Delgada, Portugal.

Infection and Innate Immunity Laboratory, Department of Biological Sciences, The George Washington University, Washington, DC 20052, USA.

出版信息

Genes (Basel). 2025 May 22;16(6):613. doi: 10.3390/genes16060613.

Abstract

entomopathogenic nematodes are commonly used in agricultural practices for the biological control of insect pests. These parasites are also used in basic research for unveiling the molecular basis of nematode parasitism in relation to the insect anti-nematode response. We have recently shown that excreted-secreted products reduce the expression of the antimicrobial peptide gene in , which increases fly mortality due to enhanced propagation of the mutualistic bacteria . However, the effect of entomopathogenic nematode extracellular vesicles (EVs) on the insect host defense remains unknown. Here, we injected adult flies with EVs and used quantitative RT-PCR together with gene-specific primers to analyze the activity of immune-related signaling pathways. We found that EVs are lethal to and they downregulate the expression of , and in adult flies. These findings build on previous knowledge and strengthen the notion that entomopathogenic nematodes release a variety of effector molecules to modify the insect's innate immune signaling. This information is important because it contributes toward clarifying the molecular interplay between entomopathogenic nematode components and the host's innate immune system.

摘要

昆虫病原线虫在农业实践中常用于害虫的生物防治。这些寄生虫也用于基础研究,以揭示线虫寄生与昆虫抗线虫反应相关的分子基础。我们最近发现,排泄分泌产物会降低抗菌肽基因在[具体昆虫名称未给出]中的表达,这会因共生细菌的繁殖增强而增加果蝇死亡率。然而,昆虫病原线虫细胞外囊泡(EVs)对昆虫宿主防御的影响仍不清楚。在这里,我们给成年果蝇注射了EVs,并使用定量逆转录聚合酶链反应(qRT-PCR)和基因特异性引物来分析免疫相关信号通路的活性。我们发现,EVs对[具体昆虫名称未给出]具有致死性,并且它们会下调成年果蝇中[具体基因名称未给出]、[具体基因名称未给出]和[具体基因名称未给出]的表达。这些发现基于先前的知识,并强化了昆虫病原线虫释放多种效应分子来改变昆虫先天免疫信号的观点。这一信息很重要,因为它有助于阐明昆虫病原线虫成分与宿主先天免疫系统之间的分子相互作用。

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