首页> 外文OA文献 >Spätzle Homolog-Mediated Toll-Like Pathway Regulates Innate Immune Responses to Maintain the Homeostasis of Gut Microbiota in the Red Palm Weevil, Rhynchophorus ferrugineus Olivier (Coleoptera: Dryophthoridae)
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Spätzle Homolog-Mediated Toll-Like Pathway Regulates Innate Immune Responses to Maintain the Homeostasis of Gut Microbiota in the Red Palm Weevil, Rhynchophorus ferrugineus Olivier (Coleoptera: Dryophthoridae)

机译:Spätzlehomolog-介导的收费途径调节先天免疫反应,以维持在红棕榈象的肠道微生物群体的稳态,Rhynchophorus ferrivier(植物共冬期:Drowophthoridae)

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摘要

Spätzle (Spz) is a dimeric ligand that responds to the Gram-positive bacterial or fungal infection by binding Toll receptors to induce the secretion of antimicrobial peptides. However, whether the Toll-like signaling pathway mediates the innate immunity of Rhynchophorus ferrugineus to modulate the homeostasis of gut microbiota has not been determined. In this study, we found that a Spz homolog, RfSpätzle, is a secretory protein comprising a signal peptide and a conservative Spz domain. RT-qPCR analysis revealed that RfSpätzle was significantly induced to be expressed in the fat body and gut by the systemic and oral infection with pathogenic microbes. The expression levels of two antimicrobial peptide genes, RfColeoptericin and RfCecropin, were downregulated significantly by RfSpätzle knockdown, indicating that their secretion is under the regulation of the RfSpätzle-mediated signaling pathway. After being challenged by pathogenic microbes, the cumulative mortality rate of RfSpätzle-silenced individuals was drastically increased as compared to that of the controls. Further analysis indicated that these larvae possessed the diminished antibacterial activity. Moreover, RfSpätzle knockdown altered the relative abundance of gut bacteria at the phylum and family levels. Taken together, these findings suggest that RfSpätzle is involved in RPW immunity to confer protection and maintain the homeostasis of gut microbiota by mediating the production of antimicrobial peptides.
机译:Spätzle(SPZ)是一种二聚体配体,可通过结合沟槽受体响应革兰氏阳性细菌或真菌感染,以诱导抗微生物肽的分泌。然而,无论是如何均衡的信号传导途径介导Rhynchophorus Ferrugineus的先天免疫以调节肠道微生物肿瘤的稳态尚未确定。在这项研究中,我们发现SPZ同源物RFSpätzle是一种分泌蛋白,包含信号肽和保守的SPZ结构域。 RT-QPCR分析显示,通过致病微生物的全身和口服感染,rfspätzle显着诱导在脂肪体和肠道中表达。通过RFSpätzle敲低表示,两种抗菌肽基因,RFColeoptericin和RfCropin的表达水平显着下调,表明它们的分泌处于调节RFSPätzle介导的信号通路。在致病微生物挑战后,与对照组相比,RFSpätzle-沉默的个体的累积死亡率大幅增加。进一步的分析表明,这些幼虫具有减少的抗菌活性。此外,RFSPÄTZLE敲低改变了门和家庭水平的肠道细菌的相对丰度。这些研究结果表明,RFSpätzle参与RPW免疫力以通过调解抗微生物肽的生产来赋予保护和维持肠道微生物群的稳态。

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