首页> 外文期刊>Developmental and Comparative Immunology: Ontogeny, Phylogeny, Aging: The Official Journal of the International Society of Developmental and Comparative Immunology >Locust can detect beta-1, 3-glucan of the fungal pathogen before penetration and defend infection via the Toll signaling pathway
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Locust can detect beta-1, 3-glucan of the fungal pathogen before penetration and defend infection via the Toll signaling pathway

机译:蝗虫可以在通过收费信号通路渗透和防止感染之前检测真菌病原体的β-1,3-葡聚糖

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The timing and mechanism by which a host insect initiates an immune response are critical to successful defense against infection. Pathogen recognition, a prerequisite for host defense, has long been recognized to take place during the insect epidermis invasion by fungus. Here we report that insect can sense the fungal pathogen before host cuticle is penetrated by fungus. We discovered the upstream pattern recognition receptor (PRR) genes of the Toll pathway were upregulated in both the integument and fat body early during fungal germination on the epicuticle of Locusta migratoria manilensis. The Toll signaling pathway was strongly activated in the fat body at the penetration stage. RNAi of Myd88 increased the susceptibility of locusts to fungal infection, but that of Cactus showed the opposite effect. In addition, beta-1, 3-glucan (laminarin), the main component of the cell wall of the pathogenic fungus Metarhizium acridum, was capable of activating the Toll signaling pathway (Spaetzle and Cactus) when it was applied on the host cuticle. These results demonstrate that host epidemis can effectively defend fungal infection by detecting beta-1, 3-glucan on the fungal cell wall and activate the Toll signaling pathway even before fungal penetration.
机译:宿主昆虫引发免疫反应的时间和机制对于对感染的成功防御至关重要。病原体识别是宿主防御的先决条件,长期以来已经认识到在真菌的昆虫表皮侵袭期间发生。在这里,我们报告说,昆虫可以在真菌穿透宿主角质之前感测真菌病原体。我们发现在洛斯塔·莫格兰群岛骨膜症的真菌萌发期间,在内脏和脂肪体内上调损害途径的上游模式识别受体(PRR)基因。在渗透阶段的脂肪体中强烈地激活了收费信号通路。 MyD88的RNAi增加了蝗虫对真菌感染的易感性,但仙人掌的疗效表现出相反的效果。另外,β1,3-葡聚糖(层状葡聚糖),致病性真菌性嗜睡症的细胞壁的主要成分,当其在宿主角质层上施加时,能够激活收费信号通路(Spaetzle和仙人掌)。这些结果表明,宿主曲肿可以通过检测真菌细胞壁上的β-1,3-葡聚糖来有效地防御真菌感染,并使甚至在真菌渗透前均匀激活收费信号通路。

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