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首页> 外文期刊>Environmental microbiology >MAPK cascade-mediated regulation of pathogenicity, conidiation and tolerance to abiotic stresses in the entomopathogenic fungus Metarhizium robertsii
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MAPK cascade-mediated regulation of pathogenicity, conidiation and tolerance to abiotic stresses in the entomopathogenic fungus Metarhizium robertsii

机译:MAPK级联介导的致病性真菌罗氏沼虾的非生物胁迫的致病性,灭绝和耐受性调控。

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Metarhizium robertsii has been used as a model to study fungal pathogenesis in insects, and its pathogenicity has many parallels with plant and mammal pathogenic fungi. MAPK (Mitogen-activated protein kinase) cascades play pivotal roles in cellular regulation in fungi, but their functions have not been characterized in M.robertsii. In this study, we identified the full complement of MAPK cascade components in M.robertsii and dissected their regulatory roles in pathogenesis, conidiation and stress tolerance. The nine components of the Fus3, Hog1 and Slt2-MAPK cascades are all involved in conidiation. The Fus3- and Hog1-MAPK cascades are necessary for tolerance to hyperosmotic stress, and the Slt2- and Fus3-MAPK cascades both mediate cell wall integrity. The Hog1 and Slt2-MAPK cascades contribute to pathogenicity; the Fus3-MAPK cascade is indispensable for fungal pathogenesis. During its life cycle, M.robertsii experiences multiple microenvironments as it transverses the cuticle into the haemocoel. RNA-seq analysis revealed that MAPK cascades collectively play a major role in regulating the adaptation of M.robertsii to the microenvironmental change from the cuticle to the haemolymph. The three MAPKs each regulate their own distinctive subset of genes during penetration of the cuticle and haemocoel colonization, but they function redundantly to regulate adaptation to microenvironmental change.
机译:罗伯氏金属被用作研究昆虫真菌发病机理的模型,其致病性与植物和哺乳动物的致病真菌有许多相似之处。 MAPK(丝裂原激活的蛋白激酶)级联在真菌的细胞调节中起关键作用,但其功能尚未在罗伯茨氏菌中表征。在这项研究中,我们确定了罗氏沼虾中MAPK级联成分的完整互补,并剖析了它们在发病机理,分生和应激耐受性中的调控作用。 Fus3,Hog1和Slt2-MAPK级联反应的9个成分均与分生有关。 Fus3-和Hog1-MAPK级联对于高渗胁迫的耐受性是必需的,而Slt2-和Fus3-MAPK级联均介导细胞壁的完整性。 Hog1和Slt2-MAPK级联有助于致病。 Fus3-MAPK级联对于真菌发病机理是必不可少的。在其生命周期中,罗伯特氏菌经历了多个微环境,因为它横穿了角质层进入血细胞。 RNA-seq分析显示,MAPK级联在调节罗氏沼虾对表皮到血淋巴的微环境变化的适应中起着主要作用。这三个MAPK在角质层的渗透和血细胞定居过程中各自调节自己独特的基因子集,但是它们冗余地发挥作用来调节对微环境变化的适应。

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