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首页> 外文期刊>Frontiers in Microbiology >The Pmt2p-Mediated Protein O-Mannosylation Is Required for Morphogenesis, Adhesive Properties, Cell Wall Integrity and Full Virulence of Magnaporthe oryzae
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The Pmt2p-Mediated Protein O-Mannosylation Is Required for Morphogenesis, Adhesive Properties, Cell Wall Integrity and Full Virulence of Magnaporthe oryzae

机译:PMT2P介导的蛋白质<斜斜体> O -Manylation是<斜视> Magnaporthe Oryzae 的形态发生,粘接性能,细胞壁完整性和完全毒力所必需的

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摘要

Protein O -mannosylation is a type of O -glycosylation that is characterized by the addition of mannose residues to target proteins, and is initially catalyzed by evolutionarily conserved protein O -mannosyltransferases (PMTs). In this study, three members of PMT were identified in Magnaporthe oryzae , and the pathogenic roles of MoPmt2, a member of PMT2 subfamily, were analyzed. We found that MoPmt2 is a homolog of Saccharomyces cerevisiae Pmt2 and could complement yeast Pmt2 function in resistance to CFW. Quantitative RT–PCR revealed that MoPmt2 is highly expressed during conidiation, and targeted disruption of MoPmt2 resulted in defects in conidiation and conidia morphology. The MoPmt2 mutants also showed a distinct reduction in fungal growth, which was associated with severe alterations in hyphal polarity. In addition, we found that the MoPmt2 mutants severely reduced virulence on both rice plants and barley leaves. The subsequent examination revealed that the fungal adhesion, conidial germination, CWI and invasive hyphae growth in host cells are responsible for defects on appressorium mediated penetration, and thus attenuated the pathogenicity of MoPmt2 mutants. Taken together, our results suggest that protein O -mannosyltransferase MoPmt2 plays essential roles in fungal growth and development, and is required for the full pathogenicity of M. oryzae .
机译:蛋白质o-甲溶蛋白溶胶是一种o-glycosylation,其特征在于将甘露糖残基添加到靶蛋白,并且最初通过进化保守的蛋白质o-甲基转移酶(pmts)催化。在这项研究中,分析了Magnaporthe Oryzae中的三个PMT成员,分析了MOPMT2,PMT2亚家族成员的致病作用。我们发现MOPMT2是酿酒酵母PMT2的同源物,并且可以补充酵母PMT2在抗CFW的抗性上。定量RT-PCR显示,在结合期间高度表达MOPMT2,靶向破碎的MOPMT2导致分析和分析形态的缺陷导致缺陷。 MOPMT2突变体还表现出真菌生长的明显降低,其与悬垂极性的严重改变有关。此外,我们发现MOPMT2突变体在两种植物和大麦叶上严重减少了毒力。随后的检查表明,宿主细胞的真菌粘附,分析萌发,CWI和侵袭性菌丝生长是对孕膜介导的渗透的缺陷,从而减弱了MOPMT2突变体的致病性。我们的结果表明,蛋白质O-曼乳蛋白转移酶MOPMT2在真菌生长和发育中起着重要作用,并且是M. Oryzae的全部致病性所必需的。

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