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首页> 外文期刊>Molecular Plant-Microbe Interactions >Characterization of MoLDB1 Required for Vegetative Growth, Infection-Related Morphogenesis, and Pathogenicity in the Rice Blast Fungus Magnaporthe oryzae
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Characterization of MoLDB1 Required for Vegetative Growth, Infection-Related Morphogenesis, and Pathogenicity in the Rice Blast Fungus Magnaporthe oryzae

机译:稻瘟病菌Magnaporthe oryzae营养生长,感染相关形态发生和致病性所需的MoLDB1的表征

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摘要

An insertional mutagenesis screen in the rice blast fungus, Magnaporthe oryzae, identified a novel mutant, A2-12-3, which is defective in infection-related morphogenesis and pathogenicity. Analysis of the mutation confirmed an insertion into MoLDB1, which putatively encodes an 806-amino-acid protein with a predicted LIM binding domain. Targeted gene deletion mutants of MoLDB1 were unable to produce asexual or sexual spores and were significantly impaired in vegetative growth and fungal virulence. The Delta moldbl mutants also showed reduced expression of genes coding hydrophobic proteins (e.g. MPG1 and MHP1), resulting in an easily wettable phenotype in vegetative culture. Moreover, the expression of four genes encoding LIM proteins predicted from the M. oryzae genome was significantly downregulated by deletion of MoLDB1. Analysis of an M. oryzae strain expressing a MoLbd1-green fluorescent protein gene fusion was consistent with the protein being nuclear localized. When considered together, MoLdb1 appears to be involved in regulation of cell wall proteins, including hydrophobins and LIM proteins, and is essential for conidiation, sexual development, appressorium formation, and pathogenicity in M. oryzae.
机译:在稻瘟病菌米格霉菌(Magnaporthe oryzae)中的插入诱变筛选确定了一种新型突变体A2-12-3,该突变体在与感染相关的形态发生和致病性方面存在缺陷。对突变的分析证实了插入MoLDB1的可能性,该MoLDB1可能编码具有预测的LIM结合结构域的806个氨基酸的蛋白质。 MoLDB1的靶向基因缺失突变体无法产生无性或有性孢子,并且营养生长和真菌毒力显着受损。 Delta mobl1突变体还显示出编码疏水蛋白(例如MPG1和MHP1)的基因表达降低,从而在营养培养中产生易于润湿的表型。此外,从M. oryzae基因组预测的编码LIM蛋白的四个基因的表达被MoLDB1的缺失显着下调。表达MoLbd1-绿色荧光蛋白基因融合蛋白的米曲霉菌株的分析与该蛋白被核定位一致。一起考虑时,MoLdb1似乎参与细胞壁蛋白(包括疏水蛋白和LIM蛋白)的调节,并且对于米糠分生孢子的分生,性发育,app形成和致病性至关重要。

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