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A Rho3 Homolog Is Essential for Appressorium Development and Pathogenicity of Magnaporthe grisea

机译:Rho3同源物是稻瘟病菌生长和致病性必不可少的。

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The small GTPase Rho3 is conserved in fungi and plays a key role in the control of cell polarity and exocytosis in yeast. In this report, we show that a Rho3 homolog, MgRho3, is dispensable for polarized hyphal growth in the rice blast fungus Magnaporthe grisea. However, MgRho3 is required for plant infection. Appressoria formed by the Mgrho3 deletion mutants are morphologically abnormal and defective in plant penetration. Conidia of the Mgrho3 deletion mutants are narrower than those of the wild-type strain and delayed in germination. Transformants expressing a dominant negative Mgrho3 allele exhibit similar phenotypes as the Mgrho3 deletion mutant, while transformants expressing a constitutively active allele of MgRho3 can produce normal conidia but remain defective in appressorium formation and plant infection. In contrast, overexpression of wild-type MgRho3 increases the infectivity of M. grisea. Our results reveal a new role for the conserved Rho3 as a critical regulator of developmental processes and pathogenicity of M. grisea.
机译:小的GTPase Rho3在真菌中是保守的,并且在控制酵母细胞的极性和胞吐作用中起关键作用。在这份报告中,我们显示了Rho3同源物MgRho3对于稻瘟病菌 Magnaporthe grisea 中的极化菌丝生长是必不可少的。但是,MgRho3是植物感染所必需的。由Mg rho3 缺失突变体形成的Appressoria在形态上异常且在植物渗透方面存在缺陷。 Mg rho3 缺失突变体的分生孢子比野生型菌株的分生孢子窄,发芽延迟。表达显性阴性Mg rho3 等位基因的转化子表现出与Mg rho3 缺失突变体相似的表型,而表达Mg Rho3 的组成型活性等位基因的转化子可以产生正常的分生孢子,但在ress的形成和植物感染方面仍然存在缺陷。相反,野生型Mg Rho3 的过表达增加了 M的传染性。糟糕。我们的结果揭示了保守的Rho3作为 M的发育过程和致病性的关键调节剂的新作用。糟糕

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