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首页> 外文期刊>PLoS Pathogens >The bZIP Transcription Factor MoAP1 Mediates the Oxidative Stress Response and Is Critical for Pathogenicity of the Rice Blast Fungus Magnaporthe oryzae
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The bZIP Transcription Factor MoAP1 Mediates the Oxidative Stress Response and Is Critical for Pathogenicity of the Rice Blast Fungus Magnaporthe oryzae

机译:bZIP转录因子MoAP1介导氧化应激反应,对稻瘟病菌Magnaporthe oryzae的致病性至关重要

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Saccharomyces cerevisiae Yap1 protein is an AP1-like transcription factor involved in the regulation of the oxidative stress response. An ortholog of Yap1, MoAP1, was recently identified from the rice blast fungus Magnaporthe oryzae genome. We found that MoAP1 is highly expressed in conidia and during invasive hyphal growth. The Moap1 mutant was sensitive to H2O2, similar to S. cerevisiae yap1 mutants, and MoAP1 complemented Yap1 function in resistance to H2O2, albeit partially. The Moap1 mutant also exhibited various defects in aerial hyphal growth, mycelial branching, conidia formation, the production of extracellular peroxidases and laccases, and melanin pigmentation. Consequently, the Moap1 mutant was unable to infect the host plant. The MoAP1-eGFP fusion protein is localized inside the nucleus upon exposure to H2O2, suggesting that MoAP1 also functions as a redox sensor. Moreover, through RNA sequence analysis, many MoAP1-regulated genes were identified, including several novel ones that were also involved in pathogenicity. Disruption of respective MGG_01662 (MoAAT) and MGG_02531 (encoding hypothetical protein) genes did not result in any detectable changes in conidial germination and appressorium formation but reduced pathogenicity, whereas the mutant strains of MGG_01230 (MoSSADH) and MGG_15157 (MoACT) showed marketed reductions in aerial hyphal growth, mycelial branching, and loss of conidiation as well as pathogenicity, similar to the Moap1 mutant. Taken together, our studies identify MoAP1 as a positive transcription factor that regulates transcriptions of MGG_01662, MGG_02531, MGG_01230, and MGG_15157 that are important in the growth, development, and pathogenicity of M. oryzae.
机译:酿酒酵母Yap1蛋白是一种AP1样转录因子,参与氧化应激反应的调节。最近从稻瘟病菌Magnaporthe oryzae基因组中鉴定出Yap1的直系同源基因MoAP1。我们发现MoAP1在分生孢子和侵入性菌丝生长过程中高度表达。 Moap1突变体对H2O2敏感,类似于酿酒酵母yap1突变体,并且MoAP1补充了Yap1对H2O2的抗性功能,尽管有一部分。 Moap1突变体在气生菌丝生长,菌丝体分支,分生孢子形成,细胞外过氧化物酶和漆酶的产生以及黑色素色素沉着方面也表现出各种缺陷。因此,Moap1突变体无法感染宿主植物。当暴露于H2O2时,MoAP1-eGFP融合蛋白位于细胞核内,这表明MoAP1还充当氧化还原传感器。此外,通过RNA序列分析,鉴定了许多MoAP1调控的基因,包括一些也与致病性有关的新基因。各自的MGG_01662(MoAAT)和MGG_02531(编码假设蛋白)基因的破坏并未导致分生孢子萌发和and的形成发生任何可检测的变化,但降低了致病性,而MGG_01230(MoSSADH)和MGG_15157(MoACT)的突变株显示出市场上的减少空中菌丝生长,菌丝体分支,分生孢子丢失以及致病性,类似于Moap1突变体。综上所述,我们的研究确定MoAP1为正转录因子,可调节MGG_01662,MGG_02531,MGG_01230和MGG_15157的转录,这在米曲霉的生长,发育和致病性中很重要。

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