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首页> 外文期刊>Microbiology >MaHog1, a Hog1-type mitogen-activated protein kinase gene, contributes to stress tolerance and virulence of the entomopathogenic fungus Metarhizium acridum
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MaHog1, a Hog1-type mitogen-activated protein kinase gene, contributes to stress tolerance and virulence of the entomopathogenic fungus Metarhizium acridum

机译:Mahog1,一种猪型丝裂原激活的蛋白激酶基因,有助于应力耐受性和昆虫致病真菌患者的毒力

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Fungal biocontrol agents have great potential in integrated pest management. However, poor efficacy and sensitivity to various adverse factors have hampered their wide application. In eukaryotic cells, Hog1 kinase plays a critical role in stress responses. In this study, MaHog1 (GenBank accession no. EFY85878), encoding a member of the Hog1/Sty1/p38 mitogen-activated protein kinase family in Metarhizium (Me.) acridum, was identified. Targeted gene disruption was used to analyse the role of MaHog1 in virulence and tolerance of adverse factors. Mutants with MaHog1 depletion showed increased sensitivity to high osmotic stress, high temperature and oxidative stress, and exhibited remarkable resistance to cell wall-disturbing agents. These results suggest that Hog1 kinase has a conserved function in regulating multistress responses among fungi, and that MaHog1 might influence cell wall biogenesis in Me. acridum. Bioassays conducted with topical inoculation and intrahaemocoel injection revealed that MaHog1 is required for both penetration and postpenetration development of Me. acridum. MaHog1 disruption resulted in a significant reduction in virulence, likely due to the combination of a decrease in conidial germination, a reduction in appressorium formation and a decline in growth rate in insect haemolymph, which might be caused by impairing fungal tolerance of various stresses during infection.
机译:真菌生物管制代理商在综合虫害管理方面具有巨大潜力。然而,对各种不利因素的疗效和敏感性差都阻碍了他们广泛的应用。在真核细胞中,HOG1激酶在应力反应中起着关键作用。在这项研究中,鉴定了Mahog1(GenBank登录号EFY85878),鉴定了在Metarhizium(Me。)Acridum中的Hog1 / STY1 / P38丝裂剂激活蛋白激酶系列的成员。靶向基因破坏用于分析MAHOG1在毒力和不良因素的耐受性和耐受性的作用。 Mahog1耗竭的突变体显示出对高渗透应激,高温和氧化应激的敏感性增加,并且表现出对细胞壁扰动剂的显着抗性。这些结果表明,Hog1激酶在调节真菌之间的多级反应方面具有保守功能,并且玛哈1可能影响我的细胞壁生物生物。 Acridum。用局部接种和内气凝胶注射进行的生物测定显示,术语渗透和后期发育需要Mahog1。 Acridum。 Mahog1破坏导致毒力显着降低,可能是由于分析萌发的减少的组合,植入植物的减少和昆虫血小麦生长速率下降,这可能是由于在感染期间损害各种应力的真菌耐受性而导致。

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