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ThHog1 controls the hyperosmotic stress response in Trichoderma harzianum

机译:Thoh1控制Trichoderma Harzianum中的高骨肉压力反应

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Trichoderma harzianum is a widespread mycoparasitic fungus, able to successfully colonize a wide range of substrates under different environmental conditions. Transcript profiling revealed a subset of genes induced in T. harzianum under hyperosmotic shock. The hog1 gene, a homologue of the MAPK HOG1 gene that controls the hyperosmotic stress response in Saccharomyces cerevisiae, was characterized. T. harzianum hog1 complemented the hog1Δ mutation in S. cerevisiae, but showed different features to yeast alleles: improved osmoresistance by expression of the hog1 allele and a lack of lethality when the hog1F315S allele was overexpressed. ThHog1 protein was phosphorylated in T. harzianum under different stress conditions such as hyperosmotic or oxidative stress, among others. By using a ThHog1-GFP fusion, the protein was shown to be localized in nuclei under these stress conditions. Two mutant strains of T. harzianum were constructed: one carrying the hog1F315S allele, and a knockdown hog1-silenced strain. The silenced strain was highly sensitive to osmotic stress, and showed intermediate levels of resistance against oxidative stress, indicating that the main role of ThHog1 protein is in the hyperosmotic stress response. Stress cross-resistance experiments showed evidences of a secondary role of ThHog1 in oxidative stress. The strain carrying the hog1F315S allele was highly resistant to the calcineurin inhibitor cyclosporin A, which suggests the existence of links between the two pathways. The two mutant strains showed a strongly reduced antagonistic activity against the plant pathogens Phoma betae and Colletotrichum acutatum, which points to a role of ThHog1 protein in fungus–fungus interactions.
机译:Trichoderma harzianum是一种广泛的肌霉菌真菌,能够在不同的环境条件下成功地殖民广泛的基材。转录性分析显示在Hypermotics休克下T. harzianum中诱导的基因子集。猪基因,表征了一种控制酿酒酵母酿酒酵母中的高肉体应激反应的MAPK HOG1基因的同源物。 Harzianum hog1补充了S.酿酒酵母的猪δ突变,但对酵母等位基因显示出不同的特征:通过表达猪的等位基因和缺乏致死性,改善渗透率,当猪胃肠杆菌315s等位基因过表达时缺乏致死性。在不同的应力条件下在诸如氧化剂或氧化应激等不同的应激条件下,Thoh1蛋白在T. harzianum中磷酸化。通过使用ThoG1-GFP融合,显示蛋白质在这些应力条件下在核中定位。构建了两种突变体菌株T. harzianum:一种携带Hog1F315s等位基因的突变株,以及敲低霍格1沉默的菌株。沉默的菌株对渗透胁迫非常敏感,并且显示出抗氧化应激的中间水平,表明Thog1蛋白的主要作用是在高肉体应激反应中。应力交叉电阻实验表明Thoh1在氧化应激中的二次作用的证据。携带HOG1F315S等位基因的菌株对钙碱抑制剂环孢菌素A具有高度抗性,这表明存在两种途径之间的链接。两个突变体菌株表明,对植物病原体Phoma Betae和Colletottrichum Acutatum的强烈拮抗活性,这指向Thog1蛋白在真菌 - 真菌相互作用中的作用。

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