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HFB7——木霉哈茨木霉和绿色木霉分支中的一种新型孤儿疏水蛋白,参与对生物和非生物胁迫的响应。

HFB7 - A novel orphan hydrophobin of the Harzianum and Virens clades of Trichoderma, is involved in response to biotic and abiotic stresses.

作者信息

Przylucka Agnes, Akcapinar Gunseli Bayram, Chenthamara Komal, Cai Feng, Grujic Marica, Karpenko Juriy, Livoi Miriam, Shen Qirong, Kubicek Christian P, Druzhinina Irina S

机构信息

Microbiology Group, Research Area Biochemical Technology, Institute of Chemical and Biological Engineering, TU Wien, Vienna, Austria; Austrian Center of Industrial Biotechnology, Graz, Austria.

Microbiology Group, Research Area Biochemical Technology, Institute of Chemical and Biological Engineering, TU Wien, Vienna, Austria.

出版信息

Fungal Genet Biol. 2017 May;102:63-76. doi: 10.1016/j.fgb.2017.01.002. Epub 2017 Jan 13.

Abstract

Hydrophobins are small secreted cysteine-rich proteins exclusively found in fungi. They are able to self-assemble in single molecular layers at hydrophobic-hydrophilic interfaces and can therefore be directly involved in establishment of fungi in their habitat. The genomes of filamentous mycotrophic fungi Trichoderma encode a rich diversity of hydrophobins, which are divided in several groups based on their structure and evolution. Here we describe a new member of class II hydrophobins, HFB7, that has a taxonomically restricted occurrence in Harzianum and Virens clades of Trichoderma. Evolutionary analysis reveals that HFB7 proteins form a separate clade distinct from other Trichoderma class II hydrophobins and that genes encoding them evolve under positive selection pressure. Homology modelling of HFB7 structure in comparison to T. reesei HFB2 reveals that the two large hydrophobic patches on the surface of the protein are remarkably conserved between the two hydrophobins despite significant difference in their primary structures. Expression of hfb7 gene in T. virens increases at interactions with other fungi and a plant and in response to a diversity of abiotic stress conditions, and is also upregulated during formation of aerial mycelium in a standing liquid culture. This upregulation significantly exceeds that of expression of hfb7 under a strong constitutive promoter, and T. virens strains overexpressing hfb7 thus display only changes in traits characterized by low hfb7 expression, i.e. faster growth in submerged liquid culture. The hfb7 gene is not expressed in conidia. Our data allow to conclude that this protein is involved in defence of Trichoderma against a diversity of stress factors related to the oxidative stress. Moreover, HFB7 likely helps in the establishment of the fungus in wetlands or other conditions related to high humidity.

摘要

疏水蛋白是一类仅在真菌中发现的、分泌型的富含半胱氨酸的小蛋白。它们能够在疏水-亲水界面自组装形成单分子层,因此可直接参与真菌在其栖息地的定殖过程。丝状菌根真菌木霉属的基因组编码了丰富多样的疏水蛋白,根据其结构和进化关系可分为几个组。在此,我们描述了II类疏水蛋白的一个新成员HFB7,它在木霉属的哈茨木霉和绿色木霉分支中具有分类学上的限制分布。进化分析表明,HFB7蛋白形成了一个与其他木霉属II类疏水蛋白不同的独立分支,并且编码它们的基因在正选择压力下进化。与里氏木霉HFB2相比,HFB7结构的同源建模显示,尽管这两种疏水蛋白的一级结构存在显著差异,但它们表面的两个大疏水区域却非常保守。绿色木霉中hfb7基因的表达在与其他真菌和植物相互作用时以及对多种非生物胁迫条件的响应中增加,并且在静置液体培养中气生菌丝形成过程中也上调。这种上调显著超过了在强组成型启动子下hfb7的表达,因此过表达hfb7的绿色木霉菌株仅表现出以低hfb7表达为特征的性状变化,即在深层液体培养中生长更快。hfb7基因在分生孢子中不表达。我们的数据表明,这种蛋白参与了木霉对与氧化应激相关的多种胁迫因子的防御。此外,HFB7可能有助于真菌在湿地或其他与高湿度相关的条件下定殖。

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