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水蛋白有助于根际竞争昆虫病原真菌球孢白僵菌的定殖和应激反应。

Hydrophobins contribute to root colonization and stress responses in the rhizosphere-competent insect pathogenic fungus Beauveria bassiana.

机构信息

Department of Biological Sciences, Brock University, St. Catharines, ON L2S 3A1, Canada.

Department of Microbiology and Cell Science, University of Florida, Gainesville, FL 32611, USA.

出版信息

Microbiology (Reading). 2018 Apr;164(4):517-528. doi: 10.1099/mic.0.000644. Epub 2018 Mar 8.

DOI:10.1099/mic.0.000644
PMID:29517481
Abstract

The hyd1/hyd2 hydrophobins are important constituents of the conidial cell wall of the insect pathogenic fungus Beauveria bassiana. This fungus can also form intimate associations with several plant species. Here, we show that inactivation of two Class I hydrophobin genes, hyd1 or hyd2, significantly decreases the interaction of B. bassiana with bean roots. Curiously, the ∆hyd1/∆hyd2 double mutant was less impaired in root association than Δhyd1 or Δhyd2. Loss of hyd genes affected growth rate, conidiation ability and oosporein production. Expression patterns for genes involved in conidiation, cell wall integrity, insect virulence, signal transduction, adhesion, hydrophobicity and oosporein production were screened in the deletion mutants grown in different conditions. Repression of the major MAP-Kinase signal transduction pathways (Slt2 MAPK pathway) was observed that was more pronounced in the single versus double hyd mutants under certain conditions. The ∆hyd1/∆hyd2 double mutant showed up-regulation of the Hog1 MAPK and the Msn2 transcription factor under certain conditions when compared to the wild-type or single hyd mutants. The expression of the bad2 adhesin and the oosporein polyketide synthase 9 gene was severely reduced in all of the mutants. On the other hand, fewer changes were observed in the expression of key conidiation and cell wall integrity genes in hyd mutants compared to wild-type. Taken together, the data from this study indicated pleiotropic consequences of deletion of hyd1 and hyd2 on signalling and stress pathways as well as the ability of the fungus to form stable associations with plant roots.

摘要

水 1/水 2 亲脂素是昆虫病原真菌白僵菌分生孢子细胞壁的重要组成部分。这种真菌也可以与几种植物形成密切的联系。在这里,我们表明,两个 I 类亲脂素基因 hyd1 或 hyd2 的失活,显著降低了白僵菌与豆根的相互作用。奇怪的是,与Δ hyd1 或Δ hyd2 相比,Δ hyd1/Δ hyd2 双突变体在与根的关联中受损较小。亲脂素基因的缺失影响生长速度、分生孢子形成能力和卵孢子蛋白的产生。在不同条件下生长的缺失突变体中,筛选了参与分生孢子形成、细胞壁完整性、昆虫毒力、信号转导、粘附、疏水性和卵孢子蛋白产生的基因的表达模式。在某些条件下,观察到主要的 MAP-激酶信号转导途径(Slt2 MAPK 途径)的抑制更为明显,与单突变体相比,在双突变体中更为明显。与野生型或单突变体相比,在某些条件下,Δ hyd1/Δ hyd2 双突变体显示 Hog1 MAPK 和 Msn2 转录因子的上调。与所有突变体相比,bad2 粘附素和卵孢子蛋白聚酮合酶 9 基因的表达严重降低。另一方面,与野生型相比,亲脂素突变体中关键的分生孢子形成和细胞壁完整性基因的表达变化较少。总之,这项研究的数据表明,hyd1 和 hyd2 的缺失对信号转导和应激途径以及真菌与植物根形成稳定联系的能力有多种影响。

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