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The N-mannosyltransferase gene BbAlg9 contributes to cell wall integrity, fungal development and the pathogenicity of Beauveria bassiana

机译:N-甘露糖基转移酶基因 BbAlg9 有助于 Beauveria bassiana 的细胞壁完整性、真菌发育和致病性

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The mannosyltransferase Alg9 plays a vital role in N-linked protein glycosylation in Saccharomyces cerevisiae, but its function in most filamentous fungi is not clear. The present study characterized BbAlg9 (an ortholog of S. cerevisiae Alg9) in Beauveria bassiana to determine the roles of N-mannosyltransferase in biological control potential of the filamentous entomopathogenic fungus. The disruption of BbAlg9 led to slower fungal growth in media with various nutrition compositions. The conidiation of DBbAlg9 was less than that of the wild type from the third to the fifth day but showed no significant difference on the sixth day, suggesting that BbAlg9 affects the development of conidia rather than conidial yield of late stage. DBbAlg9 showed defects in conidial germination, multiple stress tolerances and the yield of blastospores, with altered size and density, and virulence in hosts infected via the immersion and injection methods. The deletion of BbAlg9 resulted in defects in cell wall integrity, including increased mannoprotein and glucan content and decreased chitin content, which were accompanied by transcriptional activation or suppression of genes related to cell wall component biosynthesis. Notably, deletion of the N-mannosyltransferase BbAlg9 altered the transcription levels of O-mannosyltransferase genes (Pmt and Ktr family). These data show that BbAlg9 is involved in the fungal development, conidial stress tolerance, cell wall integrity and virulence of B. bassiana. (c) 2021 British Mycological Society. Published by Elsevier Ltd. All rights reserved.
机译:甘露糖基转移酶 Alg9 在酿酒酵母的 N-连接蛋白糖基化中起着至关重要的作用,但其在大多数丝状真菌中的功能尚不清楚。本研究表征了Beauveria bassiana中的BbAlg9(酿酒酵母Alg9的直系同源物),以确定N-甘露糖基转移酶在丝状昆虫病原真菌的生物控制潜力中的作用。BbAlg9 的破坏导致具有各种营养成分的培养基中的真菌生长减慢。DBbAlg9在3-5 d的分生孢子含量低于野生型,但在第6天没有显著差异,表明BbAlg9对分生孢子的发育影响大于分生孢子的发育,而不是后期分生孢子的产量。DBbAlg9在分生孢子萌发、多重胁迫耐受性和芽孢子产量方面存在缺陷,大小和密度改变,在浸泡和注射方法感染的宿主中具有毒力。BbAlg9 的缺失导致细胞壁完整性缺陷,包括甘露蛋白和葡聚糖含量增加以及几丁质含量降低,并伴有与细胞壁成分生物合成相关的基因的转录激活或抑制。值得注意的是,N-甘露糖基转移酶 BbAlg9 的缺失改变了 O-甘露糖基转移酶基因(Pmt 和 Ktr 家族)的转录水平。这些数据表明,BbAlg9参与了B的真菌发育、分生孢子胁迫耐受性、细胞壁完整性和毒力。巴西亚娜。(c) 2021 年英国真菌学会。由以下开发商制作:Elsevier Ltd.保留所有权利。

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