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担子菌特异性几丁质合酶基因在伞菌目真菌糙皮侧耳中的功能分析。

Functional analysis of basidiomycete specific chitin synthase genes in the agaricomycete fungus Pleurotus ostreatus.

机构信息

Graduate School of Agriculture, Kyoto University, Kitashirakawaoiwakecho, Sakyo-ku, Kyoto 606-8502, Japan.

Graduate School of Agriculture, Kyoto University, Kitashirakawaoiwakecho, Sakyo-ku, Kyoto 606-8502, Japan.

出版信息

Fungal Genet Biol. 2024 Jun;172:103893. doi: 10.1016/j.fgb.2024.103893. Epub 2024 Apr 23.

Abstract

Chitin is an essential structural component of fungal cell walls composed of transmembrane proteins called chitin synthases (CHSs), which have a large range of reported effects in ascomycetes; however, are poorly understood in agaricomycetes. In this study, evolutionary and molecular genetic analyses of chs genes were conducted using genomic information from nine ascomycete and six basidiomycete species. The results support the existence of seven previously classified chs clades and the discovery of three novel basidiomycete-specific clades (BI-BIII). The agaricomycete fungus Pleurotus ostreatus was observed to have nine putative chs genes, four of which were basidiomycete-specific. Three of these basidiomycete specific genes were disrupted in the P. ostreatus 20b strain (ku80 disruptant) through homologous recombination and transformants were obtained (Δchsb2, Δchsb3, and Δchsb4). Despite numerous transformations Δchsb1 was unobtainable, suggesting disruption of this gene causes a crucial negative effect in P. ostreatus. Disruption of these chsb2-4 genes caused sparser mycelia with rougher surfaces and shorter aerial hyphae. They also caused increased sensitivity to cell wall and membrane stress, thinner cell walls, and overexpression of other chitin and glucan synthases. These genes have distinct roles in the structural formation of aerial hyphae and cell walls, which are important for understanding basidiomycete evolution in filamentous fungi.

摘要

几丁质是真菌细胞壁的重要结构组成部分,由跨膜蛋白几丁质合酶(CHSs)组成,这些酶在子囊菌中有广泛的报道作用;然而,在伞菌中了解甚少。在这项研究中,使用来自九个子囊菌和六个担子菌物种的基因组信息,对 chs 基因进行了进化和分子遗传学分析。结果支持存在七个先前分类的 chs 进化枝和发现三个新的担子菌特异性进化枝(BI-BIII)。观察到担子菌真菌糙皮侧耳有九个推定的 chs 基因,其中四个是担子菌特异性的。这三个担子菌特异性基因在糙皮侧耳 20b 菌株(ku80 缺陷型)中通过同源重组被破坏,并获得了转化体(Δchsb2、Δchsb3 和 Δchsb4)。尽管进行了多次转化,但无法获得Δchsb1,这表明该基因的破坏在糙皮侧耳中会产生关键的负面影响。这些 chsb2-4 基因的破坏导致菌丝更稀疏,表面更粗糙,气生菌丝更短。它们还导致对细胞壁和膜应激的敏感性增加、细胞壁更薄以及其他几丁质和葡聚糖合酶的过度表达。这些基因在气生菌丝和细胞壁的结构形成中具有独特的作用,这对于理解丝状真菌中的担子菌进化很重要。

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