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假定的APSES家族转录因子mbp1在调节木耳侧耳细胞壁合成中起重要作用。

Putative APSES family transcription factor mbp1 plays an essential role in regulating cell wall synthesis in the agaricomycete Pleurotus ostreatus.

作者信息

Kojima Hayase, Kawauchi Moriyuki, Otsuka Yuitsu, Schiphof Kim, Tsuji Kenya, Yoshimi Akira, Tanaka Chihiro, Yano Shigekazu, Nakazawa Takehito, Honda Yoichi

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 Dec;175:103936. doi: 10.1016/j.fgb.2024.103936. Epub 2024 Oct 4.

Abstract

The clade A APSES family transcription factors (Mbp1, Swi4, and Swi6) contribute to cell wall synthesis regulation in fungi. Herein, evolutionary relationships among these proteins were clarified by phylogenetic analysis using various ascomycetes and basidiomycetes, and then the detailed function of Mbp1 in cell wall synthesis regulation was analyzed in Pleurotus ostreatus. Our phylogenetic analysis revealed that Mbp1 and Swi6 are widely conserved among various fungi, whereas Swi4 is a protein specific for Saccharomycotina. In P. ostreatus, two putative clade A APSES family transcription factors, protein ID 83192 and 134090, were found and identified as Mbp1 and Swi6, respectively. The mbp1 gene was then disrupted through homologous recombination using P. ostreatus 20b strain (Δku80) as a host to obtain mbp1 disruption strains (Δmbp1). Disruption of mbp1 significantly decreased the growth rate and shortened aerial hyphae, suggesting that Mbp1 is involved in mycelial growth, especially aerial hyphal growth. Furthermore, thinner cell walls, decreased relative percentage of β-glucan, and downregulation of all β-glucan synthase genes were observed in Δmbp1 strains. Therefore, Mbp1 plays an essential role in β-glucan synthesis regulation in P. ostreatus. Disruption of mbp1 also impacted the expression profiles of chitin synthase genes, septum formation, and sensitivity to a chitin synthesis inhibitor, suggesting that Mbp1 also regulates chitin synthesis. In conclusion, Mbp1 is responsible for normal mycelial growth and regulates β-glucan and chitin synthesis in P. ostreatus. To the best of our knowledge, this is the first report on the detailed function of Mbp1 in cell wall synthesis regulation in fungi.

摘要

进化枝A的APSES家族转录因子(Mbp1、Swi4和Swi6)参与真菌细胞壁合成的调控。在此,通过使用各种子囊菌和担子菌进行系统发育分析,阐明了这些蛋白质之间的进化关系,然后在平菇中分析了Mbp1在细胞壁合成调控中的详细功能。我们的系统发育分析表明,Mbp1和Swi6在各种真菌中广泛保守,而Swi4是酵母菌纲特有的蛋白质。在平菇中,发现了两个假定的进化枝A的APSES家族转录因子,蛋白质ID分别为83192和134090,并分别鉴定为Mbp1和Swi6。然后,以平菇20b菌株(Δku80)为宿主,通过同源重组破坏mbp1基因,获得mbp1破坏菌株(Δmbp1)。mbp1的破坏显著降低了生长速率并缩短了气生菌丝,这表明Mbp1参与菌丝体生长,尤其是气生菌丝的生长。此外,在Δmbp1菌株中观察到细胞壁变薄、β-葡聚糖相对百分比降低以及所有β-葡聚糖合酶基因的下调。因此,Mbp1在平菇β-葡聚糖合成调控中起重要作用。mbp1的破坏还影响了几丁质合酶基因的表达谱、隔膜形成以及对几丁质合成抑制剂的敏感性,表明Mbp1也调节几丁质合成。总之,Mbp1负责平菇正常的菌丝体生长,并调节β-葡聚糖和几丁质的合成。据我们所知,这是关于Mbp1在真菌细胞壁合成调控中详细功能的首次报道。

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