Han Junxian, Kawauchi Moriyuki, Terauchi Yuki, Tsuji Kenya, Yoshimi Akira, Tanaka Chihiro, Nakazawa Takehito, Honda Yoichi
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.
Fungal Genet Biol. 2025 Feb;176:103943. doi: 10.1016/j.fgb.2024.103943. Epub 2024 Nov 28.
Hydrophobins are small-secreted proteins with both hydrophobic and hydrophilic regions, enabling the mycelium to break through the air-medium interface by reducing the medium surface tension. Over 20 putative hydrophobin-encoding genes have been predicted in the agaricomycete Pleurotus ostreatus. Three hydrophobin-encoding genes, vmh2, vmh3, and hydph16, were predominantly expressed in the vegetative mycelium. Despite these common properties, we have previously demonstrated the distinct functions of Vmh2 and Vmh3 in environmental stress resistance. In this study, we focused on hydph16 and found that Δhydph16 strains had sparser aerial mycelium than control strains. The cell wall thickness of Δhydph16 strains reduced by 40 % compared to that of control strains, but no significant differences were found in the relative chitin and glucan percentages or relative putative cell wall synthesis-related gene expression levels. Furthermore, unlike vmh2 and vmh3, hydph16 deletion did not change the hydrophobicity of the aerial mycelium. This study is the first to report that the lack of hydrophobin can lead to a significant change in aerial hyphae cell wall formation without altering the major cell wall polysaccharide composition. Additionally, this study revealed multiple roles for Hydph16, distinct from those of other highly expressed hydrophobins, Vmh2 and Vmh3. These results suggested that agaricomycetes, including P. ostreatus, have evolved to possess multiple hydrophobins with different functions.
疏水蛋白是一种分泌型小蛋白,兼具疏水区域和亲水区域,可通过降低培养基表面张力使菌丝突破气 - 培养基界面。在伞菌平菇中已预测出20多个假定的疏水蛋白编码基因。三个疏水蛋白编码基因,即vmh2、vmh3和hydph16,在营养菌丝中大量表达。尽管具有这些共同特性,但我们之前已证明Vmh2和Vmh3在环境胁迫抗性方面具有不同功能。在本研究中,我们聚焦于hydph16,发现Δhydph16菌株的气生菌丝比对照菌株更稀疏。与对照菌株相比,Δhydph16菌株的细胞壁厚度减少了40%,但在几丁质和葡聚糖的相对百分比或假定的细胞壁合成相关基因的相对表达水平上未发现显著差异。此外,与vmh2和vmh3不同,hydph16缺失并未改变气生菌丝的疏水性。本研究首次报道疏水蛋白的缺失可导致气生菌丝细胞壁形成发生显著变化,而不改变主要细胞壁多糖组成。此外,本研究揭示了Hydph16与其他高表达疏水蛋白Vmh2和Vmh3不同的多种作用。这些结果表明,包括平菇在内的伞菌已经进化出具有不同功能的多种疏水蛋白。