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Fvclp1 基因调控食用菌金针菇的菌丝生长和子实体发育。

The Fvclp1 gene regulates mycelial growth and fruiting body development in edible mushroom Flammulina velutipes.

机构信息

Shandong Provincial Key Laboratory of Agricultural Microbiology, College of Plant Protection, Shandong Agricultural University, Tai'an, 271018, China.

Mycological Research Center, College of Life Sciences, Fujian Agricultural and Forestry University, Fuzhou, 350002, China.

出版信息

Arch Microbiol. 2021 Nov;203(9):5373-5380. doi: 10.1007/s00203-021-02514-0. Epub 2021 Aug 13.

Abstract

Fruiting body development in Agaricomycetes represents the most complex and unclear process in the fungi. Mating type pathways (A and B) and transcription factors are important regulators in the sexual development of mushrooms. It is known that clampless1 (clp1) is an additional gene that participate under the homeodomain (HD) genes in the matA pathway and clp1 inactivation blocks clamps formation in Coprinopsis cinerea. In this study we identified and analyzed a homologous Fvclp1 gene in the edible mushroom Flammulina velutipes. The coding sequence of the Fvclp1 was 1011 bp without intron interruption, encoding a protein of 336 amino acids. To exhibit the role of Fvclp1 in clamp development and fruiting body formation, knockdown and overexpression mutants were prepared. No significant difference was observed in the monokaryotic hyphal morphology of overexpression and knockdown transformants. In the dikaryotic hyphae from the compatible crossings between the wild-type L22 strain and Fvclp1 knockdown or overexpression mutants, clamp connections developed. However, knockdown mutants could generate fewer fruiting bodies than the wild-type strain. On the contrary, reduced mycelial growth rate but improved fruiting ability was observed in the dikaryotic Fvclp1 overexpression mutants as compared to the wild-type strain. These results indicate that Fvclp1 is necessary and actively involved in fruiting body development in F. velutipes. Overall, these findings suggest that further studies on the function of Fvclp1 would advance our understanding of sexual reproduction and fruiting body development in edible mushrooms.

摘要

担子菌的子实体发育是真菌中最复杂和不清楚的过程。交配型途径(A 和 B)和转录因子是蘑菇有性发育的重要调节剂。已知 clampless1(clp1)是参与 matA 途径中同源域(HD)基因的附加基因,clp1 失活会阻止 Coprinopsis cinerea 夹的形成。在这项研究中,我们在可食用蘑菇金针菇中鉴定和分析了一个同源的 Fvclp1 基因。Fvclp1 的编码序列为 1011bp,没有内含子中断,编码 336 个氨基酸的蛋白质。为了展示 Fvclp1 在夹发育和子实体形成中的作用,制备了敲低和过表达突变体。过表达和敲低转化体的单核菌丝形态没有明显差异。在与野生型 L22 菌株和 Fvclp1 敲低或过表达突变体之间的相容杂交产生的双核菌丝中,出现了夹连接。然而,敲低突变体产生的子实体比野生型菌株少。相反,与野生型菌株相比,双核 Fvclp1 过表达突变体的菌丝生长速度较慢,但结实能力提高。这些结果表明 Fvclp1 是金针菇子实体发育所必需的,并积极参与其中。总的来说,这些发现表明进一步研究 Fvclp1 的功能将有助于我们理解可食用蘑菇的有性繁殖和子实体发育。

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