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exp2 基因编码一个具有两个锌指结构域的蛋白质,调节 Coprinopsis cinerea 中的帽扩张和自溶。

The exp2 gene, which encodes a protein with two zinc finger domains, regulates cap expansion and autolysis in Coprinopsis cinerea.

机构信息

Department of Bioresource Sciences, Iwate Biotechnology Research Center, 22-174-4 Narita, Kitakami-shi, Iwate 024-0003, Japan.

Department of Bioresource Sciences, Iwate Biotechnology Research Center, 22-174-4 Narita, Kitakami-shi, Iwate 024-0003, Japan.

出版信息

Microbiol Res. 2024 Jun;283:127695. doi: 10.1016/j.micres.2024.127695. Epub 2024 Mar 19.

Abstract

Cap expansion in agaricoid mushroom species is an important event for sexual reproduction because meiosis occurs in basidia under the cap, and basidiospores can be released by opening the cap. However, molecular mechanisms underlying cap expansion in basidiomycetes remain poorly understood. We aimed to elucidate the molecular mechanisms of cap expansion in basidiomycetes by analyzing the unique cap-expansionless UV mutant #13 (exp2-1) in Coprinopsis cinerea. Linkage analysis and consequent genome sequence analysis revealed that the gene responsible for the mutant phenotypes encodes a putative transcription factor with two C2H2 zinc finger motifs. The mutant that was genome-edited to lack exp2 exhibited an expansionless phenotype. Some of the genes encoding cell wall degradation-related enzymes showed decreased expression during cap expansion and autolysis in the exp2 UV and genome-edited mutant. The exp2 gene is widely conserved in Agaricomycetes, suggesting that Exp2 homologs regulate fruiting body maturation in Agaricomycetes, especially cap expansion in Agaricoid-type mushroom-forming fungi. Therefore, exp2 homologs could be a target for mushroom breeding to maintain shape after harvest for some cultivating mushrooms, presenting a promising avenue for further research in breeding techniques.

摘要

蕈菌类担子果的菌盖扩张是一种重要的生殖事件,因为减数分裂发生在菌盖下的担子中,而且担孢子可以通过菌盖的打开而释放。然而,担子菌类菌盖扩张的分子机制仍知之甚少。我们旨在通过分析毛头鬼伞(Coprinopsis cinerea)中独特的菌盖无扩张 UV 突变体#13(exp2-1)来阐明担子菌类菌盖扩张的分子机制。连锁分析和随后的基因组序列分析表明,负责突变表型的基因编码一个具有两个 C2H2 锌指模体的假定转录因子。基因组编辑缺失 exp2 的突变体表现出无扩张表型。在 exp2 UV 和基因组编辑突变体中,一些编码细胞壁降解相关酶的基因在菌盖扩张和自溶过程中表达下调。exp2 基因在伞菌类中广泛保守,这表明 Exp2 同源物调节伞菌类担子果的成熟,特别是伞菌类蕈菌类真菌的菌盖扩张。因此,exp2 同源物可能成为蘑菇育种的目标,以维持一些栽培蘑菇收获后的形状,为进一步的育种技术研究提供了有希望的途径。

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