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首页> 外文期刊>Current Genetics >The fruiting-specific Le.flp1 gene, encoding a novel fungal fasciclin-like protein, of the basidiomycetous mushroom Lentinula edodes
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The fruiting-specific Le.flp1 gene, encoding a novel fungal fasciclin-like protein, of the basidiomycetous mushroom Lentinula edodes

机译:担子菌蘑菇香菇香菇特有的结实特异性Le.flp1基因编码一种新型真菌类fasciclin蛋白。

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摘要

To understand the molecular mechanisms of fruiting body formation of basidiomycetous mushrooms, we have isolated over a 100 of developmentally regulated genes that were specifically transcribed during fruiting body development in Lentinula edodes (Shiitake-mushroom) by a subtractive hybridization, cDNA-RDA (cDNA representational difference analysis). One of these genes, named Le.flp1, was isolated from the primordial cDNA library of L. edodes, and the expression product of Le.flp1 and putative fungal homologues contained a characteristic region, homologous to the Fas domain of fasciclin family proteins, which are capable of promoting cell adhesion through Fas domain-mediated homophilic interactions in various organisms. RT-PCR analyses suggested that Le.flp1 was specifically expressed in primordia and mature fruiting bodies. In situ hybridization indicated that Le.flp1 transcripts were distributed distinctly in the following tissues: the inside of gills of fruiting bodies, especially at the boundary between the subhymenium and trama, where there is active proliferation of basidium cells for producing basidiospores; peripheral regions of the primordium, pileus and stipe; and both inner tissue and outer regions of the stipe. Our results suggest the hypothesis that Le.flp1 plays a role in cellular differentiation and development in ubiquitous tissues during fruiting body formation in L. edodes, possibly through cell adhesion.
机译:为了了解担子菌蘑菇子实体形成的分子机制,我们分离了100多个发育调控的基因,这些基因在香菇子实体(香菇)子实体发育过程中通过减性杂交法cDNA-RDA(cDNA差异分析)。从香菇的原始cDNA文库中分离出一个名为Le.flp1的基因,Le.flp1的表达产物和推定的真菌同源物包含一个特征区域,该区域与fasciclin家族蛋白的Fas结构域同源。能够通过Fas结构域介导的各种生物之间的相互作用促进细胞粘附。 RT-PCR分析表明Le.flp1在原基和成熟子实体中特异性表达。原位杂交表明,Le.flp1转录物在以下组织中明显分布:子实体ill内部,特别是在膜下层和曲马之间的边界处,那里有活跃的增殖细胞产生basidiospores;原基,绒毛和柄的外围区域;以及柄的内部组织和外部区域。我们的结果提出了这样一个假说,即Le.flp1在香菇子实体形成过程中可能在遍在组织的细胞分化和发育中起作用,这可能是通过细胞粘附引起的。

著录项

  • 来源
    《Current Genetics》 |2007年第6期|367-375|共9页
  • 作者单位

    Department of Applied Microbiology Forestry and Forest Products Research Institute P. O. box 16 Tsukuba-Norin 305-8687 Japan;

    Department of Life Science Graduate School of Bioscience and Biotechnology Tokyo Institute of Technology Nagatsuta Midori-ku Yokohama 226-8501 Japan;

    Department of Applied Microbiology Forestry and Forest Products Research Institute P. O. box 16 Tsukuba-Norin 305-8687 Japan;

    Department of Life Science Graduate School of Bioscience and Biotechnology Tokyo Institute of Technology Nagatsuta Midori-ku Yokohama 226-8501 Japan;

    Department of Life Science Graduate School of Bioscience and Biotechnology Tokyo Institute of Technology Nagatsuta Midori-ku Yokohama 226-8501 Japan;

    Department of Applied Microbiology Forestry and Forest Products Research Institute P. O. box 16 Tsukuba-Norin 305-8687 Japan;

    Department of Applied Microbiology Forestry and Forest Products Research Institute P. O. box 16 Tsukuba-Norin 305-8687 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Basidiomycete; Mushroom; Lentinula edodes; Fruiting body formation; In situ hybridization; Fasciclin;

    机译:担子菌;蘑菇;香菇;果体形成;原位杂交;法西林;

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