首页> 外文期刊>The New Phytologist >Gene organization of the mating type regions in the ectomycorrhizal fungus Laccaria bicolor reveals distinct evolution between the two mating type loci
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Gene organization of the mating type regions in the ectomycorrhizal fungus Laccaria bicolor reveals distinct evolution between the two mating type loci

机译:外生菌根真菌双色紫胶菌交配型区域的基因组织揭示了两个交配型基因座之间的明显进化

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In natural conditions, basidiomycete ectomycorrhizal fungi such as Laccaria bicolor are typically in the dikaryotic state when forming symbioses with trees, meaning that two genetically different individuals have to fuse or 'mate'. Nevertheless, nothing is known about the molecular mechanisms of mating in these ecologically important fungi.Here, advantage was taken of the first sequenced genome of the ectomycorrhizal fungus, Laccaria bicolor, to determine the genes that govern the establishment of cell-type identity and orchestrate mating.The L. bicolor mating type loci were identified through genomic screening. The evolutionary history of the genomic regions that contained them was determined by genome-wide comparison of L. bicolor sequences with those of known tetrapolar and bipolar basidiomycete species, and by phylogenetic reconstruction of gene family history.It is shown that the genes of the two mating type loci, A and B, are conserved across the Agaricales, but they are contained in regions of the genome with different evolutionary histories. The A locus is in a region where the gene order is under strong selection across the Agaricales. By contrast, the B locus is in a region where the gene order is likely under a low selection pressure but where gene duplication, translocation and transposon insertion are frequent.
机译:在自然条件下,与树木形成共生体时,担子菌外生菌根真菌(如双色紫胶菌)通常处于双核状态,这意味着两个遗传上不同的个体必须融合或“交配”。然而,对于这些重要生态真菌中交配的分子机制一无所知,这里利用了外生菌根真菌的第一个测序基因组双色Laccaria bicolor来确定控制细胞类型同一性和协调性的基因。通过基因组筛选鉴定了双色L.交配型基因座。通过将双色乳杆菌与已知的四极和双极担子菌种的基因组范围进行全基因组比较,并通过系统进化重建基因家族史来确定包含它们的基因组区域的进化历史。交配型基因座A和B在整个Agaricales中都是保守的,但它们包含在具有不同进化史的基因组区域中。 A基因座位于整个伞菌中基因顺序处于强烈选择下的区域。相比之下,B基因座处于这样一个区域,在该区域中,基因选择可能在低选择压力下,但是基因复制,易位和转座子插入很频繁。

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