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Genome Sequence Analysis of Auricularia heimuer Combined with Genetic Linkage Map

机译:结合遗传连锁图谱分析黑木耳基因组序列

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摘要

is one of the most popular edible fungi in China. In this study, the whole genome of was sequenced on the Illumina HiSeq X system and compared with other mushrooms genomes. As a wood-rotting fungus, a total of 509 carbohydrate-active enzymes (CAZymes) were annotated in order to explore its potential capabilities on wood degradation. The glycoside hydrolases (GH) family genes in the genome were more abundant than the genes in the other 11 mushrooms genomes. The genome contained 102 genes encoding class III, IV, and V ethanol dehydrogenases. Evolutionary analysis based on 562 orthologous single-copy genes from 15 mushrooms showed that formed an early independent branch of Agaricomycetes. The mating-type locus of was located on linkage group 8 by genetic linkage analysis. By combining the genome sequence analysis with the genetic linkage map, the mating-type locus of was located on scaffold45 and consisted of two subunits, α and β. Each subunit consisted of a pair of homeodomain mating-type protein genes and . The mapping revealed conserved synteny at the whole mating-type loci and mirror symmetry relations near the β subunit between and . This study proposed the potential for the bioethanol production by consolidated bioprocessing of . It will promote understanding of the lignocellulose degradation system and facilitate more efficient conversion of the agricultural wastes used for mushroom cultivation. It also will advance the research on the fruiting body development and evolution of .
机译:是中国最受欢迎的食用真菌之一。在这项研究中,在Illumina HiSeq X系统上对的整个基因组进行了测序,并与其他蘑菇基因组进行了比较。作为木材腐烂的真菌,共注释了509种碳水化合物活性酶(CAZymes),以探索其对木材降解的潜在能力。基因组中的糖苷水解酶(GH)家族基因比其他11个蘑菇基因组中的基因丰富。该基因组包含102个编码III,IV和V类乙醇脱氢酶的基因。基于来自15个蘑菇的562个直系同源单拷贝基因的进化分析表明,它形成了一个早期的独立的分支。通过遗传连锁分析,其交配型基因座位于连锁组8上。通过将基因组序列分析与遗传连锁图谱相结合,其交配型基因座位于支架45上,由两个亚基α和β组成。每个亚基由一对同源结构域交配型蛋白质基因和组成。该映射揭示了在整个交配型基因座上的保守同位和在和之间的β亚基附近的镜像对称关系。这项研究提出了潜在的合并加工生物乙醇生产乙醇的潜力。它将促进对木质纤维素降解系统的了解,并促进更有效地转化用于蘑菇种植的农业废物。它将促进子实体的发育和进化研究。

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