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首页> 外文期刊>Scientific reports. >Characterization of the mitochondrial genome of the pathogenic fungus Scytalidium auriculariicola (Leotiomycetes) and insights into its phylogenetics
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Characterization of the mitochondrial genome of the pathogenic fungus Scytalidium auriculariicola (Leotiomycetes) and insights into its phylogenetics

机译:致病性真菌菌肌肌肉菌(Leotiomycetes)和洞察中致病性真菌的线粒体基因组的表征

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摘要

Scytalidium auriculariicola is the causative pathogen of slippery scar disease in the cultivated cloud ear fungus, Auricularia polytricha. In the present study, the mitogenome of S. auriculariicola was sequenced and assembled by next-generation sequencing technology. The circular mitogenome is 96,857?bp long and contains 56 protein-coding genes, 2 ribosomal RNA genes, and 30 transfer RNA genes (tRNAs). The high frequency of A and T used in codons contributed to the high AT content (73.70%) of the S. auriculariicola mitogenome. Comparative analysis indicated that the base composition and the number of introns and protein-coding genes in the S. auriculariicola mitogenome varied from that of other Leotiomycetes mitogenomes, including a uniquely positive AT skew. Five distinct groups were found in the gene arrangements of Leotiomycetes. Phylogenetic analyses based on combined gene datasets (15 protein-coding genes) yielded well-supported (BPP?=?1) topologies. A single-gene phylogenetic tree indicated that the nad4 gene may be useful as a molecular marker to analyze the phylogenetic relationships of Leotiomycetes species. This study is the first report on the mitochondrial genome of the genus Scytalidium, and it will contribute to our understanding of the population genetics and evolution of S. auriculariicola and related species.
机译:ScytalliumAuriculariicola是栽培云耳真菌,Auricularia polytricha的疾病瘢痕疾病的致病病原体。在本研究中,通过下一代测序技术测序和组装S.AuricularIicola的促使催乳素组。圆形促滤膜为96,857〜Bp长,含有56个蛋白质编码基因,2个核糖体RNA基因和30个转移RNA基因(TrNAS)。用于密码子的A和T的高频率导致含量高(73.70%)的S.AuricularIicola促丝氨酸。比较分析表明,S.Auriculariicola促丝氨酸中的基础组成和内含子和蛋白质编码基因的数量与其他乳腺素毒蛛的多种多组不同,包括在偏斜中具有唯一阳性的阳性。在Leotiomycetes的基因布置中发现了五个不同的群体。基于组合基因数据集(15个蛋白质编码基因)的系统发育分析产生良好支持的(BPP?= 1)拓扑。单基因发育树表明NAD4基因可用于分析Leotiomycetes物种的系统发育关系的分子标记。本研究是Scytalidium属的线粒体基因组的第一份报告,它将有助于我们对S. Auriculariicola和相关物种的群体遗传学和演变的理解。

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