首页> 外文期刊>Archives of microbiology >The complete mitochondrial genome of the entomopathogenic fungus Metarhizium anisopliae var. anisopliae: gene order and trn gene clusters reveal a common evolutionary course for all Sordariomycetes, while intergenic regions show variation
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The complete mitochondrial genome of the entomopathogenic fungus Metarhizium anisopliae var. anisopliae: gene order and trn gene clusters reveal a common evolutionary course for all Sordariomycetes, while intergenic regions show variation

机译:昆虫病原真菌Metarhizium anisopliae var的完整线粒体基因组。各向异性:基因顺序和trn基因簇揭示了所有Sordariomycetes的共同进化过程,而基因间区域显示出变异

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摘要

The mitochondrial genome (mtDNA) of the entomopathogenic fungus Metarhizium anisopliae var. anisopliae, with a total size of 24,673 bp, was one of the smallest known mtDNAs of Pezizomycotina. It contained the 14 typical genes coding for proteins related to oxidative phosphorylation, the two rRNA genes, a single intron that harbored an intronic ORF coding for a putative ribosomal protein (rps) within the large rRNA gene (rnl), and a set of 24 tRNA genes which recognized codons for all amino acids, except proline and valine. Gene order comparison with all known mtDNAs of Sordariomycetes illustrated a highly conserved genome organization for all the protein- and rRNA-coding genes, as well as three clusters of tRNA genes. By considering all mitochondrial essential protein-coding genes as one unit a phylogenetic study of these small genomes strongly supported the common evolutionary course of Sordariomycetes (100% bootstrap support) and highlighted the advantages of analyzing small genomes (mtDNA) over single genes. In addition, comparative analysis of three intergenic regions demonstrated sequence variability that can be exploited for intra- and inter-specific identification of Metarhizium.
机译:昆虫病原真菌Metarhizium anisopliae var的线粒体基因组(mtDNA)。 iso虫的总大小为24,673 bp,是已知的Pezizomycotina最小的mtDNA之一。它包含14个编码与氧化磷酸化相关的蛋白质的典型基因,两个rRNA基因,一个内含子,其中一个内含子ORF编码大rRNA基因(rnl)中的假定核糖体蛋白(rps),以及一组24个可以识别除脯氨酸和缬氨酸以外的所有氨基酸密码子的tRNA基因。与Sordariomycetes的所有已知mtDNA的基因顺序比较表明,所有蛋白质和rRNA编码基因以及三个tRNA基因簇均高度保守。通过将所有线粒体必需蛋白质编码基因视为一个单元,对这些小基因组的系统发育研究强烈支持了Sordariomycetes的共同进化过程(100%引导程序支持),并强调了分析小基因组(mtDNA)优于单个基因的优势。另外,对三个基因间区域的比较分析证明了序列可变性,可以利用该可变性进行Metrahizium的种内和种间鉴定。

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