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Comparative Mitochondrial Genome Analysis of Two Ectomycorrhizal Fungi (Rhizopogon) Reveals Dynamic Changes of Intron and Phylogenetic Relationships of the Subphylum Agaricomycotina

机译:两种突出菌根真菌(Rhizopogon)的比较线粒体基因组分析显示了亚霉素琼脂腺炎霉菌内含子和系统发育关系的动态变化

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摘要

In the present study, we assembled and compared two mitogenomes from the Rhizopogon genus. The two mitogenomes of R. salebrosus and R. vinicolor comprised circular DNA molecules, with the sizes of 66,704 bp and 77,109 bp, respectively. Comparative mitogenome analysis indicated that the length and base composition of protein coding genes (PCGs), rRNA genes and tRNA genes varied between the two species. Large fragments aligned between the mitochondrial and nuclear genomes of both R. salebrosus (43.41 kb) and R. vinicolor (12.83 kb) indicated that genetic transfer between mitochondrial and nuclear genomes has occurred over evolutionary time of Rhizopogon species. Intronic regions were found to be the main factors contributing to mitogenome expansion in R. vinicolor. Variations in the number and type of introns in the two mitogenomes indicated that frequent intron loss/gain events occurred during the evolution of Rhizopogon species. Phylogenetic analyses based on Bayesian inference (BI) and Maximum likelihood (ML) methods using a combined mitochondrial gene set yielded identical and well-supported tree topologies, wherein Rhizopogon species showed close relationships with Agaricales species. This is the first study of mitogenomes within the genus Rhizopogon, and it provides a basis for understanding the evolution and differentiation of mitogenomes from the ectomycorrhizal fungal genus.
机译:在本研究中,我们组装并与Rhizogon Genus进行了两种诱导物。 R. SaleBrosus和R.Vinicolor的两种诱导物包含圆形DNA分子,分别为66,704bp和77,109bp的尺寸。比较促催化分析表明,两种物种之间变化的蛋白质编码基因(PCG),RRNA基因和TRNA基因的长度和基础组成。在R. SaleBrosus(43.41kb)和vinicolor(12.83kb)的线粒体和核基因组之间对准的大碎片表明线粒体和核基因组之间的遗传转移发生在Rhizogon物种的进化时间上。发现内部区域是有助于促致促血管瘤的膨胀的主要因素。两种诱导物中的内含子的数量和类型的变化表明,在Rhizogon物种的演变期间发生频繁的内含子损耗/增益事件。使用组合线粒体基因组的基于贝叶斯推理(BI)和最大似然(M1)方法的系统发育分析产生相同且良好地支持的树拓好,其中Rhizogogon物种与伞菌物种显示了密切的关系。这是Rhizogon属内毒素的第一次研究,并为理解从突出的菌根真菌属的毒蛛的演变和分化提供了依据。

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