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Positive Selection Driving Cytoplasmic Genome Evolution of the Medicinally Important Ginseng Plant Genus Panax

机译:药用重要人参植物人参属细胞质基因组进化的正选择

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摘要

Panax L. (the ginseng genus) is a shade-demanding group within the family Araliaceae and all of its species are of crucial significance in traditional Chinese medicine. Phylogenetic and biogeographic analyses demonstrated that two rounds of whole genome duplications accompanying with geographic and ecological isolations promoted the diversification of Panax species. However, contributions of the cytoplasmic genomes to the adaptive evolution of Panax species remained largely uninvestigated. In this study, we sequenced the chloroplast and mitochondrial genomes of 11 accessions belonging to seven Panax species. Our results show that heterogeneity in nucleotide substitution rate is abundant in both of the two cytoplasmic genomes, with the mitochondrial genome possessing more variants at the total level but the chloroplast showing higher sequence polymorphisms at the genic regions. Genome-wide scanning of positive selection identified five and 12 genes from the chloroplast and mitochondrial genomes, respectively. Functional analyses further revealed that these selected genes play important roles in plant development, cellular metabolism and adaptation. We therefore conclude that positive selection might be one of the potential evolutionary forces that shaped nucleotide variation pattern of these Panax species. In particular, the mitochondrial genes evolved under stronger selective pressure compared to the chloroplast genes.
机译:人参属人参科中的一个遮荫组,其所有物种在中药中都具有至关重要的意义。系统发生学和生物地理学分析表明,两轮全基因组重复与地理和生态隔离相伴,促进了人参物种的多样化。然而,细胞质基因组对人参物种适应性进化的贡献仍未进行调查。在这项研究中,我们对属于7种人参物种的11个种质的叶绿体和线粒体基因组进行了测序。我们的结果表明,在两个细胞质基因组中,核苷酸取代率的异质性都很丰富,线粒体基因组在总水平上具有更多的变异,但叶绿体在基因区域显示出更高的序列多态性。全基因组扫描阳性选择分别从叶绿体和线粒体基因组中鉴定出五个和十二个基因。功能分析进一步揭示这些选择的基因在植物发育,细胞代谢和适应中起重要作用。因此,我们得出结论,正选择可能是塑造这些人参物种核苷酸变异模式的潜在进化力之一。特别地,与叶绿体基因相比,线粒体基因在更强的选择压力下进化。

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