首页> 外文期刊>Scientific reports. >Relation between mitochondrial DNA hyperdiversity, mutation rate and mitochondrial genome evolution in Melarhaphe neritoides (Gastropoda: Littorinidae) and other Caenogastropoda
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Relation between mitochondrial DNA hyperdiversity, mutation rate and mitochondrial genome evolution in Melarhaphe neritoides (Gastropoda: Littorinidae) and other Caenogastropoda

机译:神经变种(Melarhaphe neritoides)(Gastropoda:Littorinidae)和其他Caenogastropoda的线粒体DNA多样性,突变率和线粒体基因组进化之间的关系

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Mitochondrial DNA hyperdiversity is primarily caused by high mutation rates (μ) and has potential implications for mitogenome architecture and evolution. In the hyperdiverse mtDNA of Melarhaphe neritoides (Gastropoda: Littorinidae), high mutational pressure generates unusually large amounts of synonymous variation, which is expected to (1) promote changes in synonymous codon usage, (2) reflect selection at synonymous sites, (3) increase mtDNA recombination and gene rearrangement, and (4) be correlated with high mtDNA substitution rates. The mitogenome of M. neritoides was sequenced, compared to closely related littorinids and put in the phylogenetic context of Caenogastropoda, to assess the influence of mtDNA hyperdiversity and high μ on gene content and gene order. Most mitogenome features are in line with the trend in Mollusca, except for the atypical secondary structure of the methionine transfer RNA lacking the TΨC-loop. Therefore, mtDNA hyperdiversity and high μ in M. neritoides do not seem to affect its mitogenome architecture. Synonymous sites are under positive selection, which adds to the growing evidence of non-neutral evolution at synonymous sites. Under such non-neutrality, substitution rate involves neutral and non-neutral substitutions, and high μ is not necessarily associated with high substitution rate, thus explaining that, unlike high μ, a high substitution rate is associated with gene order rearrangement.
机译:线粒体DNA高度多样性主要是由高突变率(μ)引起的,并且对有丝分裂基因组的结构和进化具有潜在的影响。在神经变种(Melarhaphe neritoides)(Gastropoda:Littorinidae)的超多样性mtDNA中,高突变压力产生异常大量的同义变异,这有望(1)促进同义密码子使用的变化,(2)反映在同义位点的选择,(3)增加mtDNA重组和基因重排,并且(4)与高mtDNA替代率相关。对神经支原体的有丝分裂基因组进行测序,并与密切相关的littorinids进行比较,并放入Caenogastropoda的系统发育背景中,以评估mtDNA高度多样性和高μ对基因含量和基因顺序的影响。除了没有TΨC环的蛋氨酸转移RNA的非典型二级结构外,大多数有丝分裂基因组的特征与软体动物的趋势一致。因此,mtDNA多样性和神经支原体中的高μ似乎并不影响其有丝分裂基因组结构。同义词站点处于积极选择之下,这增加了同义词站点中非中性进化的证据。在这种非中性下,取代率涉及中性和非中性取代,并且高μ不一定与高取代率相关,因此可以解释为,与高μ不同,高取代率与基因顺序重排有关。

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