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首页> 外文期刊>Evolution: International Journal of Organic Evolution >Body mass and temperature influence rates of mitochondrial DNA evolution in North American cyprinid fish
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Body mass and temperature influence rates of mitochondrial DNA evolution in North American cyprinid fish

机译:体重和温度对北美鲤鱼线粒体DNA进化的影响速率

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摘要

The mass-specific metabolic rate hypothesis of Gillooly and others predicts that DNA mutation and substitution rates are a function of body mass and temperature. We tested this hypothesis with sequence divergences estimated from mtDNA cytochrome b sequences of 54 taxa of cyprinid fish. Branch lengths estimated from a likelihood tree were compared with metabolic rates calculated from body mass and environmental temperatures experienced by those taxa. The problem of unknown age estimates of lineage splitting was avoided by comparing estimated amounts of metabolic activity along phyletic lines leading to pairs of modern taxa from their most recent common ancestor with sequence divergences along those same pairs of phyletic lines. There were significantly more pairs for which the phyletic line with greater genetic change also had the higher metabolic activity, when compared to the prediction of a hypothesis that body mass and temperature are not related to substitution rate.
机译:Gillooly等人的质量特异性代谢率假说预测DNA突变和替代率是体重和温度的函数。我们用从54个鲤科鱼类类群的mtDNA细胞色素b序列估计的序列差异检验了这一假设。将根据可能性树估计的分支长度与根据这些类群经历的体重和环境温度计算的代谢率进行比较。通过比较沿谱系的新陈代谢活动的估计量,这些谱系导致了来自其最近的共同祖先的成对现代分类单元的代谢活动量,以及沿同一对谱系的序列差异,从而避免了谱系分裂的未知年龄估计问题。与预测体重和温度与替代率无关的假设相比,具有更多遗传变化的系统系也具有更高的代谢活性的对明显多于对。

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