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Is molecular evolution faster in the tropics?

机译:在热带地区分子进化更快吗?

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摘要

The evolutionary speed hypothesis (ESH) suggests that molecular evolutionary rates are higher among species inhabiting warmer environments. Previously, the ESH has been investigated using small numbers of latitudinally-separated sister lineages; in animals, these studies typically focused on subsets of Chordata and yielded mixed support for the ESH. This study analyzed public DNA barcode sequences from the cytochrome c oxidase subunit I (COI) gene for six of the largest animal phyla (Arthropoda, Chordata, Mollusca, Annelida, Echinodermata, and Cnidaria) and paired latitudinally-separated taxa together informatically. Of 8037 lineage pairs, just over half (51.6%) displayed a higher molecular rate in the lineage inhabiting latitudes closer to the equator, while the remainder (48.4%) displayed a higher rate in the higher-latitude lineage. To date, this study represents the most comprehensive analysis of latitude-related molecular rate differences across animals. While a statistically-significant pattern was detected from our large sample size, our findings suggest that the EHS may not serve as a strong universal mechanism underlying the latitudinal diversity gradient and that COI molecular clocks may generally be applied across latitudes. This study also highlights the merits of using automation to analyze large DNA barcode datasets.
机译:进化速度假说(ESH)表明,在较温暖的环境中,分子进化速率更高。以前,ESH已使用少量经纬度分隔的姐妹血统进行了研究。在动物中,这些研究通常集中在Chordata的子集上,并产生了对ESH的混合支持。这项研究分析了来自细胞色素C氧化酶亚基I(COI)基因的公共DNA条形码序列,该序列来自六个最大的动物门(节肢动物,衣原体,软体动物,猫科动物,棘皮动物和猪唇草),并以经纬度分离的分类单元进行了信息学上的配对。在8037个谱系对中,一半以上(51.6%)的谱系在居住于赤道附近的谱系中显示出较高的分子速率,而其余(48.4%)在更高纬度的谱系中显示出较高的分子速率。迄今为止,这项研究代表了动物中与纬度相关的分子速率差异的最全面分析。尽管从我们的大样本量中检测到了具有统计学意义的模式,但我们的发现表明EHS可能不是纬度多样性梯度背后的强大通用机制,而且COI分子钟通常可用于整个纬度。这项研究还强调了使用自动化分析大型DNA条形码数据集的优点。

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