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The road from Santa Rosalia: A faster tempo of evolution in tropical climates

机译:从圣罗莎莉亚走的路:热带气候中更快的进化速度

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摘要

Using an appropriately designed and replicated study of a latitudinal influence on rates of evolution, we test the prediction by K. Rohde [(1992) Oikos 65, 514–527] that the tempo of molecular evolution in the tropics is greater than at higher latitudes. Consistent with this prediction we found tropical plant species had more than twice the rate of molecular evolution as closely related temperate congeners. Rohde’s climate-speciation hypothesis constitutes one explanation for the cause of that relationship. This hypothesis suggests that mutagenesis occurs more frequently as productivity and metabolic rates increase toward the equator. More rapid mutagenesis was then proposed as the mechanism that increases evolutionary tempo and rates of speciation. A second possible explanation is that faster rates of molecular evolution result from higher tropical speciation rates [e.g., Bromham, L. & Cardillo, M. (2003) J. Evol. Biol. 16, 200–207]. However, we found the relationship continued to hold for genera with the same number of, or more, species in temperate latitudes. This finding suggests that greater rates of speciation in the tropics do not cause higher rates of molecular evolution. A third explanation is that more rapid genetic drift might have occurred in smaller tropical species populations [Stevens, G. C. (1989) Am. Nat. 133, 240–256]. However, we targeted common species to limit the influence of genetic drift, and many of the tropical species we used, despite occurring in abundant populations, had much higher rates of molecular evolution. Nonetheless, this issue is not completely resolved by that precaution and requires further examination.
机译:使用对纬度对进化速率影响的适当设计和复制研究,我们测试了K. Rohde [(1992)Oikos 65,514–527]的预测,即热带地区分子进化的速度大于纬度较高地区的预测。 。与此预测一致,我们发现热带植物物种的分子进化速度是密切相关的温带同源物的两倍以上。罗德(Rohde)的气候形成假说构成了造成这种关系的原因的一种解释。该假设表明,随着生产率和新陈代谢率向赤道的增加,诱变发生的频率更高。然后提出了更快速的诱变作为增加进化速度和物种形成速率的机制。第二种可能的解释是较高的热带物种形成率导致分子进化速度加快[例如,Bromham,L。&Cardillo,M。(2003)J.Evol.J.Med.Biol.215:403-10。生物学16,200–207]。但是,我们发现这种关系在温带纬度的相同或更多物种的属中继续存在。这一发现表明,热带地区更高的物种形成速率不会导致更高的分子进化速率。第三种解释是,较小的热带物种种群中可能发生了更快的遗传漂移[Stevens,G. C.(1989)Am。纳特133,240–256]。但是,我们以普通物种为目标,以限制遗传漂移的影响,尽管我们所使用的许多热带物种人口众多,但它们的分子进化速率却更高。尽管如此,该预防措施尚未完全解决此问题,需要进一步检查。

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