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Tempo and mode in evolution: phylogenetic inertia, adaptation and comparative methods

机译:进化的节奏和方式:系统发生惯性,适应和比较方法

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Before the Evolutionary Synthesis, 'phylogenetic inertia' was associated with theories of orthogenesis, which claimed that organisms possessed an endogenous perfecting principle. The concept in the modern literature dates to Simpson (1944), who used 'evolutionary inertia' as a description of pattern in the fossil record. Wilson (1975) used 'phylogenetic inertia' to describe population-level or organismal properties that can affect the course of evolution in response to selection. Many current authors now view phylogenetic inertia as an alternative hypothesis to adaptation by natural selection when attempting to explain interspecific variation, covariation or lack thereof in phenotypic traits. Some phylogenetic comparative methods have been claimed to allow quantification and testing of phylogenetic inertia. Although some existing methods do allow valid tests of whether related species tend to resemble each other, which we term 'phylogenetic signal', this is simply pattern recognition and does not imply any underlying process. Moreover, comparative data sets generally do not include information that would allow rigorous inferences concerning causal processes underlying such patterns. The concept of phylogenetic inertia needs to be defined and studied with as much care as 'adaptation'.
机译:在进化综合之前,“系统发育惯性”与人工发生理论相关,后者声称生物体具有内生的完善原理。现代文学中的概念可以追溯到辛普森(Simpson,1944),他使用“进化惯性”作为化石记录中图案的描述。威尔逊(Wilson,1975)用“系统进化惯性”来描述种群水平或有机物特性,这些特性会影响对选择的进化过程。现在,当试图解释表型性状的种间变异,共变异或缺乏时,当前许多作者认为系统发生惯性是自然选择适应的另一种假设。一些系统发育比较方法已被要求对系统发生惯性进行量化和测试。尽管某些现有方法确实允许对相关物种是否趋于相似(我们称之为“系统发生信号”)进行有效测试,但这仅是模式识别,并不意味着任何潜在过程。此外,比较数据集通常不包含允许对这些模式背后的因果过程进行严格推断的信息。系统发育惯性的概念需要像“适应”一样仔细地定义和研究。

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