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时间依赖性分子进化率。

Time-dependent rates of molecular evolution.

机构信息

Centre for Macroevolution and Macroecology, Evolution Ecology & Genetics, Research School of Biology, Australian National University, Canberra, ACT, Australia.

出版信息

Mol Ecol. 2011 Aug;20(15):3087-101. doi: 10.1111/j.1365-294X.2011.05178.x. Epub 2011 Jul 8.

Abstract

For over half a century, it has been known that the rate of morphological evolution appears to vary with the time frame of measurement. Rates of microevolutionary change, measured between successive generations, were found to be far higher than rates of macroevolutionary change inferred from the fossil record. More recently, it has been suggested that rates of molecular evolution are also time dependent, with the estimated rate depending on the timescale of measurement. This followed surprising observations that estimates of mutation rates, obtained in studies of pedigrees and laboratory mutation-accumulation lines, exceeded long-term substitution rates by an order of magnitude or more. Although a range of studies have provided evidence for such a pattern, the hypothesis remains relatively contentious. Furthermore, there is ongoing discussion about the factors that can cause molecular rate estimates to be dependent on time. Here we present an overview of our current understanding of time-dependent rates. We provide a summary of the evidence for time-dependent rates in animals, bacteria and viruses. We review the various biological and methodological factors that can cause rates to be time dependent, including the effects of natural selection, calibration errors, model misspecification and other artefacts. We also describe the challenges in calibrating estimates of molecular rates, particularly on the intermediate timescales that are critical for an accurate characterization of time-dependent rates. This has important consequences for the use of molecular-clock methods to estimate timescales of recent evolutionary events.

摘要

半个多世纪以来,人们已经知道形态进化的速度似乎随测量的时间范围而变化。在连续几代之间测量的微进化变化速度被发现远远高于从化石记录推断出的大进化变化速度。最近,有人提出分子进化的速度也与时间有关,估计的速度取决于测量的时间尺度。这是继令人惊讶的观察结果之后得出的,即在系谱和实验室突变积累线研究中获得的突变率估计值比长期替代率高出一个数量级或更多。尽管一系列研究为这种模式提供了证据,但该假设仍然存在争议。此外,关于导致分子速率估计值随时间变化的因素的讨论仍在继续。在这里,我们概述了我们对时变速率的理解。我们提供了动物、细菌和病毒中时变速率的证据总结。我们回顾了可能导致速率随时间变化的各种生物学和方法学因素,包括自然选择、校准误差、模型失拟和其他人为因素的影响。我们还描述了校准分子速率估计值的挑战,特别是在准确描述时变速率的关键中间时间尺度上。这对使用分子钟方法估计最近进化事件的时间尺度有重要影响。

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