Weaver Timothy D, Stringer Chris B
Department of Anthropology, University of California, Davis, CA 95616, USA Department of Human Evolution, Max Planck Institute for Evolutionary Anthropology, Leipzig 04103, Germany
Department of Earth Sciences, Natural History Museum, Cromwell Road, London SW7 5BD, UK.
Proc Biol Sci. 2015 Oct 22;282(1817):20151519. doi: 10.1098/rspb.2015.1519.
A variety of lines of evidence support the idea that neutral evolutionary processes (genetic drift, mutation) have been important in generating cranial differences between Neandertals and modern humans. But how do Neandertals and modern humans compare with other species? And how do these comparisons illuminate the evolutionary processes underlying cranial diversification? To address these questions, we used 27 standard cranial measurements collected on 2524 recent modern humans, 20 Neandertals and 237 common chimpanzees to estimate split times between Neandertals and modern humans, and between Pan troglodytes verus and two other subspecies of common chimpanzee. Consistent with a neutral divergence, the Neandertal versus modern human split-time estimates based on cranial measurements are similar to those based on DNA sequences. By contrast, the common chimpanzee cranial estimates are much lower than DNA-sequence estimates. Apparently, cranial evolution has been unconstrained in Neandertals and modern humans compared with common chimpanzees. Based on these and additional analyses, it appears that cranial differentiation in common chimpanzees has been restricted by stabilizing natural selection. Alternatively, this restriction could be due to genetic and/or developmental constraints on the amount of within-group variance (relative to effective population size) available for genetic drift to act on.
多种证据支持这样一种观点,即中性进化过程(遗传漂变、突变)在造成尼安德特人与现代人类颅骨差异方面发挥了重要作用。但是,尼安德特人和现代人类与其他物种相比情况如何?这些比较如何阐明颅骨多样化背后的进化过程?为了解决这些问题,我们使用了在2524名现代人类、20名尼安德特人和237只普通黑猩猩身上收集的27项标准颅骨测量数据,来估计尼安德特人与现代人类之间,以及黑猩猩指名亚种与普通黑猩猩的其他两个亚种之间的分化时间。与中性分化一致,基于颅骨测量的尼安德特人与现代人类的分化时间估计,与基于DNA序列的估计相似。相比之下,普通黑猩猩的颅骨估计值远低于DNA序列估计值。显然,与普通黑猩猩相比,尼安德特人和现代人类的颅骨进化没有受到限制。基于这些及其他分析,普通黑猩猩的颅骨分化似乎受到了稳定自然选择的限制。或者,这种限制可能是由于对遗传漂变起作用的群体内方差量(相对于有效种群大小)存在遗传和/或发育限制。