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Island Rule, quantitative genetics and brain–body size evolution in Homo floresiensis

机译:Homo floresiensis中的岛屿统治,定量遗传学和脑体大小演化

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摘要

Colonization of islands often activate a complex chain of adaptive events that, over a relatively short evolutionary time, may drive strong shifts in body size, a pattern known as the Island Rule. It is arguably difficult to perform a direct analysis of the natural selection forces behind such a change in body size. Here, we used quantitative evolutionary genetic models, coupled with simulations and pattern-oriented modelling, to analyse the evolution of brain and body size in Homo floresiensis, a diminutive hominin species that appeared around 700 kya and survived up to relatively recent times (60-90 kya) on Flores Island, Indonesia. The hypothesis of neutral evolution was rejected in 97% of the simulations, and estimated selection gradients are within the range found in living natural populations. We showed that insularity may have triggered slightly different evolutionary trajectories for body and brain size, which means explaining the exceedingly small cranial volume of H. floresiensis requires additional selective forces acting on brain size alone. Our analyses also support previous conclusions that H. floresiensis may be most likely derived from an early Indonesian H. erectus, which is coherent with currently accepted biogeographical scenario for Homo expansion out of Africa. © 2017 The Author(s) Published by the Royal Society. All rights reserved.
机译:岛屿的定植经常激活一个复杂的自适应事件链,在相对较短的进化时间上,可能会驱动身体尺寸的强烈变化,称为岛屿规则。可以说是难以对身体尺寸变化背后的自然选择力进行直接分析。在这里,我们使用定量进化遗传模型,再加上模拟和面向模式的建模,分析Homo弗洛林斯的大脑和体型的演变,这是一个脑袋中出现在700 kya大约700 kya并幸存下来(60- 90 kya)在弗洛雷斯岛,印度尼西亚。 97%的模拟中拒绝中性演化的假设,估计的选择梯度在生活自然群体中的范围内。我们表明,对于身体和脑大小来说,绝缘性可能引发了略微不同的进化轨迹,这意味着解释H. floresiensis的极小颅内体积需要额外的选择性作用于单独的脑大小。我们的分析也支持以前的结论,即弗洛里斯H.可能是最有可能从早期的印尼直立人,这是一致的与智人走出非洲的目前公认的生物地理情况的。 ©2017由皇家社会发布的作者。版权所有。

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