首页> 外文期刊>Proceedings of the Royal Society. Biological sciences >Locomotor constraints favour the evolution of the human pygmy phenotype in tropical rainforests
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Locomotor constraints favour the evolution of the human pygmy phenotype in tropical rainforests

机译:机器人约束有利于热带雨林中人类侏儒表型的演变

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The convergent evolution of the human pygmy phenotype in tropical rainforests is widely assumed to reflect adaptation in response to the distinct ecological challenges of this habitat (e.g. high levels of heat and humidity, high pathogen load, low food availability, and dense forest structure), yet few precise adaptive benefits of this phenotype have been proposed. Here, we describe and test a biomechanical model of how the rainforest environment can alter gait kinematics such that short stature is advantageous in dense habitats. We hypothesized that environmental constraints on step length in rainforests alter walking mechanics such that taller individuals are expected to walk more slowly due to their inability to achieve preferred step lengths in the rainforest. We tested predictions from this model with experimental field data from two short-statured populations that regularly forage in the rainforest: the Batek of Peninsular Malaysia and the Tsimane of the Bolivian Amazon. In accordance with model expectations, we found stature-dependent constraints on step length in the rainforest and concomitant reductions in walking speed that are expected to compromise foraging efficiency. These results provide the first evidence that the human pygmy phenotype is beneficial in terms of locomotor performance and highlight the value of applying laboratory-derived biomechanical models to field settings for testing evolutionary hypotheses.
机译:广泛假设对热带雨林中的人类侏儒表型的收敛演变是为了反映这种栖息地的不同生态挑战(例如高水平的热和湿度,高病原体载荷,低食物可用性和致密的森林结构)来反映适应性已经提出了这种表型的精确适应性益处。在这里,我们描述并测试了雨林环境如何改变步态运动学的生物力学模型,使得短地具有致密栖息地是有利的。我们假设雨林中的步长的环境限制改变行走机构,使得较高的人预计由于无法在雨林中获得优选的步长而越来越慢地走得更远。我们通过两种短核人群的实验现场数据测试了来自该模型的预测,这些群体定期觅食在雨林中:半岛马来西亚的Batek和玻利维亚亚马逊的十匠。根据型号预期,我们发现了对雨林中的阶梯长度的依赖性约束,并伴随着妥协效率的步行速度的减少。这些结果提供了第一种证据表明人类侏儒表型在运动性能方面是有益的,并突出了将实验室衍生的生物力学模型应用于现场设置的价值,以获得进化假设的现场设置。

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