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Hominin geographical range dynamics and relative brain size: Do non-human primates provide a good analogy?

机译:人参地理范围动态和相对大脑大小:非人类灵长类动物提供良好的类比吗?

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We use climatic and satellite remote sensing data to characterize environmental seasonality in the geographical ranges of extant non-human primates in order to assess the effect of relative brain size on tolerance of more seasonal habitats. Demonstration of such an effect in living non-human primates could provide a comparative framework for modeling hominin dispersals and geographical range dynamics in the Pliocene and Pleistocene. Our analyses found no such effect: there are neither positive nor negative correlations between relative brain size and either geographical range size or the average and range of values for environmental seasonality, whether analysed at the level of all primates, or within parvorders (strepsirrhine, catarrhine, platyrrhine). Independent analyses by other researchers comparing feeding behaviour and ecology at individual primate study sites demonstrate that in seasonal environments, the year-round metabolic costs of maintaining a relatively large brain are met by adaptive behavioural/dietary strategies. However, consistent with our,own results, those comparative studies found that there was no overall association, whether positive or negative, between 'raw' environmental seasonality and primate relative brain size. We must therefore look elsewhere for a comparative model of hominin geographical range dynamics in the Pleistocene. (C) 2015 Elsevier Ltd. All rights reserved.
机译:我们使用气候和卫星遥感数据来描述现存非人类灵长类动物地理范围内的环境季节性特征,以评估相对大脑大小对更多季节性栖息地的耐受性的影响。在活的非人类灵长类动物中这种作用的证明可以提供一个比较框架,用于模拟上新世和更新世中的人红素散布和地理范围动态。我们的分析没有发现这样的影响:相对大脑大小与地理范围大小或环境季节性值的平均值和范围之间都没有正相关或负相关,无论是在所有灵长类动物的水平上,还是在同卵异体动物内(链霉菌素,卡他汀,platyrrhine)。其他研究人员对单个灵长类动物研究地点的进食行为和生态进行比较的独立分析表明,在季节性环境中,适应性行为/饮食策略可满足维持相对较大大脑的全年代谢成本。然而,与我们自己的结果一致的是,那些比较研究发现,“原始”环境季节性与灵长类动物相对大脑大小之间没有总体关联,无论是正面还是负面。因此,我们必须在别处寻找更新世人均地理范围动力学的比较模型。 (C)2015 Elsevier Ltd.保留所有权利。

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