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How feathered are birds? Environment predicts both the mass and density of body feathers

机译:羽毛是多么鸟儿? 环境预测身体羽毛的质量和密度

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Studies modelling heat transfer of bird plumage design suggest that insulative properties can be attributed to the density and structure of the downy layer, whereas waterproofing is the result of the outer layer, comprised of contour feathers. In this study, we test how habitat and thermal condition affect feather mass and density of body feathers (contour, semiplume and downy feathers) measured on the ventral and dorsal sides of the body, using a phylogenetic comparative analysis of 152 bird species. Our results demonstrate that feather mass and the density of downy feathers are higher in species that inhabit colder environments, whereas total feather density is higher of species breeding under intermediate temperatures compared to the ones breeding under more extreme conditions. The density of contour feathers, depending on the body region, is either quadratically related or negatively correlated with minimum winter temperature. The density of contour and downy feathers, measured on both sides of the body, is higher in aquatic than in terrestrial birds. However, among the former, diving behaviour does not select for further increases in body feather mass or density. The results of this study provides key insights into how the plumage of birds is adapted to different environments and lifestyles and provides a basis for understanding the diverse range and the evolution of variation in these characteristics.
机译:鸟羽羽毛设计的传热模型表明绝缘特性可以归因于沉默层的密度和结构,而防水是外层的结果,包括轮廓羽毛。在这项研究中,我们使用152只鸟物种的系统发育比较分析,测试栖息地和热条件如何影响身体腹侧和背侧的身体羽毛(轮廓,半杯和柔软羽毛)的羽毛质量和密度。我们的结果表明,居住在更冷的环境中的物种中,羽毛质量和柔软的羽毛的密度更高,而与在更极端的条件下的繁殖中,中间温度下的物种繁殖的总羽毛密度较高。根据体区域的轮廓羽毛的密度是与最小冬季温度相反或呈负相关的。在体内两侧测量的轮廓和柔软羽毛的密度高于陆地鸟类。然而,在前者中,潜水行为不选择进一步增加身体羽毛质量或密度。本研究的结果提供了鸟类羽毛如何适应不同环境和生活方式的关键见解,并为理解这些特征的变化的演变提供了基础。

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