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哺乳动物功能多样性和栖息地异质性:对人科动物栖息地重建的启示。

Mammal functional diversity and habitat heterogeneity: Implications for hominin habitat reconstruction.

机构信息

Center for Advanced Study of Human Paleobiology, Department of Anthropology, The George Washington University, USA.

Institute of Human Origins, School of Human Evolution and Social Change, Arizona State University, USA.

出版信息

J Hum Evol. 2020 Sep;146:102853. doi: 10.1016/j.jhevol.2020.102853. Epub 2020 Aug 2.

Abstract

Hominin habitats are frequently described as 'mosaic' based on interpretations of fossil assemblages comprising taxa with divergent functional adaptations (e.g., both grazers and browsers). This interpretation rests on an assumption that mammal functional diversity is positively associated with habitat heterogeneity. We test this assumption using modern mammal data for 141 sites in Africa. Species average body mass and locomotor and dietary information was compiled for all species >500 g. The functional diversity of each species assemblage was measured using five metrics: locomotor richness, trophic richness, functional richness, functional divergence, and functional evenness. We used a high-resolution woody cover estimate for sub-Saharan Africa to compute the coefficient of variation of percentage of woody cover for each site. We used a published land cover classification to compute the number of habitat patches and the number of distinct habitat types at each site. Multiple regressions were conducted at 9 different spatial resolutions (pixel size ranging from 100 m to 30 km) to explore the relationship between functional diversity and habitat heterogeneity metrics. The overall number of species found at a site is strongly positively associated with functional richness, locomotor richness, and trophic richness at all spatial resolutions. The number of habitat types at a site and the density of habitat patches show a modest positive relationship with most functional diversity metrics at most spatial resolutions. The coefficient of variation in woody cover is a very poor predictor of functional diversity. The locomotor and trophic richness of mammal communities are positively associated with habitat heterogeneity and may be useful for reconstructing aspects of heterogeneity at hominin sites. However, the overall number of species is an important confounding variable, which in turn depends on the sample size of the overall fossil sample. Researchers should carefully consider impacts of sample size on faunal reconstructions of habitat heterogeneity.

摘要

人科动物的栖息地通常被描述为“镶嵌”,这是基于对包含具有不同功能适应的分类群的化石组合的解释得出的(例如,既有食草动物又有食叶动物)。这种解释基于哺乳动物功能多样性与栖息地异质性呈正相关的假设。我们使用非洲 141 个地点的现代哺乳动物数据来检验这一假设。为所有>500 克的物种编制了物种平均体重以及运动和饮食信息。使用五个指标来衡量每个物种组合的功能多样性:运动方式多样性、营养多样性、功能丰富度、功能发散度和功能均匀度。我们使用了撒哈拉以南非洲的高分辨率木质覆盖估计值来计算每个地点木质覆盖百分比的变异系数。我们使用已发表的土地覆盖分类法来计算每个地点的栖息地斑块数量和不同栖息地类型的数量。在 9 个不同的空间分辨率(像素大小从 100 米到 30 公里)下进行了多元回归,以探讨功能多样性与栖息地异质性指标之间的关系。在所有空间分辨率下,一个地点发现的物种总数与功能丰富度、运动方式多样性和营养多样性呈很强的正相关。一个地点的栖息地类型数量和栖息地斑块密度与大多数功能多样性指标在大多数空间分辨率下呈适度正相关。木质覆盖的变异系数是功能多样性的一个很差的预测指标。哺乳动物群落的运动方式和营养多样性与栖息地异质性呈正相关,可能有助于重建人科动物遗址的异质性方面。然而,物种总数是一个重要的混杂变量,而物种总数又取决于化石总体样本的样本量。研究人员应仔细考虑样本量对栖息地异质性的动物群重建的影响。

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