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能否利用功能性状为有蹄类动物种群构建一个广义模型?

Can we use a functional trait to construct a generalized model for ungulate populations?

机构信息

Schoool of Biological and Environmental Sciences, Liverpool John Moores University, Byrom Street, Liverpool, L3 3AF, United Kingdom.

School of Animal, Plant and Environmental Sciences, University of the Witwatersrand, Johannesburg, South Africa.

出版信息

Ecology. 2021 Apr;102(4):e03289. doi: 10.1002/ecy.3289. Epub 2021 Mar 3.

Abstract

Ecologists have long desired predictive models that allow inference on population dynamics, where detailed demographic data are unavailable. Integral projection models (IPMs) allow both demographic and phenotypic outcomes at the level of the population to be predicted from the distribution of a functional trait, like body mass. In species where body mass markedly influences demographic rates, as is the rule among mammals, then IPMs provide not only opportunity to assess the population responses to a given environment, but also improve our understanding of the complex interplay between traits and demographic outcomes. Here, we develop a body-mass-based approach to constructing generalized, predictive IPMs for species of ungulates covering a broad range of body size (25-400 kg). Despite our best efforts, we found that a reliable and general, functional, trait-based model for ungulates was unattainable even after accounting for among-species variation in both age at first reproduction and litter size. We attribute this to the diversity of reproductive tactics among similar-sized species of ungulates, and to the interplay between density-dependent and environmental factors that shape demographic parameters independent of mass at the local scale. These processes thus drive population dynamics and cannot be ignored. Environmental context generally matters in population ecology, and our study shows this may be the case for functional traits in vertebrate populations.

摘要

生态学家长期以来一直希望能够建立预测模型,以便在缺乏详细人口统计数据的情况下进行种群动态推断。积分预测模型 (IPM) 允许根据功能特征(如体重)的分布来预测种群的人口统计和表型结果。在体重明显影响人口率的物种中,就像哺乳动物中的情况一样,那么 IPM 不仅提供了评估种群对特定环境的反应的机会,而且还提高了我们对特征与人口统计结果之间复杂相互作用的理解。在这里,我们为涵盖广泛体型范围(25-400 公斤)的有蹄类动物开发了一种基于体重的方法来构建通用的预测性 IPM。尽管我们尽了最大的努力,但即使考虑到首次繁殖年龄和胎仔大小的种间差异,我们也发现,即使在种间差异方面,一种可靠且通用的基于功能特征的有蹄类动物模型也是无法实现的。我们将这归因于类似大小的有蹄类动物之间的繁殖策略多样性,以及密度依赖和环境因素之间的相互作用,这些因素独立于质量在局部范围内塑造人口参数。因此,这些过程会驱动种群动态,不能被忽视。环境背景在种群生态学中通常很重要,我们的研究表明,这对于脊椎动物种群中的功能特征可能是如此。

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