生态位分离
生态位
利基
生态学
环境生态位模型
人口
进化生态学
生物
栖息地
寄主(生物学)
社会学
人口学
作者
Muyang Lu,Scott W. Yanco,Ben Carlson,Kevin Winner,Jeremy M. Cohen,Diego Ellis‐Soto,Shubhi Sharma,Will Rogers,Walter Jetz
标识
DOI:10.1073/pnas.2425582122
摘要
The niche is a key concept that unifies ecology and evolutionary biology. However, empirical and theoretical treatments of the niche are mostly performed at the species level, neglecting individuals as important units of ecological and evolutionary processes. So far, a formal mathematical link between individual-level niches and higher organismal-level niches has been lacking, hampering the unification of ecological theories and more accurate forecasts of biodiversity change. To fill in this gap, we propose a bottom-up approach to derive population and higher organismal-level niches from individual niches. We demonstrate the power of our framework by showing that 1) the statistical properties of higher organismal-level niches (e.g., niche breadth, skewness, etc.) can be partitioned into individual contributions and 2) the species-level niche shifts can be estimated by tracing the responses of individuals. By using individual-level GPS (Global Positioning System) tracking data from three different species, we show that climate change could have contrasting consequences on population-level niche shift depending on individual niche compositions. Our method paves the way for a unifying niche theory and enables mechanistic assessments of organism-environment relationships across organismal scales.
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