2003Ecology LettersRequires access

Niche differentiation in Mexican birds: using point occurrences to detect ecological innovation

A. Townsend Peterson, Robert D. Holt

Open publisher page 188 citations

Abstract

Abstract The development of quantitative models of species’ distributions has largely ignored the potential for intraspecific variation in species’ niche requirements. Application of such models may nevertheless provide a rich, untapped opportunity to address the basic issue of niche conservatism vs. evolution. We illustrate this potential using genetic algorithms coupled with geographical information systems, which provide a powerful and novel approach to characterizing species’ ecological niches and geographical distributions. Our example consists of several species of Mexican birds with recognized subspecies, and associated climatic and vegetation data. Our basic protocol is to develop an ecological niche model for each subspecies, and use this model to predict distributions of other subspecies. In some cases, the ecological niche model inferred for one subspecies provides an excellent descriptor of other subspecies’ ranges, whereas in other cases the prediction is rather poor. We suggest that the latter may reveal the potential existence of evolved, intraspecific niche differentiation. We discuss alternative, non‐evolutionary explanations, and point out potential implications of our results for predictive models of species’ invasions.

About this research paper

What this paper is about

Abstract The development of quantitative models of species’ distributions has largely ignored the potential for intraspecific variation in species’ niche requirements. Application of such models may nevertheless provide a rich, untapped opportunity to address the basic issue of niche conservatism vs. evolution. We illustrate this potential using genetic algorithms coupled with geographical information systems, which provide a powerful and novel approach to characterizing species’ ecological niches and geographical distributions. Our example consists of several species of Mexican birds with recognized subspecies, and associated climatic and vegetation data. Our basic protocol is to develop an ecological niche model for each subspecies, and use this model to predict distributions of other subspecies. In some cases, the ecological niche model inferred for one subspecies provides an excellent descriptor of other subspecies’ ranges, whereas in other cases the prediction is rather poor. We suggest that the latter may reveal the potential existence of evolved, intraspecific niche differentiation. We discuss alternative, non‐evolutionary explanations, and point out potential implications of our results for predictive models of species’ invasions.

Why it matters

OpenAlex reports 188 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Abstract The development of quantitative models of species’ distributions has largely ignored the potential for intraspecific variation in species’ niche requirements. Application of such models may nevertheless provide a rich, untapped opportunity to address the basic issue of niche conservatism vs. evolution. We illustrate this potential using genetic algorithms coupled with geographical information systems, which provide a powerful and novel approach to characterizing species’ ecological niches and geographical distributions. Our example consists of several species of Mexican birds with recognized subspecies, and associated climatic and vegetation data. Our basic protocol is to develop an ecological niche model for each subspecies, and use this model to predict distributions of other subspecies. In some cases, the ecological niche model inferred for one subspecies provides an excellent descriptor of other subspecies’ ranges, whereas in other cases the prediction is rather poor. We suggest that the latter may reveal the potential existence of evolved, intraspecific niche differentiation. We discuss alternative, non‐evolutionary explanations, and point out potential implications of our results for predictive models of species’ invasions.

Key concepts: Subspecies, Ecological niche, Niche, Niche segregation, Environmental niche modelling, Intraspecific competition, Ecology, Macroecology

Related papers

Back to paper searchBrowse research topicsOriginal source
Niche differentiation in Mexican birds: using point occurrences to detect ecological innovation — Research Paper | ScholarLens