On the proportional abundance of species: Integrating population genetics and community ecology.

Sci Rep

Centro de Análisis Estocástico y Aplicaciones, Facultad de Ingeniería and Facultad de Matemáticas, Pontificia Universidad Católica de Chile, Casilla 306, Santiago, 22, Chile.

Published: December 2017

AI Article Synopsis

  • The frequencies of genes in populations and species in communities are influenced by similar biological processes, like birth, death, and immigration.
  • A new stochastic model has been developed to analyze the species proportional abundance distribution (SPAD), showing that it follows a beta distribution similar to gene frequencies.
  • This model may bridge concepts in genetics and ecology, enhancing understanding of species abundance distribution as it applies to both genes and species in various contexts.

Article Abstract

The frequency of genes in interconnected populations and of species in interconnected communities are affected by similar processes, such as birth, death and immigration. The equilibrium distribution of gene frequencies in structured populations is known since the 1930s, under Wright's metapopulation model known as the island model. The equivalent distribution for the species frequency (i.e. the species proportional abundance distribution (SPAD)), at the metacommunity level, however, is unknown. In this contribution, we develop a stochastic model to analytically account for this distribution (SPAD). We show that the same as for genes SPAD follows a beta distribution, which provides a good description of empirical data and applies across a continuum of scales. This stochastic model, based upon a diffusion approximation, provides an alternative to neutral models for the species abundance distribution (SAD), which focus on number of individuals instead of proportions, and demonstrate that the relative frequency of genes in local populations and of species within communities follow the same probability law. We hope our contribution will help stimulate the mathematical and conceptual integration of theories in genetics and ecology.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5711905PMC
http://dx.doi.org/10.1038/s41598-017-17070-1DOI Listing

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