Literature DB >> 10753077

A General and Dynamic Species Abundance Model, Embracing the Lognormal and the Gamma Models.

Ola H Diserud, Steinar Engen.   

Abstract

One aspect of community ecology that has been given particular attention is the pattern of species abundances in a community. The species may have a wide range of abundances; some are very common and others rare. When species abundance models are fitted to observations, the lognormal model and one of the gamma models (e.g., the log-series model) are usually applied. The model that gives the best fit according to some goodness-of-fit test is then chosen. By applying a diffusion approximation for each species' dynamics with density regulation of the θ-logistic type, we here present a general species abundance model that embraces the two most widely applied species abundance models, the lognormal and the gamma. Our general model will, therefore, provide a better fit than the two special cases, except when it corresponds to one of them. In contrast to the classical models, ours is also dynamic, making it possible to evaluate the fluctuations in species abundance over time through both biotic and abiotic factors. The model is fitted to several species abundance data sets and our results compared to previous attempts to fit a model, usually either the lognormal or the log-series.

Keywords:  demographic variance; diffusion approximation; dynamic species abundance models; environmental variance; θ‐logistic density regulation

Year:  2000        PMID: 10753077     DOI: 10.1086/303339

Source DB:  PubMed          Journal:  Am Nat        ISSN: 0003-0147            Impact factor:   3.926


  11 in total

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6.  Measurement scale in maximum entropy models of species abundance.

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8.  Evolution of stochastic demography with life history tradeoffs in density-dependent age-structured populations.

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9.  Phenotypic memory drives population growth and extinction risk in a noisy environment.

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10.  Predicting the process of extinction in experimental microcosms and accounting for interspecific interactions in single-species time series.

Authors:  Jake M Ferguson; José M Ponciano
Journal:  Ecol Lett       Date:  2013-12-05       Impact factor: 9.492

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