Strength of density feedback in census data increases from slow to fast life histories

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Abstract

Life-history theory predicts an increasing rate of population growth among species arranged along a continuum from slow to fast life histories. We examine the effects of this continuum on density-feedback strength estimated using long-term census data from >700 vertebrates, invertebrates, and plants. Four life-history traits (Age at first reproduction, Body size, Fertility, Longevity) were related statistically to Gompertz strength of density feedback using generalized linear mixed-effects models and multi-model inference. Life-history traits alone explained 10 to 30% of the variation in strength across species (after controlling for time-series length and phylogenetic nonindependence). Effect sizes were largest for body size in mammals and longevity in birds, and density feedback was consistently stronger for smaller-bodied and shorter-lived species. Overcompensatory density feedback (strength

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Herrando-Pèrez, S., Delean, S., Brook, B. W., & Bradshaw, C. J. A. (2012). Strength of density feedback in census data increases from slow to fast life histories. Ecology and Evolution, 2(8), 1922–1934. https://doi.org/10.1002/ece3.298

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