4.5 Article

Climatic and geographic correlates of global forest tree species-abundance distributions and community evenness

Journal

JOURNAL OF VEGETATION SCIENCE
Volume 27, Issue 2, Pages 295-305

Publisher

WILEY
DOI: 10.1111/jvs.12346

Keywords

Dispersal; Habitat filtering; Least squares fit; Lognormal distribution; Log-series distribution; Macroecology; Species-abundance distribution

Funding

  1. Japan Society for the Promotion of Science [21310025, 21247006, 15K14607]
  2. [NCN 2014/13/B/NZ8/04681]
  3. Grants-in-Aid for Scientific Research [15K14607] Funding Source: KAKEN

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QuestionsSpecies-abundance distributions (SADs) have long been at the centre of ecological interest because they summarize various patterns of community assembly in condensed form. Here we link observed patterns of SAD shape and evenness to latitude and climatic conditions to infer global trends in abundance distributions. LocationGlobal. MethodsWe compiled data on tree species abundances and climate covariates from 605 sites worldwide. We applied linear regression modelling and nonlinear least squares fitting of log-series and lognormal abundance distributions to species rank-order log-abundance plots to assess latitudinal and climatic gradients in abundance distributions and Pielou evenness. ResultsWe observed significant latitudinal trends in SAD shape and evenness, even after accounting for richness and spatial effects. Evenness tended to increase towards lower latitudes and was positively correlated with actual evapotranspiration and negatively with climatic variability. We observed an excess of log-series SADs at lower latitudes and an increase in lognormal distributions towards northern latitudes. Accordingly, the proportion of species less abundant than expected from a log-series distribution decreased towards the tropics. ConclusionsWe speculate that the observed latitudinal trends are caused by respective gradients in the importance of dispersal for local tree communityassembly. This interpretation implies the hypothesis that tropical communities tend to be more open and input-driven in comparison to temperate communities.

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