4.5 Article

Global patterns in the shape of species geographical ranges reveal range determinants

期刊

JOURNAL OF BIOGEOGRAPHY
卷 39, 期 4, 页码 760-771

出版社

WILEY
DOI: 10.1111/j.1365-2699.2011.02612.x

关键词

Climatic envelopes; dispersal limitation; macroecology; neutral theory; niche determinism; range shape; species distribution modelling

资金

  1. Spanish Ministry of Science and Innovation [CGL2009-10111, CGL2008-01198-E/BOS]
  2. Danish Council for Independent Research - Natural Sciences [272-07-0242]
  3. EC [036866-GOCE]

向作者/读者索取更多资源

Aim Do species range shapes follow general patterns? If so, what mechanisms underlie those patterns? We show for 11,582 species from a variety of taxa across the world that most species have similar latitudinal and longitudinal ranges. We then seek to disentangle the roles of climate, extrinsic dispersal limitation (e.g. barriers) and intrinsic dispersal limitation (reflecting a species ability to disperse) as constraints of species range shape. We also assess the relationship between range size and shape. Location Global. Methods Range shape patterns were measured as the slope of the regression of latitudinal species ranges against longitudinal ranges for each taxon and continent, and as the coefficient of determination measuring the degree of scattering of species ranges from the 1: 1 line (i.e. latitudinal range = longitudinal range). Two major competing hypotheses explaining species distributions (i. e. dispersal or climatic determinism) were explored. To this end, we compared the observed slopes and coefficients of determination with those predicted by a climatic null model that estimates the potential range shapes in the absence of dispersal limitation. The predictions compared were that species distribution shapes are determined purely by (1) intrinsic dispersal limitation, (2) extrinsic dispersal limitations such as topographic barriers, and (3) climate. Results Using this methodology, we show for a wide variety of taxa across the globe that species generally have very similar latitudinal and longitudinal ranges. However, neither neutral models assuming random but spatially constrained dispersal, nor models assuming climatic control of species distributions describe range shapes adequately. The empirical relationship between the latitudinal and longitudinal ranges of species falls between the predictions of these competing models. Main conclusions We propose that this pattern arises from the combined effect of macroclimate and intrinsic dispersal limitation, the latter being the major determinant among restricted- range species. Hence, accurately projecting the impact of climate change onto species ranges will require a solid understanding of how climate and dispersal jointly control species ranges.

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