To converge or not to converge in environmental space: Testing for similar environments between analogous succulent plants of North America and Africa


Por: Alvarado-Cárdenas L.O., Martínez-Meyer E., Feria T.P., Eguiarte L.E., Hernández H.M., Midgley G., Olson M.E.

Publicada: 1 jun 2013
Categoría: Plant Science

Resumen:
Background and Aims Convergent evolution is invoked to explain similarity between unrelated organisms in similar environments, but most evaluations of convergence analyse similarity of organismal attributes rather than of the environment. This study focuses on the globular succulent plants of the Americas, the cacti, and their counterparts in Africa in the ice-plant, spurge and milkweed families. Though often held up as paragons of convergent morphological evolution, the environmental similarity of these plants has remained largely unexamined from a quantitative perspective. Methods Five hotspots (centres of high species diversity of globular succulents) were selected, two in Mexico and three in South Africa. Their environments were compared using niche modelling tools, randomization tests of niche similarity and multivariate analyses to test for environmental similarity. Key Results Although the sites selected have 'similar' but unrelated life forms, almost all our results highlighted more climate differences than similarities between the hotspots. Interprediction of niches within and between continents, a niche equivalence test, and MANOVA results showed significant differences. In contrast, a niche similarity test showed that the comparisons of Cuatrociénegas-Richtersveld, Huizache-Knersvlakte and Huizache-Richtersveld were similar. Conclusions Differences in rainfall and temperature regimes and the potential effect of edaphic factors may be involved in the differences between the hotspots. In addition, differences in structure, morphology and physiology of the globular succulents may coincide with some of the climatic dissimilarities; i.e. given convergence as the evolution of similar morphologies under similar conditions, then it may be that differing environments diagnose inconspicuous morphological differences. Moreover, although fine-scale differences between sites were found, a coarser perspective shows that these sites are clearly similar as drylands with relatively moderate drought and mild temperatures, illustrating how all studies of convergence must address the issue of how similar two entities must be before they are considered convergent. © 2013 The Author. Published by Oxford University Press on behalf of the Annals of Botany Company. All rights reserved.

Filiaciones:
Alvarado-Cárdenas L.O.:
 Univ Nacl Autonoma Mexico, Inst Biol, CU, Mexico City 04510, DF, Mexico

Martínez-Meyer E.:
 Univ Nacl Autonoma Mexico, Inst Biol, CU, Mexico City 04510, DF, Mexico

Feria T.P.:
 Department of Biology, University of Texas-Pan American, 1201 W. University Drive, Edinburg, TX 78541, United States

Eguiarte L.E.:
 Univ Nacl Autonoma Mexico, Inst Ecol, Dept Ecol Evolut, CU, Mexico City 04510, DF, Mexico

Hernández H.M.:
 Univ Nacl Autonoma Mexico, Inst Biol, CU, Mexico City 04510, DF, Mexico

Midgley G.:
 Climate Change Research Group, Kirstenbosch Research Centre, South African National Biodiversity Institute, PBag x7, Claremont, Cape Town 7735, South Africa

Olson M.E.:
 Univ Nacl Autonoma Mexico, Inst Biol, CU, Mexico City 04510, DF, Mexico
ISSN: 03057364
Editorial
Oxford University Press, GREAT CLARENDON ST, OXFORD OX2 6DP, ENGLAND, Reino Unido
Tipo de documento: Article
Volumen: 111 Número: 6
Páginas: 1125-1138
WOS Id: 000319433300008
ID de PubMed: 23576687
imagen All Open Access, Bronze

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