Publications des scientifiques de l'IRD

Foucaud J., Rey O., Robert S., Crespin L., Orivel J., Facon B., Loiseau A., Jourdan Hervé, Kenne M., Masse P. S. M., Tindo M., Vonshak M., Estoup A. (2013). Thermotolerance adaptation to human-modified habitats occurs in the native range of the invasive ant Wasmannia auropunctata before long-distance dispersal. Evolutionary Applications, 6 (4), p. 721-734. ISSN 1752-4571.

Titre du document
Thermotolerance adaptation to human-modified habitats occurs in the native range of the invasive ant Wasmannia auropunctata before long-distance dispersal
Année de publication
2013
Type de document
Article référencé dans le Web of Science WOS:000319349400012
Auteurs
Foucaud J., Rey O., Robert S., Crespin L., Orivel J., Facon B., Loiseau A., Jourdan Hervé, Kenne M., Masse P. S. M., Tindo M., Vonshak M., Estoup A.
Source
Evolutionary Applications, 2013, 6 (4), p. 721-734 ISSN 1752-4571
Key evolutionary events associated with invasion success are traditionally thought to occur in the introduced, rather than the native range of species. In the invasive ant Wasmannia auropunctata, however, a shift in reproductive system has been demonstrated within the native range, from the sexual non-dominant populations of natural habitats to the clonal dominant populations of human-modified habitats. Because abiotic conditions of human- modified habitats are hotter and dryer, we performed lab experiments on workers from a set of native and introduced populations, to investigate whether these ecological and genetic transitions were accompanied by a change in thermotolerance and whether such changes occurred before establishment in the introduced range. Thermotolerance levels were higher in native populations from human-modified habitats than in native populations from natural habitats, but were similar in native and introduced populations from human-modified habitats. Differences in thermotolerance could not be accounted for by differences in body size. A scenario based on local adaptation in the native range before introduction in remote areas represents the most parsimonious hypothesis to account for the observed phenotypic pattern. These findings highlight the importance of human land use in explaining major contemporary evolutionary changes.
Plan de classement
Sciences fondamentales / Techniques d'analyse et de recherche [020] ; Sciences du monde animal [080] ; Etudes, transformation, conservation du milieu naturel [082]
Localisation
Fonds IRD [F B010060360]
Identifiant IRD
fdi:010060360
Contact