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Predictors of colony extinction vary by habitat type in social spiders.


ABSTRACT: Many animal societies are susceptible to mass mortality events and collapse. Elucidating how environmental pressures determine patterns of collapse is important for understanding how such societies function and evolve. Using the social spider Stegodyphus dumicola, we investigated the environmental drivers of colony extinction along two precipitation gradients across southern Africa, using the Namib and Kalahari deserts versus wetter savanna habitats to the north and east. We deployed experimental colonies (n = 242) along two ~ 800-km transects and returned to assess colony success in the field after 2 months. Specifically, we noted colony extinction events after the 2-month duration and collected environmental data on the correlates of those extinction events (e.g., evidence of ant attacks, no. of prey captured). We found that colony extinction events at desert sites were more frequently associated with attacks by predatory ants as compared with savanna sites, while colony extinctions in wetter savannas sites were more tightly associated with fungal outbreaks. Our findings support the hypothesis that environments vary in the selection pressures that they impose on social organisms, which may explain why different social phenotypes are often favored in each habitat.

SUBMITTER: McEwen BL 

PROVIDER: S-EPMC7236762 | biostudies-literature | 2020 Jan

REPOSITORIES: biostudies-literature

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Predictors of colony extinction vary by habitat type in social spiders.

McEwen Brendan L BL   Lichtenstein James L L JLL   Fisher David N DN   Wright Colin M CM   Chism Greg T GT   Pinter-Wollman Noa N   Pruitt Jonathan N JN  

Behavioral ecology and sociobiology 20191213 1


Many animal societies are susceptible to mass mortality events and collapse. Elucidating how environmental pressures determine patterns of collapse is important for understanding how such societies function and evolve. Using the social spider <i>Stegodyphus dumicola</i>, we investigated the environmental drivers of colony extinction along two precipitation gradients across southern Africa, using the Namib and Kalahari deserts versus wetter savanna habitats to the north and east. We deployed expe  ...[more]

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