Desiccation resistance reflects patterns of microhabitat choice in a Central American assemblage of wandering spiders

J Exp Biol. 2014 Aug 1;217(Pt 15):2789-95. doi: 10.1242/jeb.102533. Epub 2014 May 22.

Abstract

The lowland rainforest of northeastern Costa Rica harbours an assemblage of large wandering spider species belonging to three habitat subguilds: (1) semi-aquatic, (2) forest ground dwelling and (3) vegetation dwelling. We hypothesized that desiccation resistance should differ among species preferring different microhabitats and the associated microclimate. Desiccation resistance was assessed by: (1) measuring water loss rates of the spiders under relatively dry experimental conditions, and (2) recording desiccation susceptibility, i.e. the reactions of the spiders to a relatively dry environment. High water loss rates and desiccation susceptibility of the semi-aquatic and forest-ground-dwelling subguilds clearly mirrored the relatively humid microclimate of the understory. Significantly lower water loss rates and desiccation susceptibility of the vegetation-dwelling species reflected the highly variable, often dry and hot conditions of the rainforest canopy and forest edge habitats. Vegetation-dwelling wandering spiders are therefore physiologically better adapted to dry conditions than the semi-aquatic and forest-ground-dwelling species. The results illustrate the significance of physiological characteristics for explaining both species-specific habitat use and, in a larger context, niche partitioning within a community.

Keywords: Canopy; Ctenidae; Ecology; Physiology; Rainforest; Trechaleidae.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Costa Rica
  • Desiccation
  • Ecosystem*
  • Microclimate
  • Rainforest
  • Spiders / physiology*
  • Water Loss, Insensible / physiology*