4.5 Article

Assembling an ant community: species functional traits reflect environmental filtering

期刊

OECOLOGIA
卷 169, 期 4, 页码 1063-1074

出版社

SPRINGER
DOI: 10.1007/s00442-012-2262-7

关键词

Ants (Formicidae); Community assembly; Size-grain hypothesis; Stress tolerance; Trait-environment links

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资金

  1. Archbold Biological Station
  2. NSF [GK-12, DEB-0316524, DGE-0841233]
  3. Office Of Internatl Science &Engineering
  4. Office Of The Director [0852917] Funding Source: National Science Foundation

向作者/读者索取更多资源

Species should only persist in local communities if they have functional traits that are compatible with habitat-specific environmental conditions. Consequently, pronounced regional environmental gradients should produce environmental filtering, or a trait-based spatial segregation of species. It is critical to quantify the links between species' functional traits and their environment in order to reveal the relative importance of this process to community assembly and promote understanding of the impacts of ongoing environmental changes. We investigated this relationship using epigaeic ants in an environmentally heterogeneous region of Florida. We found evidence for environmental filtering as environmental conditions such as groundcover, surface temperature, vapor pressure deficit, and plant diversity were strongly correlated with assemblage composition. Certain species traits appeared particularly important to persistence: (1) ants in environments with less groundcover have relatively longer legs but do not differ in size, (2) ants in hotter environments exhibit greater thermal tolerances, and (3) ants in hotter and drier environments do not exhibit greater desiccation resistance. These findings show surface complexity and temperature may interact with morphology and physiology to impact the spatial distribution of ants and underscore the importance of climate change. Climate warming is predicted to alter assemblage composition, competitive dynamics, and consequently impact ecosystem processes. We suggest environmental filters acting at regional scales, as shown here, act in tandem with more frequently studied local-scale competitive interactions to delimit ant community assemblages.

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