Literature DB >> 24910493

Intrinsic and extrinsic drivers of succession: Effects of habitat age and season on an aquatic insect community.

Ebony G Murrell1, Anthony R Ives2, Steven A Juliano1.   

Abstract

1. Classical studies of succession, largely dominated by plant community studies, focus on intrinsic drivers of change in community composition, such as interspecific competition and changes to the abiotic environment. They often do not consider extrinsic drivers of colonization, such as seasonal phenology, that can affect community change. 2. We investigated both intrinsic and extrinsic drivers of succession for dipteran communities that occupy ephemeral pools, such as those in artificial containers. By initiating communities at different times in the season and following them over time, we compared the relative importance of intrinsic (i.e., habitat age) vs. extrinsic (i.e., seasonal phenology) drivers of succession. 3. We placed water-filled artificial containers in a deciduous forest with 20 containers initiated in each of three months. Containers were sampled weekly to assess community composition. Repeated-measures mixed-effects analysis of community correspondence analysis (CA) scores enabled us to partition intrinsic and extrinsic effects on succession. Covariates of temperature and precipitation were also tested. 4. Community trajectories (as defined by CA) differed significantly with habitat age and season, indicating that both intrinsic and extrinsic effects influence succession patterns. Comparisons of AICcs showed that habitat age was more important than season for species composition. Temperature and precipitation did not explain composition changes beyond those explained by habitat age and season. 5. Quantification of relative strengths of intrinsic and extrinsic effects on succession in dipteran and other ephemeral communities enables us to disentangle processes that must be understood for predicting changes in community composition.

Entities:  

Keywords:  Animal succession; Diptera; aquatic insects; community composition; mosquito; seasonality

Year:  2014        PMID: 24910493      PMCID: PMC4044729          DOI: 10.1111/een.12103

Source DB:  PubMed          Journal:  Ecol Entomol        ISSN: 0307-6946            Impact factor:   2.465


  20 in total

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  3 in total

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