The relative influence of competition and prey defenses on the phenotypic structure of insectivorous bat ensembles in southern Africa.

Deterministic filters such as competition and prey defences should have a strong influence on the community structure of animals such as insectivorous bats that have life histories characterized by low fecundity, low predation risk, long life expectancy, and stable populations. We investigated the r...

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Main Authors: M Corrie Schoeman, David S Jacobs
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2008-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC2579324?pdf=render
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spelling doaj-e94dfa3a90164dcbaca6bdb3bcf847252020-11-24T21:48:14ZengPublic Library of Science (PLoS)PLoS ONE1932-62032008-01-01311e371510.1371/journal.pone.0003715The relative influence of competition and prey defenses on the phenotypic structure of insectivorous bat ensembles in southern Africa.M Corrie SchoemanDavid S JacobsDeterministic filters such as competition and prey defences should have a strong influence on the community structure of animals such as insectivorous bats that have life histories characterized by low fecundity, low predation risk, long life expectancy, and stable populations. We investigated the relative influence of these two deterministic filters on the phenotypic structure of insectivorous bat ensembles in southern Africa. We used null models to simulate the random phenotypic patterns expected in the absence of competition or prey defences and analysed the deviations of the observed phenotypic pattern from these expected random patterns. The phenotypic structure at local scales exhibited non-random patterns consistent with both competition and prey defense hypotheses. There was evidence that competition influenced body size distribution across ensembles. Competition also influenced wing and echolocation patterns in ensembles and in functional foraging groups with high species richness or abundance. At the same time, prey defense filters influenced echolocation patterns in two species-poor ensembles. Non-random patterns remained evident even after we removed the influence of body size from wing morphology and echolocation parameters taking phylogeny into account. However, abiotic filters such as geographic distribution ranges of small and large-bodied species, extinction risk, and the physics of flight and sound probably also interacted with biotic filters at local and/or regional scales to influence the community structure of sympatric bats in southern Africa. Future studies should investigate alternative parameters that define bat community structure such as diet and abundance to better determine the influence of competition and prey defences on the structure of insectivorous bat ensembles in southern Africa.http://europepmc.org/articles/PMC2579324?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author M Corrie Schoeman
David S Jacobs
spellingShingle M Corrie Schoeman
David S Jacobs
The relative influence of competition and prey defenses on the phenotypic structure of insectivorous bat ensembles in southern Africa.
PLoS ONE
author_facet M Corrie Schoeman
David S Jacobs
author_sort M Corrie Schoeman
title The relative influence of competition and prey defenses on the phenotypic structure of insectivorous bat ensembles in southern Africa.
title_short The relative influence of competition and prey defenses on the phenotypic structure of insectivorous bat ensembles in southern Africa.
title_full The relative influence of competition and prey defenses on the phenotypic structure of insectivorous bat ensembles in southern Africa.
title_fullStr The relative influence of competition and prey defenses on the phenotypic structure of insectivorous bat ensembles in southern Africa.
title_full_unstemmed The relative influence of competition and prey defenses on the phenotypic structure of insectivorous bat ensembles in southern Africa.
title_sort relative influence of competition and prey defenses on the phenotypic structure of insectivorous bat ensembles in southern africa.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2008-01-01
description Deterministic filters such as competition and prey defences should have a strong influence on the community structure of animals such as insectivorous bats that have life histories characterized by low fecundity, low predation risk, long life expectancy, and stable populations. We investigated the relative influence of these two deterministic filters on the phenotypic structure of insectivorous bat ensembles in southern Africa. We used null models to simulate the random phenotypic patterns expected in the absence of competition or prey defences and analysed the deviations of the observed phenotypic pattern from these expected random patterns. The phenotypic structure at local scales exhibited non-random patterns consistent with both competition and prey defense hypotheses. There was evidence that competition influenced body size distribution across ensembles. Competition also influenced wing and echolocation patterns in ensembles and in functional foraging groups with high species richness or abundance. At the same time, prey defense filters influenced echolocation patterns in two species-poor ensembles. Non-random patterns remained evident even after we removed the influence of body size from wing morphology and echolocation parameters taking phylogeny into account. However, abiotic filters such as geographic distribution ranges of small and large-bodied species, extinction risk, and the physics of flight and sound probably also interacted with biotic filters at local and/or regional scales to influence the community structure of sympatric bats in southern Africa. Future studies should investigate alternative parameters that define bat community structure such as diet and abundance to better determine the influence of competition and prey defences on the structure of insectivorous bat ensembles in southern Africa.
url http://europepmc.org/articles/PMC2579324?pdf=render
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