Structural complexity mediates functional structure of reef fish assemblages among coral habitats

Coral community composition varies considerably due to both environmental conditions and disturbance histories. However, the extent to which coral composition influences associated fish assemblages remains largely unknown. Here an ecological trait-based ordination analysis was used to compare functi...

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Published inEnvironmental biology of fishes Vol. 100; no. 3; pp. 193 - 207
Main Authors Richardson, Laura E., Graham, Nicholas A. J., Pratchett, Morgan S., Hoey, Andrew S.
Format Journal Article
LanguageEnglish
Published Dordrecht Springer Netherlands 01.03.2017
Springer Nature B.V
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Abstract Coral community composition varies considerably due to both environmental conditions and disturbance histories. However, the extent to which coral composition influences associated fish assemblages remains largely unknown. Here an ecological trait-based ordination analysis was used to compare functional richness (range of unique trait combinations), functional evenness (weighted distribution of fishes with shared traits), and functional divergence (proportion of total abundance supported by species with traits on the periphery of functional space) of fish assemblages among six distinct coral habitats. Despite no significant variation in species richness among habitats, there were differences in the functional richness and functional divergence, but not functional evenness, of fish assemblages among habitats. Structural complexity of coral assemblages was the best predictor of the differences in functional richness and divergence among habitats. Functional richness of fish assemblages was highest in branching Porites habitats, lowest in Pocillopora and soft coral habitats, and intermediate in massive Porites , staghorn Acropora , and mixed coral habitats. Massive and branching Porites habitats displayed greater functional divergence in fish assemblages than the Pocillopora habitat, whilst the remaining habitats were intermediate. Differences in functional richness and divergence were largely driven by the presence of small schooling planktivores in the massive and branching Porites habitats. These results indicate that differential structural complexity among coral communities may act as an environmental filter, affecting the distribution and abundance of associated species traits, particularly those of small-bodied schooling fishes.
AbstractList Coral community composition varies considerably due to both environmental conditions and disturbance histories. However, the extent to which coral composition influences associated fish assemblages remains largely unknown. Here an ecological trait-based ordination analysis was used to compare functional richness (range of unique trait combinations), functional evenness (weighted distribution of fishes with shared traits), and functional divergence (proportion of total abundance supported by species with traits on the periphery of functional space) of fish assemblages among six distinct coral habitats. Despite no significant variation in species richness among habitats, there were differences in the functional richness and functional divergence, but not functional evenness, of fish assemblages among habitats. Structural complexity of coral assemblages was the best predictor of the differences in functional richness and divergence among habitats. Functional richness of fish assemblages was highest in branching Porites habitats, lowest in Pocillopora and soft coral habitats, and intermediate in massive Porites, staghorn Acropora, and mixed coral habitats. Massive and branching Porites habitats displayed greater functional divergence in fish assemblages than the Pocillopora habitat, whilst the remaining habitats were intermediate. Differences in functional richness and divergence were largely driven by the presence of small schooling planktivores in the massive and branching Porites habitats. These results indicate that differential structural complexity among coral communities may act as an environmental filter, affecting the distribution and abundance of associated species traits, particularly those of small-bodied schooling fishes.
Coral community composition varies considerably due to both environmental conditions and disturbance histories. However, the extent to which coral composition influences associated fish assemblages remains largely unknown. Here an ecological trait-based ordination analysis was used to compare functional richness (range of unique trait combinations), functional evenness (weighted distribution of fishes with shared traits), and functional divergence (proportion of total abundance supported by species with traits on the periphery of functional space) of fish assemblages among six distinct coral habitats. Despite no significant variation in species richness among habitats, there were differences in the functional richness and functional divergence, but not functional evenness, of fish assemblages among habitats. Structural complexity of coral assemblages was the best predictor of the differences in functional richness and divergence among habitats. Functional richness of fish assemblages was highest in branching Porites habitats, lowest in Pocillopora and soft coral habitats, and intermediate in massive Porites , staghorn Acropora , and mixed coral habitats. Massive and branching Porites habitats displayed greater functional divergence in fish assemblages than the Pocillopora habitat, whilst the remaining habitats were intermediate. Differences in functional richness and divergence were largely driven by the presence of small schooling planktivores in the massive and branching Porites habitats. These results indicate that differential structural complexity among coral communities may act as an environmental filter, affecting the distribution and abundance of associated species traits, particularly those of small-bodied schooling fishes.
Author Pratchett, Morgan S.
Hoey, Andrew S.
Graham, Nicholas A. J.
Richardson, Laura E.
Author_xml – sequence: 1
  givenname: Laura E.
  surname: Richardson
  fullname: Richardson, Laura E.
  email: laura.richardson1@my.jcu.edu.au
  organization: ARC Centre of Excellence for Coral Reef Studies, James Cook University
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  givenname: Nicholas A. J.
  surname: Graham
  fullname: Graham, Nicholas A. J.
  organization: ARC Centre of Excellence for Coral Reef Studies, James Cook University, Lancaster Environment Centre, Lancaster University
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  givenname: Morgan S.
  surname: Pratchett
  fullname: Pratchett, Morgan S.
  organization: ARC Centre of Excellence for Coral Reef Studies, James Cook University
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  givenname: Andrew S.
  surname: Hoey
  fullname: Hoey, Andrew S.
  organization: ARC Centre of Excellence for Coral Reef Studies, James Cook University
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Environmental filtering
Coral composition
Functional diversity
Traits
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PublicationCentury 2000
PublicationDate 20170300
2017-3-00
20170301
PublicationDateYYYYMMDD 2017-03-01
PublicationDate_xml – month: 3
  year: 2017
  text: 20170300
PublicationDecade 2010
PublicationPlace Dordrecht
PublicationPlace_xml – name: Dordrecht
PublicationTitle Environmental biology of fishes
PublicationTitleAbbrev Environ Biol Fish
PublicationYear 2017
Publisher Springer Netherlands
Springer Nature B.V
Publisher_xml – name: Springer Netherlands
– name: Springer Nature B.V
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Snippet Coral community composition varies considerably due to both environmental conditions and disturbance histories. However, the extent to which coral composition...
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SubjectTerms Acropora
Animal populations
Animal Systematics/Taxonomy/Biogeography
Associated species
Biomedical and Life Sciences
branching
Community composition
Community ecology
community structure
Coral reefs
corals
Environment
Environmental conditions
environmental factors
Fish
Freshwater & Marine Ecology
Habitats
Life Sciences
Nature Conservation
Ordination
ordination techniques
planktivores
Pocillopora
Porites
species diversity
Species richness
Zoology
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Title Structural complexity mediates functional structure of reef fish assemblages among coral habitats
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