The Farther the Better: Effects of Multiple Environmental Variables on Reef Fish Assemblages along a Distance Gradient from River Influences

The conservation and management of site-attached assemblages of coastal reefs are particularly challenging because of the tremendous environmental variation that exists at small spatial scales. In this sense, understanding the primary sources of variation in spatial patterns of the biota is fundamen...

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Published inPloS one Vol. 11; no. 12; p. e0166679
Main Authors Neves, Leonardo M., Teixeira-Neves, Tatiana P., Pereira-Filho, Guilherme H., Araújo, Francisco G.
Format Journal Article
LanguageEnglish
Published United States Public Library of Science 01.12.2016
Public Library of Science (PLoS)
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Abstract The conservation and management of site-attached assemblages of coastal reefs are particularly challenging because of the tremendous environmental variation that exists at small spatial scales. In this sense, understanding the primary sources of variation in spatial patterns of the biota is fundamental for designing effective conservation policies. We investigated spatial variation in fish assemblages around the windward and leeward sides of coastal islands situated across a gradient of riverine influence (13 km in length). Specifically, relationships between rocky reef fish assemblages and benthic, topographic and physical predictors were assessed. We hypothesized that river induced disturbances may overcome local habitat features in modeling spatial patterns of fish distribution. Fish assemblages varied primarily due to the strong directional gradient of riverine influence (22.6% of the estimated components of variation), followed by topographic complexity (15%), wave exposure (9.9%), and benthic cover (8%). The trophic structure of fish assemblages changed from having a high abundance of invertebrate feeders in macroalgae-dominated reefs close to river mouths to a high proportion of herbivores, planktivores and invertebrate feeder species in reefs with large boulders covered by epilithic algal matrices, as the distance from rivers increased. This gradient led to an increase of 4.5-fold in fish richness and fish trophic group diversity, 11-fold in fish biomass and 10-fold in fish abundance. Our results have implications for the conservation and monitoring of assemblages patchily distributed at small spatial scales. The major role of distance from river influences on fish assemblages rather than benthic cover and topographic complexity suggest that managing land-based activities should be a conservation priority toward reef restoration.
AbstractList The conservation and management of site-attached assemblages of coastal reefs are particularly challenging because of the tremendous environmental variation that exists at small spatial scales. In this sense, understanding the primary sources of variation in spatial patterns of the biota is fundamental for designing effective conservation policies. We investigated spatial variation in fish assemblages around the windward and leeward sides of coastal islands situated across a gradient of riverine influence (13 km in length). Specifically, relationships between rocky reef fish assemblages and benthic, topographic and physical predictors were assessed. We hypothesized that river induced disturbances may overcome local habitat features in modeling spatial patterns of fish distribution. Fish assemblages varied primarily due to the strong directional gradient of riverine influence (22.6% of the estimated components of variation), followed by topographic complexity (15%), wave exposure (9.9%), and benthic cover (8%). The trophic structure of fish assemblages changed from having a high abundance of invertebrate feeders in macroalgae-dominated reefs close to river mouths to a high proportion of herbivores, planktivores and invertebrate feeder species in reefs with large boulders covered by epilithic algal matrices, as the distance from rivers increased. This gradient led to an increase of 4.5-fold in fish richness and fish trophic group diversity, 11-fold in fish biomass and 10-fold in fish abundance. Our results have implications for the conservation and monitoring of assemblages patchily distributed at small spatial scales. The major role of distance from river influences on fish assemblages rather than benthic cover and topographic complexity suggest that managing land-based activities should be a conservation priority toward reef restoration.
The conservation and management of site-attached assemblages of coastal reefs are particularly challenging because of the tremendous environmental variation that exists at small spatial scales. In this sense, understanding the primary sources of variation in spatial patterns of the biota is fundamental for designing effective conservation policies. We investigated spatial variation in fish assemblages around the windward and leeward sides of coastal islands situated across a gradient of riverine influence (13 km in length). Specifically, relationships between rocky reef fish assemblages and benthic, topographic and physical predictors were assessed. We hypothesized that river induced disturbances may overcome local habitat features in modeling spatial patterns of fish distribution. Fish assemblages varied primarily due to the strong directional gradient of riverine influence (22.6% of the estimated components of variation), followed by topographic complexity (15%), wave exposure (9.9%), and benthic cover (8%). The trophic structure of fish assemblages changed from having a high abundance of invertebrate feeders in macroalgae-dominated reefs close to river mouths to a high proportion of herbivores, planktivores and invertebrate feeder species in reefs with large boulders covered by epilithic algal matrices, as the distance from rivers increased. This gradient led to an increase of 4.5-fold in fish richness and fish trophic group diversity, 11-fold in fish biomass and 10-fold in fish abundance. Our results have implications for the conservation and monitoring of assemblages patchily distributed at small spatial scales. The major role of distance from river influences on fish assemblages rather than benthic cover and topographic complexity suggest that managing land-based activities should be a conservation priority toward reef restoration.The conservation and management of site-attached assemblages of coastal reefs are particularly challenging because of the tremendous environmental variation that exists at small spatial scales. In this sense, understanding the primary sources of variation in spatial patterns of the biota is fundamental for designing effective conservation policies. We investigated spatial variation in fish assemblages around the windward and leeward sides of coastal islands situated across a gradient of riverine influence (13 km in length). Specifically, relationships between rocky reef fish assemblages and benthic, topographic and physical predictors were assessed. We hypothesized that river induced disturbances may overcome local habitat features in modeling spatial patterns of fish distribution. Fish assemblages varied primarily due to the strong directional gradient of riverine influence (22.6% of the estimated components of variation), followed by topographic complexity (15%), wave exposure (9.9%), and benthic cover (8%). The trophic structure of fish assemblages changed from having a high abundance of invertebrate feeders in macroalgae-dominated reefs close to river mouths to a high proportion of herbivores, planktivores and invertebrate feeder species in reefs with large boulders covered by epilithic algal matrices, as the distance from rivers increased. This gradient led to an increase of 4.5-fold in fish richness and fish trophic group diversity, 11-fold in fish biomass and 10-fold in fish abundance. Our results have implications for the conservation and monitoring of assemblages patchily distributed at small spatial scales. The major role of distance from river influences on fish assemblages rather than benthic cover and topographic complexity suggest that managing land-based activities should be a conservation priority toward reef restoration.
Audience Academic
Author Pereira-Filho, Guilherme H.
Neves, Leonardo M.
Teixeira-Neves, Tatiana P.
Araújo, Francisco G.
AuthorAffiliation 1 Laboratório de Ecologia de Peixes, Departamento de Biologia Animal, Universidade Federal Rural do Rio de Janeiro, Campus Seropédica, RJ, Brazil
2 Departamento de Ciências do Meio Ambiente, Universidade Federal Rural do Rio de Janeiro, Campus Três Rios, RJ, Brazil
3 Laboratório de Ecologia e Conservação Marinha, Instituto do Mar, Universidade Federal de São Paulo, Campus Baixada Santista, Santos, SP, Brazil
Universita degli Studi di Genova, ITALY
AuthorAffiliation_xml – name: 3 Laboratório de Ecologia e Conservação Marinha, Instituto do Mar, Universidade Federal de São Paulo, Campus Baixada Santista, Santos, SP, Brazil
– name: 2 Departamento de Ciências do Meio Ambiente, Universidade Federal Rural do Rio de Janeiro, Campus Três Rios, RJ, Brazil
– name: 1 Laboratório de Ecologia de Peixes, Departamento de Biologia Animal, Universidade Federal Rural do Rio de Janeiro, Campus Seropédica, RJ, Brazil
– name: Universita degli Studi di Genova, ITALY
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  givenname: Leonardo M.
  surname: Neves
  fullname: Neves, Leonardo M.
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  givenname: Tatiana P.
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  fullname: Teixeira-Neves, Tatiana P.
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  givenname: Guilherme H.
  surname: Pereira-Filho
  fullname: Pereira-Filho, Guilherme H.
– sequence: 4
  givenname: Francisco G.
  surname: Araújo
  fullname: Araújo, Francisco G.
BackLink https://www.ncbi.nlm.nih.gov/pubmed/27907017$$D View this record in MEDLINE/PubMed
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ContentType Journal Article
Copyright COPYRIGHT 2016 Public Library of Science
2016 Neves et al. This is an open access article distributed under the terms of the Creative Commons Attribution License: http://creativecommons.org/licenses/by/4.0/ (the “License”), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited. Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License.
2016 Neves et al 2016 Neves et al
Copyright_xml – notice: COPYRIGHT 2016 Public Library of Science
– notice: 2016 Neves et al. This is an open access article distributed under the terms of the Creative Commons Attribution License: http://creativecommons.org/licenses/by/4.0/ (the “License”), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited. Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License.
– notice: 2016 Neves et al 2016 Neves et al
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Competing Interests: The authors have declared that no competing interests exist.
Conceptualization: LMN TPTN FGA.Data curation: LMN TPTN FGA.Formal analysis: LMN TPTN GHPF FGA.Funding acquisition: LMN TPTN FGA.Investigation: LMN TPTN GHPF FGA.Methodology: LMN TPTN GHPF FGA.Project administration: LMN TPTN FGA.Resources: LMN TPTN FGA.Supervision: LMN TPTN GHPF FGA.Validation: LMN TPTN GHPF FGA.Visualization: LMN TPTN GHPF FGA.Writing – original draft: LMN TPTN GHPF FGA.Writing – review & editing: LMN TPTN GHPF FGA.
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Snippet The conservation and management of site-attached assemblages of coastal reefs are particularly challenging because of the tremendous environmental variation...
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StartPage e0166679
SubjectTerms Abundance
Algae
Analysis
Animals
Biodiversity
Biology and Life Sciences
Biomass
Biota
Boulders
Coastal environments
Complexity
Conservation
Conservation of Natural Resources
Coral Reefs
Earth Sciences
Ecology and Environmental Sciences
Ecosystem
Environment
Environmental aspects
Environmental effects
Environmental monitoring
Environmental policy
Feeders
Fish
Fishery conservation
Fishes - growth & development
Freshwater
Habitats
Herbivores
Herbivory - physiology
Invertebrates
Notropis mekistocholas
Reef fish
Reefs
Restoration
River mouth
Rivers
Scales
Seaweed - growth & development
Seaweeds
Spatial distribution
Studies
Variation
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Title The Farther the Better: Effects of Multiple Environmental Variables on Reef Fish Assemblages along a Distance Gradient from River Influences
URI https://www.ncbi.nlm.nih.gov/pubmed/27907017
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https://pubmed.ncbi.nlm.nih.gov/PMC5131968
https://doaj.org/article/ec336a6e586a4e59860fe635691775ca
http://dx.doi.org/10.1371/journal.pone.0166679
Volume 11
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