Mangroves Enhance Reef Fish Abundance at the Caribbean Regional Scale
Several studies conducted at the scale of islands, or small sections of continental coastlines, have suggested that mangrove habitats serve to enhance fish abundances on coral reefs, mainly by providing nursery grounds for several ontogenetically-migrating species. However, evidence of such enhancem...
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Published in | PloS one Vol. 10; no. 11; p. e0142022 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
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04.11.2015
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Abstract | Several studies conducted at the scale of islands, or small sections of continental coastlines, have suggested that mangrove habitats serve to enhance fish abundances on coral reefs, mainly by providing nursery grounds for several ontogenetically-migrating species. However, evidence of such enhancement at a regional scale has not been reported, and recently, some researchers have questioned the mangrove-reef subsidy effect. In the present study, using two different regression approaches, we pursued two questions related to mangrove-reef connectivity at the Caribbean regional scale: (1) Are reef fish abundances limited by mangrove forest area?; and (2) Are mean reef fish abundances proportional to mangrove forest area after taking human population density and latitude into account? Specifically, we tested for Caribbean-wide mangrove forest area effects on the abundances of 12 reef fishes that have been previously characterized as "mangrove-dependent". Analyzed were data from an ongoing, long-term (20-year) citizen-scientist fish monitoring program; coastal human population censuses; and several wetland forest information sources. Quantile regression results supported the notion that mangrove forest area limits the abundance of eight of the 12 fishes examined. Linear mixed-effects regression results, which considered potential human (fishing and habitat degradation) and latitudinal influences, suggested that average reef fish densities of at least six of the 12 focal fishes were directly proportional to mangrove forest area. Recent work questioning the mangrove-reef fish subsidy effect likely reflects a failure to: (1) focus analyses on species that use mangroves as nurseries, (2) consider more than the mean fish abundance response to mangrove forest extent; and/or (3) quantitatively account for potentially confounding human impacts, such as fishing pressure and habitat degradation. Our study is the first to demonstrate at a large regional scale (i.e., the Wider Caribbean) that greater mangrove forest size generally functions to increase the densities on neighboring reefs of those fishes that use these shallow, vegetated habitats as nurseries. |
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AbstractList | Several studies conducted at the scale of islands, or small sections of continental coastlines, have suggested that mangrove habitats serve to enhance fish abundances on coral reefs, mainly by providing nursery grounds for several ontogenetically-migrating species. However, evidence of such enhancement at a regional scale has not been reported, and recently, some researchers have questioned the mangrove-reef subsidy effect. In the present study, using two different regression approaches, we pursued two questions related to mangrove-reef connectivity at the Caribbean regional scale: (1) Are reef fish abundances limited by mangrove forest area?; and (2) Are mean reef fish abundances proportional to mangrove forest area after taking human population density and latitude into account? Specifically, we tested for Caribbean-wide mangrove forest area effects on the abundances of 12 reef fishes that have been previously characterized as "mangrove-dependent". Analyzed were data from an ongoing, long-term (20-year) citizen-scientist fish monitoring program; coastal human population censuses; and several wetland forest information sources. Quantile regression results supported the notion that mangrove forest area limits the abundance of eight of the 12 fishes examined. Linear mixed-effects regression results, which considered potential human (fishing and habitat degradation) and latitudinal influences, suggested that average reef fish densities of at least six of the 12 focal fishes were directly proportional to mangrove forest area. Recent work questioning the mangrove-reef fish subsidy effect likely reflects a failure to: (1) focus analyses on species that use mangroves as nurseries, (2) consider more than the mean fish abundance response to mangrove forest extent; and/or (3) quantitatively account for potentially confounding human impacts, such as fishing pressure and habitat degradation. Our study is the first to demonstrate at a large regional scale (i.e., the Wider Caribbean) that greater mangrove forest size generally functions to increase the densities on neighboring reefs of those fishes that use these shallow, vegetated habitats as nurseries. |
Audience | Academic |
Author | Serafy, Joseph E Nagelkerken, Ivan Araújo, Rafael J Shideler, Geoffrey S |
AuthorAffiliation | 3 Southern Seas Ecology Laboratories, School of Biological Sciences and The Environment Institute, University of Adelaide, Adelaide, Australia Texas A&M University at Galveston, UNITED STATES 2 Rosenstiel School of Marine & Atmospheric Science, University of Miami, Miami, Florida, United States of America 1 Southeast Fisheries Science Center, National Marine Fisheries Service, Miami, Florida, United States of America |
AuthorAffiliation_xml | – name: Texas A&M University at Galveston, UNITED STATES – name: 3 Southern Seas Ecology Laboratories, School of Biological Sciences and The Environment Institute, University of Adelaide, Adelaide, Australia – name: 2 Rosenstiel School of Marine & Atmospheric Science, University of Miami, Miami, Florida, United States of America – name: 1 Southeast Fisheries Science Center, National Marine Fisheries Service, Miami, Florida, United States of America |
Author_xml | – sequence: 1 givenname: Joseph E surname: Serafy fullname: Serafy, Joseph E organization: Rosenstiel School of Marine & Atmospheric Science, University of Miami, Miami, Florida, United States of America – sequence: 2 givenname: Geoffrey S surname: Shideler fullname: Shideler, Geoffrey S organization: Rosenstiel School of Marine & Atmospheric Science, University of Miami, Miami, Florida, United States of America – sequence: 3 givenname: Rafael J surname: Araújo fullname: Araújo, Rafael J organization: Rosenstiel School of Marine & Atmospheric Science, University of Miami, Miami, Florida, United States of America – sequence: 4 givenname: Ivan surname: Nagelkerken fullname: Nagelkerken, Ivan organization: Southern Seas Ecology Laboratories, School of Biological Sciences and The Environment Institute, University of Adelaide, Adelaide, Australia |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/26536478$$D View this record in MEDLINE/PubMed |
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Notes | ObjectType-Article-1 SourceType-Scholarly Journals-1 ObjectType-Feature-2 content type line 23 Conceived and designed the experiments: JES GSS RJA. Performed the experiments: JES GSS RJA. Analyzed the data: JES GSS RJA. Contributed reagents/materials/analysis tools: JES GSS. Wrote the paper: JES GSS RJA IN. Competing Interests: The authors have declared that no competing interests exist. |
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Snippet | Several studies conducted at the scale of islands, or small sections of continental coastlines, have suggested that mangrove habitats serve to enhance fish... |
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SubjectTerms | Abundance Analysis Animals Atmospheric sciences Carbon Caribbean Region Coastal environments Coral Reefs Data processing Ecology Ecosystem Environmental degradation Environmental monitoring Failure analysis Fish Fisheries Fishes Fishes - physiology Fishing Forests Genetic aspects Grasses Habitats Human influences Human population density Human populations Humans Information sources Islands Mangroves Marine conservation Nurseries Nursery grounds Population Density Population Dynamics Reef fish Regional analysis Regression analysis Scarus guacamaia Studies Wetlands |
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Title | Mangroves Enhance Reef Fish Abundance at the Caribbean Regional Scale |
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