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Geography and island geomorphology shape fish assemblage structure on isolated coral reef systems

We quantify the relative importance of multi‐scale drivers of reef fish assemblage structure on isolated coral reefs at the intersection of the Indian and Indo‐Pacific biogeographical provinces. Large (>30 cm), functionally‐important and commonly targeted species of fish, were surveyed on the out...

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Autores principales: Bennett, Scott, Halford, Andrew R., Choat, J. Howard, Hobbs, Jean‐Paul A., Santana‐Garcon, Julia, Ayling, Anthony M., Harvey, Euan S., Newman, Stephen J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6024146/
https://www.ncbi.nlm.nih.gov/pubmed/29988434
http://dx.doi.org/10.1002/ece3.4136
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author Bennett, Scott
Halford, Andrew R.
Choat, J. Howard
Hobbs, Jean‐Paul A.
Santana‐Garcon, Julia
Ayling, Anthony M.
Harvey, Euan S.
Newman, Stephen J.
author_facet Bennett, Scott
Halford, Andrew R.
Choat, J. Howard
Hobbs, Jean‐Paul A.
Santana‐Garcon, Julia
Ayling, Anthony M.
Harvey, Euan S.
Newman, Stephen J.
author_sort Bennett, Scott
collection PubMed
description We quantify the relative importance of multi‐scale drivers of reef fish assemblage structure on isolated coral reefs at the intersection of the Indian and Indo‐Pacific biogeographical provinces. Large (>30 cm), functionally‐important and commonly targeted species of fish, were surveyed on the outer reef crest/front at 38 coral reef sites spread across three oceanic coral reef systems (i.e. Christmas Island, Cocos (Keeling) Islands and the Rowley Shoals), in the tropical Indian Ocean (c. 1.126 x 106 km(2)). The effects of coral cover, exposure, fishing pressure, lagoon size and geographical context, on observed patterns of fish assemblage structure were modelled using Multivariate Regression Trees. Reef fish assemblages were clearly separated in space with geographical location explaining ~53 % of the observed variation. Lagoon size, within each isolated reef system was an equally effective proxy for explaining fish assemblage structure. Among local‐scale variables, ‘distance from port’, a proxy for the influence of fishing, explained 5.2% of total variation and separated the four most isolated reefs from Cocos (Keeling) Island, from reefs with closer boating access. Other factors were not significant. Major divisions in assemblage structure were driven by sister taxa that displayed little geographical overlap between reef systems and low abundances of several species on Christmas Island corresponding to small lagoon habitats. Exclusion of geographical context from the analysis resulted in local processes explaining 47.3% of the variation, highlighting the importance of controlling for spatial correlation to understand the drivers of fish assemblage structure. Our results suggest reef fish assemblage structure on remote coral reef systems in the tropical eastern Indian Ocean reflects a biogeographical legacy of isolation between Indian and Pacific fish faunas and geomorphological variation within the region, more than local fishing pressure or reef condition. Our findings re‐emphasise the importance that historical processes play in structuring contemporary biotic communities.
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spelling pubmed-60241462018-07-09 Geography and island geomorphology shape fish assemblage structure on isolated coral reef systems Bennett, Scott Halford, Andrew R. Choat, J. Howard Hobbs, Jean‐Paul A. Santana‐Garcon, Julia Ayling, Anthony M. Harvey, Euan S. Newman, Stephen J. Ecol Evol Original Research We quantify the relative importance of multi‐scale drivers of reef fish assemblage structure on isolated coral reefs at the intersection of the Indian and Indo‐Pacific biogeographical provinces. Large (>30 cm), functionally‐important and commonly targeted species of fish, were surveyed on the outer reef crest/front at 38 coral reef sites spread across three oceanic coral reef systems (i.e. Christmas Island, Cocos (Keeling) Islands and the Rowley Shoals), in the tropical Indian Ocean (c. 1.126 x 106 km(2)). The effects of coral cover, exposure, fishing pressure, lagoon size and geographical context, on observed patterns of fish assemblage structure were modelled using Multivariate Regression Trees. Reef fish assemblages were clearly separated in space with geographical location explaining ~53 % of the observed variation. Lagoon size, within each isolated reef system was an equally effective proxy for explaining fish assemblage structure. Among local‐scale variables, ‘distance from port’, a proxy for the influence of fishing, explained 5.2% of total variation and separated the four most isolated reefs from Cocos (Keeling) Island, from reefs with closer boating access. Other factors were not significant. Major divisions in assemblage structure were driven by sister taxa that displayed little geographical overlap between reef systems and low abundances of several species on Christmas Island corresponding to small lagoon habitats. Exclusion of geographical context from the analysis resulted in local processes explaining 47.3% of the variation, highlighting the importance of controlling for spatial correlation to understand the drivers of fish assemblage structure. Our results suggest reef fish assemblage structure on remote coral reef systems in the tropical eastern Indian Ocean reflects a biogeographical legacy of isolation between Indian and Pacific fish faunas and geomorphological variation within the region, more than local fishing pressure or reef condition. Our findings re‐emphasise the importance that historical processes play in structuring contemporary biotic communities. John Wiley and Sons Inc. 2018-05-24 /pmc/articles/PMC6024146/ /pubmed/29988434 http://dx.doi.org/10.1002/ece3.4136 Text en © 2018 The Authors. Ecology and Evolution published by John Wiley & Sons Ltd. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Research
Bennett, Scott
Halford, Andrew R.
Choat, J. Howard
Hobbs, Jean‐Paul A.
Santana‐Garcon, Julia
Ayling, Anthony M.
Harvey, Euan S.
Newman, Stephen J.
Geography and island geomorphology shape fish assemblage structure on isolated coral reef systems
title Geography and island geomorphology shape fish assemblage structure on isolated coral reef systems
title_full Geography and island geomorphology shape fish assemblage structure on isolated coral reef systems
title_fullStr Geography and island geomorphology shape fish assemblage structure on isolated coral reef systems
title_full_unstemmed Geography and island geomorphology shape fish assemblage structure on isolated coral reef systems
title_short Geography and island geomorphology shape fish assemblage structure on isolated coral reef systems
title_sort geography and island geomorphology shape fish assemblage structure on isolated coral reef systems
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6024146/
https://www.ncbi.nlm.nih.gov/pubmed/29988434
http://dx.doi.org/10.1002/ece3.4136
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