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Advancing the integration of spatial data to map human and natural drivers on coral reefs

A major challenge for coral reef conservation and management is understanding how a wide range of interacting human and natural drivers cumulatively impact and shape these ecosystems. Despite the importance of understanding these interactions, a methodological framework to synthesize spatially expli...

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Autores principales: Wedding, Lisa M., Lecky, Joey, Gove, Jamison M., Walecka, Hilary R., Donovan, Mary K., Williams, Gareth J., Jouffray, Jean-Baptiste, Crowder, Larry B., Erickson, Ashley, Falinski, Kim, Friedlander, Alan M., Kappel, Carrie V., Kittinger, John N., McCoy, Kaylyn, Norström, Albert, Nyström, Magnus, Oleson, Kirsten L. L., Stamoulis, Kostantinos A., White, Crow, Selkoe, Kimberly A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5832214/
https://www.ncbi.nlm.nih.gov/pubmed/29494613
http://dx.doi.org/10.1371/journal.pone.0189792
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author Wedding, Lisa M.
Lecky, Joey
Gove, Jamison M.
Walecka, Hilary R.
Donovan, Mary K.
Williams, Gareth J.
Jouffray, Jean-Baptiste
Crowder, Larry B.
Erickson, Ashley
Falinski, Kim
Friedlander, Alan M.
Kappel, Carrie V.
Kittinger, John N.
McCoy, Kaylyn
Norström, Albert
Nyström, Magnus
Oleson, Kirsten L. L.
Stamoulis, Kostantinos A.
White, Crow
Selkoe, Kimberly A.
author_facet Wedding, Lisa M.
Lecky, Joey
Gove, Jamison M.
Walecka, Hilary R.
Donovan, Mary K.
Williams, Gareth J.
Jouffray, Jean-Baptiste
Crowder, Larry B.
Erickson, Ashley
Falinski, Kim
Friedlander, Alan M.
Kappel, Carrie V.
Kittinger, John N.
McCoy, Kaylyn
Norström, Albert
Nyström, Magnus
Oleson, Kirsten L. L.
Stamoulis, Kostantinos A.
White, Crow
Selkoe, Kimberly A.
author_sort Wedding, Lisa M.
collection PubMed
description A major challenge for coral reef conservation and management is understanding how a wide range of interacting human and natural drivers cumulatively impact and shape these ecosystems. Despite the importance of understanding these interactions, a methodological framework to synthesize spatially explicit data of such drivers is lacking. To fill this gap, we established a transferable data synthesis methodology to integrate spatial data on environmental and anthropogenic drivers of coral reefs, and applied this methodology to a case study location–the Main Hawaiian Islands (MHI). Environmental drivers were derived from time series (2002–2013) of climatological ranges and anomalies of remotely sensed sea surface temperature, chlorophyll-a, irradiance, and wave power. Anthropogenic drivers were characterized using empirically derived and modeled datasets of spatial fisheries catch, sedimentation, nutrient input, new development, habitat modification, and invasive species. Within our case study system, resulting driver maps showed high spatial heterogeneity across the MHI, with anthropogenic drivers generally greatest and most widespread on O‘ahu, where 70% of the state’s population resides, while sedimentation and nutrients were dominant in less populated islands. Together, the spatial integration of environmental and anthropogenic driver data described here provides a first-ever synthetic approach to visualize how the drivers of coral reef state vary in space and demonstrates a methodological framework for implementation of this approach in other regions of the world. By quantifying and synthesizing spatial drivers of change on coral reefs, we provide an avenue for further research to understand how drivers determine reef diversity and resilience, which can ultimately inform policies to protect coral reefs.
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spelling pubmed-58322142018-03-19 Advancing the integration of spatial data to map human and natural drivers on coral reefs Wedding, Lisa M. Lecky, Joey Gove, Jamison M. Walecka, Hilary R. Donovan, Mary K. Williams, Gareth J. Jouffray, Jean-Baptiste Crowder, Larry B. Erickson, Ashley Falinski, Kim Friedlander, Alan M. Kappel, Carrie V. Kittinger, John N. McCoy, Kaylyn Norström, Albert Nyström, Magnus Oleson, Kirsten L. L. Stamoulis, Kostantinos A. White, Crow Selkoe, Kimberly A. PLoS One Research Article A major challenge for coral reef conservation and management is understanding how a wide range of interacting human and natural drivers cumulatively impact and shape these ecosystems. Despite the importance of understanding these interactions, a methodological framework to synthesize spatially explicit data of such drivers is lacking. To fill this gap, we established a transferable data synthesis methodology to integrate spatial data on environmental and anthropogenic drivers of coral reefs, and applied this methodology to a case study location–the Main Hawaiian Islands (MHI). Environmental drivers were derived from time series (2002–2013) of climatological ranges and anomalies of remotely sensed sea surface temperature, chlorophyll-a, irradiance, and wave power. Anthropogenic drivers were characterized using empirically derived and modeled datasets of spatial fisheries catch, sedimentation, nutrient input, new development, habitat modification, and invasive species. Within our case study system, resulting driver maps showed high spatial heterogeneity across the MHI, with anthropogenic drivers generally greatest and most widespread on O‘ahu, where 70% of the state’s population resides, while sedimentation and nutrients were dominant in less populated islands. Together, the spatial integration of environmental and anthropogenic driver data described here provides a first-ever synthetic approach to visualize how the drivers of coral reef state vary in space and demonstrates a methodological framework for implementation of this approach in other regions of the world. By quantifying and synthesizing spatial drivers of change on coral reefs, we provide an avenue for further research to understand how drivers determine reef diversity and resilience, which can ultimately inform policies to protect coral reefs. Public Library of Science 2018-03-01 /pmc/articles/PMC5832214/ /pubmed/29494613 http://dx.doi.org/10.1371/journal.pone.0189792 Text en https://creativecommons.org/publicdomain/zero/1.0/ This is an open access article, free of all copyright, and may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose. The work is made available under the Creative Commons CC0 (https://creativecommons.org/publicdomain/zero/1.0/) public domain dedication.
spellingShingle Research Article
Wedding, Lisa M.
Lecky, Joey
Gove, Jamison M.
Walecka, Hilary R.
Donovan, Mary K.
Williams, Gareth J.
Jouffray, Jean-Baptiste
Crowder, Larry B.
Erickson, Ashley
Falinski, Kim
Friedlander, Alan M.
Kappel, Carrie V.
Kittinger, John N.
McCoy, Kaylyn
Norström, Albert
Nyström, Magnus
Oleson, Kirsten L. L.
Stamoulis, Kostantinos A.
White, Crow
Selkoe, Kimberly A.
Advancing the integration of spatial data to map human and natural drivers on coral reefs
title Advancing the integration of spatial data to map human and natural drivers on coral reefs
title_full Advancing the integration of spatial data to map human and natural drivers on coral reefs
title_fullStr Advancing the integration of spatial data to map human and natural drivers on coral reefs
title_full_unstemmed Advancing the integration of spatial data to map human and natural drivers on coral reefs
title_short Advancing the integration of spatial data to map human and natural drivers on coral reefs
title_sort advancing the integration of spatial data to map human and natural drivers on coral reefs
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5832214/
https://www.ncbi.nlm.nih.gov/pubmed/29494613
http://dx.doi.org/10.1371/journal.pone.0189792
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