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Macroscale patterns in body size of intertidal crustaceans provide insights on climate change effects

Predicting responses of coastal ecosystems to altered sea surface temperatures (SST) associated with global climate change, requires knowledge of demographic responses of individual species. Body size is an excellent metric because it scales strongly with growth and fecundity for many ectotherms. Th...

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Autores principales: Jaramillo, Eduardo, Dugan, Jenifer E., Hubbard, David M., Contreras, Heraldo, Duarte, Cristian, Acuña, Emilio, Schoeman, David S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5421805/
https://www.ncbi.nlm.nih.gov/pubmed/28481897
http://dx.doi.org/10.1371/journal.pone.0177116
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author Jaramillo, Eduardo
Dugan, Jenifer E.
Hubbard, David M.
Contreras, Heraldo
Duarte, Cristian
Acuña, Emilio
Schoeman, David S.
author_facet Jaramillo, Eduardo
Dugan, Jenifer E.
Hubbard, David M.
Contreras, Heraldo
Duarte, Cristian
Acuña, Emilio
Schoeman, David S.
author_sort Jaramillo, Eduardo
collection PubMed
description Predicting responses of coastal ecosystems to altered sea surface temperatures (SST) associated with global climate change, requires knowledge of demographic responses of individual species. Body size is an excellent metric because it scales strongly with growth and fecundity for many ectotherms. These attributes can underpin demographic as well as community and ecosystem level processes, providing valuable insights for responses of vulnerable coastal ecosystems to changing climate. We investigated contemporary macroscale patterns in body size among widely distributed crustaceans that comprise the majority of intertidal abundance and biomass of sandy beach ecosystems of the eastern Pacific coasts of Chile and California, USA. We focused on ecologically important species representing different tidal zones, trophic guilds and developmental modes, including a high-shore macroalga-consuming talitrid amphipod (Orchestoidea tuberculata), two mid-shore scavenging cirolanid isopods (Excirolana braziliensis and E. hirsuticauda), and a low-shore suspension-feeding hippid crab (Emerita analoga) with an amphitropical distribution. Significant latitudinal patterns in body sizes were observed for all species in Chile (21° - 42°S), with similar but steeper patterns in Emerita analoga, in California (32°- 41°N). Sea surface temperature was a strong predictor of body size (-4% to -35% °C(-1)) in all species. Beach characteristics were subsidiary predictors of body size. Alterations in ocean temperatures of even a few degrees associated with global climate change are likely to affect body sizes of important intertidal ectotherms, with consequences for population demography, life history, community structure, trophic interactions, food-webs, and indirect effects such as ecosystem function. The consistency of results for body size and temperature across species with different life histories, feeding modes, ecological roles, and microhabitats inhabiting a single widespread coastal ecosystem, and for one species, across hemispheres in this space-for-time substitution, suggests predictions of ecosystem responses to thermal effects of climate change may potentially be generalised, with important implications for coastal conservation.
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spelling pubmed-54218052017-05-14 Macroscale patterns in body size of intertidal crustaceans provide insights on climate change effects Jaramillo, Eduardo Dugan, Jenifer E. Hubbard, David M. Contreras, Heraldo Duarte, Cristian Acuña, Emilio Schoeman, David S. PLoS One Research Article Predicting responses of coastal ecosystems to altered sea surface temperatures (SST) associated with global climate change, requires knowledge of demographic responses of individual species. Body size is an excellent metric because it scales strongly with growth and fecundity for many ectotherms. These attributes can underpin demographic as well as community and ecosystem level processes, providing valuable insights for responses of vulnerable coastal ecosystems to changing climate. We investigated contemporary macroscale patterns in body size among widely distributed crustaceans that comprise the majority of intertidal abundance and biomass of sandy beach ecosystems of the eastern Pacific coasts of Chile and California, USA. We focused on ecologically important species representing different tidal zones, trophic guilds and developmental modes, including a high-shore macroalga-consuming talitrid amphipod (Orchestoidea tuberculata), two mid-shore scavenging cirolanid isopods (Excirolana braziliensis and E. hirsuticauda), and a low-shore suspension-feeding hippid crab (Emerita analoga) with an amphitropical distribution. Significant latitudinal patterns in body sizes were observed for all species in Chile (21° - 42°S), with similar but steeper patterns in Emerita analoga, in California (32°- 41°N). Sea surface temperature was a strong predictor of body size (-4% to -35% °C(-1)) in all species. Beach characteristics were subsidiary predictors of body size. Alterations in ocean temperatures of even a few degrees associated with global climate change are likely to affect body sizes of important intertidal ectotherms, with consequences for population demography, life history, community structure, trophic interactions, food-webs, and indirect effects such as ecosystem function. The consistency of results for body size and temperature across species with different life histories, feeding modes, ecological roles, and microhabitats inhabiting a single widespread coastal ecosystem, and for one species, across hemispheres in this space-for-time substitution, suggests predictions of ecosystem responses to thermal effects of climate change may potentially be generalised, with important implications for coastal conservation. Public Library of Science 2017-05-08 /pmc/articles/PMC5421805/ /pubmed/28481897 http://dx.doi.org/10.1371/journal.pone.0177116 Text en © 2017 Jaramillo et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Jaramillo, Eduardo
Dugan, Jenifer E.
Hubbard, David M.
Contreras, Heraldo
Duarte, Cristian
Acuña, Emilio
Schoeman, David S.
Macroscale patterns in body size of intertidal crustaceans provide insights on climate change effects
title Macroscale patterns in body size of intertidal crustaceans provide insights on climate change effects
title_full Macroscale patterns in body size of intertidal crustaceans provide insights on climate change effects
title_fullStr Macroscale patterns in body size of intertidal crustaceans provide insights on climate change effects
title_full_unstemmed Macroscale patterns in body size of intertidal crustaceans provide insights on climate change effects
title_short Macroscale patterns in body size of intertidal crustaceans provide insights on climate change effects
title_sort macroscale patterns in body size of intertidal crustaceans provide insights on climate change effects
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5421805/
https://www.ncbi.nlm.nih.gov/pubmed/28481897
http://dx.doi.org/10.1371/journal.pone.0177116
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