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The biogeography of community assembly: latitude and predation drive variation in community trait distribution in a guild of epifaunal crustaceans

While considerable evidence exists of biogeographic patterns in the intensity of species interactions, the influence of these patterns on variation in community structure is less clear. Studying how the distributions of traits in communities vary along global gradients can inform how variation in in...

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Autores principales: Gross, Collin P., Duffy, J. Emmett, Hovel, Kevin A., Kardish, Melissa R., Reynolds, Pamela L., Boström, Christoffer, Boyer, Katharyn E., Cusson, Mathieu, Eklöf, Johan, Engelen, Aschwin H., Eriksson, Britas Klemens, Fodrie, F. Joel, Griffin, John N., Hereu, Clara M., Hori, Masakazu, Hughes, A. Randall, Ivanov, Mikhail V., Jorgensen, Pablo, Kruschel, Claudia, Lee, Kun-Seop, Lefcheck, Jonathan, McGlathery, Karen, Moksnes, Per-Olav, Nakaoka, Masahiro, O'Connor, Mary I., O'Connor, Nessa E., Olsen, Jeanine L., Orth, Robert J., Peterson, Bradley J., Reiss, Henning, Rossi, Francesca, Ruesink, Jennifer, Sotka, Erik E., Thormar, Jonas, Tomas, Fiona, Unsworth, Richard, Voigt, Erin P., Whalen, Matthew A., Ziegler, Shelby L., Stachowicz, John J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8864368/
https://www.ncbi.nlm.nih.gov/pubmed/35193403
http://dx.doi.org/10.1098/rspb.2021.1762
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author Gross, Collin P.
Duffy, J. Emmett
Hovel, Kevin A.
Kardish, Melissa R.
Reynolds, Pamela L.
Boström, Christoffer
Boyer, Katharyn E.
Cusson, Mathieu
Eklöf, Johan
Engelen, Aschwin H.
Eriksson, Britas Klemens
Fodrie, F. Joel
Griffin, John N.
Hereu, Clara M.
Hori, Masakazu
Hughes, A. Randall
Ivanov, Mikhail V.
Jorgensen, Pablo
Kruschel, Claudia
Lee, Kun-Seop
Lefcheck, Jonathan
McGlathery, Karen
Moksnes, Per-Olav
Nakaoka, Masahiro
O'Connor, Mary I.
O'Connor, Nessa E.
Olsen, Jeanine L.
Orth, Robert J.
Peterson, Bradley J.
Reiss, Henning
Rossi, Francesca
Ruesink, Jennifer
Sotka, Erik E.
Thormar, Jonas
Tomas, Fiona
Unsworth, Richard
Voigt, Erin P.
Whalen, Matthew A.
Ziegler, Shelby L.
Stachowicz, John J.
author_facet Gross, Collin P.
Duffy, J. Emmett
Hovel, Kevin A.
Kardish, Melissa R.
Reynolds, Pamela L.
Boström, Christoffer
Boyer, Katharyn E.
Cusson, Mathieu
Eklöf, Johan
Engelen, Aschwin H.
Eriksson, Britas Klemens
Fodrie, F. Joel
Griffin, John N.
Hereu, Clara M.
Hori, Masakazu
Hughes, A. Randall
Ivanov, Mikhail V.
Jorgensen, Pablo
Kruschel, Claudia
Lee, Kun-Seop
Lefcheck, Jonathan
McGlathery, Karen
Moksnes, Per-Olav
Nakaoka, Masahiro
O'Connor, Mary I.
O'Connor, Nessa E.
Olsen, Jeanine L.
Orth, Robert J.
Peterson, Bradley J.
Reiss, Henning
Rossi, Francesca
Ruesink, Jennifer
Sotka, Erik E.
Thormar, Jonas
Tomas, Fiona
Unsworth, Richard
Voigt, Erin P.
Whalen, Matthew A.
Ziegler, Shelby L.
Stachowicz, John J.
author_sort Gross, Collin P.
collection PubMed
description While considerable evidence exists of biogeographic patterns in the intensity of species interactions, the influence of these patterns on variation in community structure is less clear. Studying how the distributions of traits in communities vary along global gradients can inform how variation in interactions and other factors contribute to the process of community assembly. Using a model selection approach on measures of trait dispersion in crustaceans associated with eelgrass (Zostera marina) spanning 30° of latitude in two oceans, we found that dispersion strongly increased with increasing predation and decreasing latitude. Ocean and epiphyte load appeared as secondary predictors; Pacific communities were more overdispersed while Atlantic communities were more clustered, and increasing epiphytes were associated with increased clustering. By examining how species interactions and environmental filters influence community structure across biogeographic regions, we demonstrate how both latitudinal variation in species interactions and historical contingency shape these responses. Community trait distributions have implications for ecosystem stability and functioning, and integrating large-scale observations of environmental filters, species interactions and traits can help us predict how communities may respond to environmental change.
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spelling pubmed-88643682022-03-02 The biogeography of community assembly: latitude and predation drive variation in community trait distribution in a guild of epifaunal crustaceans Gross, Collin P. Duffy, J. Emmett Hovel, Kevin A. Kardish, Melissa R. Reynolds, Pamela L. Boström, Christoffer Boyer, Katharyn E. Cusson, Mathieu Eklöf, Johan Engelen, Aschwin H. Eriksson, Britas Klemens Fodrie, F. Joel Griffin, John N. Hereu, Clara M. Hori, Masakazu Hughes, A. Randall Ivanov, Mikhail V. Jorgensen, Pablo Kruschel, Claudia Lee, Kun-Seop Lefcheck, Jonathan McGlathery, Karen Moksnes, Per-Olav Nakaoka, Masahiro O'Connor, Mary I. O'Connor, Nessa E. Olsen, Jeanine L. Orth, Robert J. Peterson, Bradley J. Reiss, Henning Rossi, Francesca Ruesink, Jennifer Sotka, Erik E. Thormar, Jonas Tomas, Fiona Unsworth, Richard Voigt, Erin P. Whalen, Matthew A. Ziegler, Shelby L. Stachowicz, John J. Proc Biol Sci Ecology While considerable evidence exists of biogeographic patterns in the intensity of species interactions, the influence of these patterns on variation in community structure is less clear. Studying how the distributions of traits in communities vary along global gradients can inform how variation in interactions and other factors contribute to the process of community assembly. Using a model selection approach on measures of trait dispersion in crustaceans associated with eelgrass (Zostera marina) spanning 30° of latitude in two oceans, we found that dispersion strongly increased with increasing predation and decreasing latitude. Ocean and epiphyte load appeared as secondary predictors; Pacific communities were more overdispersed while Atlantic communities were more clustered, and increasing epiphytes were associated with increased clustering. By examining how species interactions and environmental filters influence community structure across biogeographic regions, we demonstrate how both latitudinal variation in species interactions and historical contingency shape these responses. Community trait distributions have implications for ecosystem stability and functioning, and integrating large-scale observations of environmental filters, species interactions and traits can help us predict how communities may respond to environmental change. The Royal Society 2022-02-23 2022-02-23 /pmc/articles/PMC8864368/ /pubmed/35193403 http://dx.doi.org/10.1098/rspb.2021.1762 Text en © 2022 The Authors. https://creativecommons.org/licenses/by/4.0/Published by the Royal Society under the terms of the Creative Commons Attribution License http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, provided the original author and source are credited.
spellingShingle Ecology
Gross, Collin P.
Duffy, J. Emmett
Hovel, Kevin A.
Kardish, Melissa R.
Reynolds, Pamela L.
Boström, Christoffer
Boyer, Katharyn E.
Cusson, Mathieu
Eklöf, Johan
Engelen, Aschwin H.
Eriksson, Britas Klemens
Fodrie, F. Joel
Griffin, John N.
Hereu, Clara M.
Hori, Masakazu
Hughes, A. Randall
Ivanov, Mikhail V.
Jorgensen, Pablo
Kruschel, Claudia
Lee, Kun-Seop
Lefcheck, Jonathan
McGlathery, Karen
Moksnes, Per-Olav
Nakaoka, Masahiro
O'Connor, Mary I.
O'Connor, Nessa E.
Olsen, Jeanine L.
Orth, Robert J.
Peterson, Bradley J.
Reiss, Henning
Rossi, Francesca
Ruesink, Jennifer
Sotka, Erik E.
Thormar, Jonas
Tomas, Fiona
Unsworth, Richard
Voigt, Erin P.
Whalen, Matthew A.
Ziegler, Shelby L.
Stachowicz, John J.
The biogeography of community assembly: latitude and predation drive variation in community trait distribution in a guild of epifaunal crustaceans
title The biogeography of community assembly: latitude and predation drive variation in community trait distribution in a guild of epifaunal crustaceans
title_full The biogeography of community assembly: latitude and predation drive variation in community trait distribution in a guild of epifaunal crustaceans
title_fullStr The biogeography of community assembly: latitude and predation drive variation in community trait distribution in a guild of epifaunal crustaceans
title_full_unstemmed The biogeography of community assembly: latitude and predation drive variation in community trait distribution in a guild of epifaunal crustaceans
title_short The biogeography of community assembly: latitude and predation drive variation in community trait distribution in a guild of epifaunal crustaceans
title_sort biogeography of community assembly: latitude and predation drive variation in community trait distribution in a guild of epifaunal crustaceans
topic Ecology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8864368/
https://www.ncbi.nlm.nih.gov/pubmed/35193403
http://dx.doi.org/10.1098/rspb.2021.1762
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