Large-scale variation in combined impacts of canopy loss and disturbance on community structure and ecosystem functioning.

Ecosystems are under pressure from multiple human disturbances whose impact may vary depending on environmental context. We experimentally evaluated variation in the separate and combined effects of the loss of a key functional group (canopy algae) and physical disturbance on rocky shore ecosystems...

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Main Authors: Tasman P Crowe, Mathieu Cusson, Fabio Bulleri, Dominique Davoult, Francisco Arenas, Rebecca Aspden, Lisandro Benedetti-Cecchi, Stanislao Bevilacqua, Irvine Davidson, Emma Defew, Simonetta Fraschetti, Claire Golléty, John N Griffin, Kristjan Herkül, Jonne Kotta, Aline Migné, Markus Molis, Sophie K Nicol, Laure M-L J Noël, Isabel Sousa Pinto, Nelson Valdivia, Stefano Vaselli, Stuart R Jenkins
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3683006?pdf=render
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spelling doaj-4e7e818ea1a24238bfd769c04a0a11b12020-11-25T02:43:08ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-0186e6623810.1371/journal.pone.0066238Large-scale variation in combined impacts of canopy loss and disturbance on community structure and ecosystem functioning.Tasman P CroweMathieu CussonFabio BulleriDominique DavoultFrancisco ArenasRebecca AspdenLisandro Benedetti-CecchiStanislao BevilacquaIrvine DavidsonEmma DefewSimonetta FraschettiClaire GollétyJohn N GriffinKristjan HerkülJonne KottaAline MignéMarkus MolisSophie K NicolLaure M-L J NoëlIsabel Sousa PintoNelson ValdiviaStefano VaselliStuart R JenkinsEcosystems are under pressure from multiple human disturbances whose impact may vary depending on environmental context. We experimentally evaluated variation in the separate and combined effects of the loss of a key functional group (canopy algae) and physical disturbance on rocky shore ecosystems at nine locations across Europe. Multivariate community structure was initially affected (during the first three to six months) at six locations but after 18 months, effects were apparent at only three. Loss of canopy caused increases in cover of non-canopy algae in the three locations in southern Europe and decreases in some northern locations. Measures of ecosystem functioning (community respiration, gross primary productivity, net primary productivity) were affected by loss of canopy at five of the six locations for which data were available. Short-term effects on community respiration were widespread, but effects were rare after 18 months. Functional changes corresponded with changes in community structure and/or species richness at most locations and times sampled, but no single aspect of biodiversity was an effective predictor of longer-term functional changes. Most ecosystems studied were able to compensate in functional terms for impacts caused by indiscriminate physical disturbance. The only consistent effect of disturbance was to increase cover of non-canopy species. Loss of canopy algae temporarily reduced community resistance to disturbance at only two locations and at two locations actually increased resistance. Resistance to disturbance-induced changes in gross primary productivity was reduced by loss of canopy algae at four locations. Location-specific variation in the effects of the same stressors argues for flexible frameworks for the management of marine environments. These results also highlight the need to analyse how species loss and other stressors combine and interact in different environmental contexts.http://europepmc.org/articles/PMC3683006?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Tasman P Crowe
Mathieu Cusson
Fabio Bulleri
Dominique Davoult
Francisco Arenas
Rebecca Aspden
Lisandro Benedetti-Cecchi
Stanislao Bevilacqua
Irvine Davidson
Emma Defew
Simonetta Fraschetti
Claire Golléty
John N Griffin
Kristjan Herkül
Jonne Kotta
Aline Migné
Markus Molis
Sophie K Nicol
Laure M-L J Noël
Isabel Sousa Pinto
Nelson Valdivia
Stefano Vaselli
Stuart R Jenkins
spellingShingle Tasman P Crowe
Mathieu Cusson
Fabio Bulleri
Dominique Davoult
Francisco Arenas
Rebecca Aspden
Lisandro Benedetti-Cecchi
Stanislao Bevilacqua
Irvine Davidson
Emma Defew
Simonetta Fraschetti
Claire Golléty
John N Griffin
Kristjan Herkül
Jonne Kotta
Aline Migné
Markus Molis
Sophie K Nicol
Laure M-L J Noël
Isabel Sousa Pinto
Nelson Valdivia
Stefano Vaselli
Stuart R Jenkins
Large-scale variation in combined impacts of canopy loss and disturbance on community structure and ecosystem functioning.
PLoS ONE
author_facet Tasman P Crowe
Mathieu Cusson
Fabio Bulleri
Dominique Davoult
Francisco Arenas
Rebecca Aspden
Lisandro Benedetti-Cecchi
Stanislao Bevilacqua
Irvine Davidson
Emma Defew
Simonetta Fraschetti
Claire Golléty
John N Griffin
Kristjan Herkül
Jonne Kotta
Aline Migné
Markus Molis
Sophie K Nicol
Laure M-L J Noël
Isabel Sousa Pinto
Nelson Valdivia
Stefano Vaselli
Stuart R Jenkins
author_sort Tasman P Crowe
title Large-scale variation in combined impacts of canopy loss and disturbance on community structure and ecosystem functioning.
title_short Large-scale variation in combined impacts of canopy loss and disturbance on community structure and ecosystem functioning.
title_full Large-scale variation in combined impacts of canopy loss and disturbance on community structure and ecosystem functioning.
title_fullStr Large-scale variation in combined impacts of canopy loss and disturbance on community structure and ecosystem functioning.
title_full_unstemmed Large-scale variation in combined impacts of canopy loss and disturbance on community structure and ecosystem functioning.
title_sort large-scale variation in combined impacts of canopy loss and disturbance on community structure and ecosystem functioning.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2013-01-01
description Ecosystems are under pressure from multiple human disturbances whose impact may vary depending on environmental context. We experimentally evaluated variation in the separate and combined effects of the loss of a key functional group (canopy algae) and physical disturbance on rocky shore ecosystems at nine locations across Europe. Multivariate community structure was initially affected (during the first three to six months) at six locations but after 18 months, effects were apparent at only three. Loss of canopy caused increases in cover of non-canopy algae in the three locations in southern Europe and decreases in some northern locations. Measures of ecosystem functioning (community respiration, gross primary productivity, net primary productivity) were affected by loss of canopy at five of the six locations for which data were available. Short-term effects on community respiration were widespread, but effects were rare after 18 months. Functional changes corresponded with changes in community structure and/or species richness at most locations and times sampled, but no single aspect of biodiversity was an effective predictor of longer-term functional changes. Most ecosystems studied were able to compensate in functional terms for impacts caused by indiscriminate physical disturbance. The only consistent effect of disturbance was to increase cover of non-canopy species. Loss of canopy algae temporarily reduced community resistance to disturbance at only two locations and at two locations actually increased resistance. Resistance to disturbance-induced changes in gross primary productivity was reduced by loss of canopy algae at four locations. Location-specific variation in the effects of the same stressors argues for flexible frameworks for the management of marine environments. These results also highlight the need to analyse how species loss and other stressors combine and interact in different environmental contexts.
url http://europepmc.org/articles/PMC3683006?pdf=render
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