Phylogenetic and functional evidence suggests that deep-ocean ecosystems are highly sensitive to environmental change and direct human disturbance

An understanding of the balance of interspecific competition and the physical environment in structuring organismal communities is crucial because those communities structured primarily by their physical environment typically exhibit greater sensitivity to environmental change than those structured...

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Main Authors: Ashford, OS, Kenny, AJ, Frojan, CRS, Bonsall, MB, Horton, T, Brandt, A, Bird, G, Gerken, S, Rogers, AD
Format: Journal article
Published: Royal Society 2018
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author Ashford, OS
Kenny, AJ
Frojan, CRS
Bonsall, MB
Horton, T
Brandt, A
Bird, G
Gerken, S
Rogers, AD
author_facet Ashford, OS
Kenny, AJ
Frojan, CRS
Bonsall, MB
Horton, T
Brandt, A
Bird, G
Gerken, S
Rogers, AD
author_sort Ashford, OS
collection OXFORD
description An understanding of the balance of interspecific competition and the physical environment in structuring organismal communities is crucial because those communities structured primarily by their physical environment typically exhibit greater sensitivity to environmental change than those structured predominantly by competitive interactions. Here, using detailed phylogenetic and functional information, we investigate this question in macrofaunal assemblages from Northwest Atlantic Ocean continental slopes, a high seas region projected to experience substantial environmental change through the current century. We demonstrate assemblages to be both phylogenetically and functionally under-dispersed, and thus conclude that the physical environment, not competition, may dominate in structuring deep-ocean communities. Further, we find temperature and bottom trawling intensity to be among the environmental factors significantly related to assemblage diversity. These results hint that deep-ocean communities are highly sensitive to their physical environment and vulnerable to environmental perturbation, including by direct disturbance through fishing, and indirectly through the changes brought about by climate change.
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spelling oxford-uuid:f6fcc629-51ef-4dcc-96b6-b8a9a999f82e2022-03-27T12:39:16ZPhylogenetic and functional evidence suggests that deep-ocean ecosystems are highly sensitive to environmental change and direct human disturbanceJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:f6fcc629-51ef-4dcc-96b6-b8a9a999f82eSymplectic Elements at OxfordRoyal Society2018Ashford, OSKenny, AJFrojan, CRSBonsall, MBHorton, TBrandt, ABird, GGerken, SRogers, ADAn understanding of the balance of interspecific competition and the physical environment in structuring organismal communities is crucial because those communities structured primarily by their physical environment typically exhibit greater sensitivity to environmental change than those structured predominantly by competitive interactions. Here, using detailed phylogenetic and functional information, we investigate this question in macrofaunal assemblages from Northwest Atlantic Ocean continental slopes, a high seas region projected to experience substantial environmental change through the current century. We demonstrate assemblages to be both phylogenetically and functionally under-dispersed, and thus conclude that the physical environment, not competition, may dominate in structuring deep-ocean communities. Further, we find temperature and bottom trawling intensity to be among the environmental factors significantly related to assemblage diversity. These results hint that deep-ocean communities are highly sensitive to their physical environment and vulnerable to environmental perturbation, including by direct disturbance through fishing, and indirectly through the changes brought about by climate change.
spellingShingle Ashford, OS
Kenny, AJ
Frojan, CRS
Bonsall, MB
Horton, T
Brandt, A
Bird, G
Gerken, S
Rogers, AD
Phylogenetic and functional evidence suggests that deep-ocean ecosystems are highly sensitive to environmental change and direct human disturbance
title Phylogenetic and functional evidence suggests that deep-ocean ecosystems are highly sensitive to environmental change and direct human disturbance
title_full Phylogenetic and functional evidence suggests that deep-ocean ecosystems are highly sensitive to environmental change and direct human disturbance
title_fullStr Phylogenetic and functional evidence suggests that deep-ocean ecosystems are highly sensitive to environmental change and direct human disturbance
title_full_unstemmed Phylogenetic and functional evidence suggests that deep-ocean ecosystems are highly sensitive to environmental change and direct human disturbance
title_short Phylogenetic and functional evidence suggests that deep-ocean ecosystems are highly sensitive to environmental change and direct human disturbance
title_sort phylogenetic and functional evidence suggests that deep ocean ecosystems are highly sensitive to environmental change and direct human disturbance
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