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Influence of Water Masses on the Biodiversity and Biogeography of Deep-Sea Benthic Ecosystems in the North Atlantic

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Influence of Water Masses on the Biodiversity and Biogeography of Deep-Sea Benthic Ecosystems in the North Atlantic

DOI: 10.3389/fmars.2020.00239

Type: Publication

Year: 2020

Citations: 83

AZORES DEEP-SEA RESEARCH
Publication Open access April 2020

Influence of Water Masses on the Biodiversity and Biogeography of Deep-Sea Benthic Ecosystems in the North Atlantic

Frontiers in Marine Science

10.3389/fmars.2020.00239
Open DOI
Total authors
14
Involved team members
3
Citations
83
References
344

Citations by year

7 years
2026
3
2025
17
2024
12
2023
14
2022
14
2021
19
2020
4

Related to this work

Abstract

Circulation patterns in the North Atlantic Ocean have changed and re-organized multiple times over millions of years, influencing the biodiversity, distribution and connectivity patterns of deep-sea species and ecosystems. In this study, we review the effects of the water mass properties (temperature, salinity, food supply, carbonate chemistry and oxygen) on deep-sea benthic megafauna (from species to community level) and discussed in future scenarios of climate change. We focus on the key oceanic controls on deep-sea megafauna biodiversity and biogeography patterns. We place particular attention on cold-water corals and sponges, as these are ecosystem-engineering organisms that constitute vulnerable marine ecosystems with high associated biodiversity. Besides documenting the current state of the knowledge on this topic, a future scenario for water mass properties in the deep North Atlantic basin was predicted. The pace and severity of climate change in the deep-sea will vary across regions. However, predicted water mass properties showed that all regions in the North Atlantic will be exposed to multiple stressors by 2100, experiencing at least one critical change in water temperature (+2°C), organic carbon fluxes (reduced up to 50 %), ocean acidification (pH reduced up to 0.3), aragonite saturation horizon (shoaling above 1000 m) and/or reduction in dissolved oxygen (5%). The northernmost regions of the North Atlantic will suffer the greatest impacts. Warmer and more acidic oceans will drastically reduce the suitable habitat for ecosystem-engineers, with severe consequences such as declines in population densities, even compromising their long-term survival, loss of biodiversity and reduced biogeographic distribution that might compromise connectivity at large scales. These effects can be aggravated by reductions in carbon fluxes, particularly in areas where food availability is already limited. Declines in benthic biomass and biodiversity will diminish ecosystem services such as habitat provision, nutrient cycling, etc. This study shows that the deep-sea vulnerable marine ecosystems affected by contemporary anthropogenic impacts and with the the ongoing climate change impacts are unlikely to withstand additional pressures from more intrusive human activities. This study serves also as a warning to protect these ecosystems through regulations and by tempering the ongoing socio-political drivers for increasing exploitation of marine resources.

Authors

3 involved team members
P
Patricia Puerta
0000-0003-4413-4601

Instituto Español de Oceanograffía, Centro Oceanográfico de Baleares, Palma, Spain

L
Lea-Anne Henry
0000-0001-5134-1102

School of GeoSciences, The University of Edinburgh, Edinburgh, United Kingdom

E
Ellen Kenchington
0000-0003-3784-4533

Department of Fisheries and Oceans, Bedford Institute of Oceanography, Dartmouth, NS, Canada

G
Georgios Kazanidis
0000-0001-5114-6972

School of GeoSciences, The University of Edinburgh, Edinburgh, United Kingdom

J
José Luis Rueda

Instituto Español de Oceanografía, Centro Oceanográfico de Málaga, Fuengirola, Spain

J
Javier Urra
0000-0002-0255-7246

Instituto Español de Oceanografía, Centro Oceanográfico de Málaga, Fuengirola, Spain

S
Steve Ross

University of North Carolina Wilmington, Center for Marine Science, Wilmington, NC, United States

C
Chih-Lin Wei
0000-0001-9430-0060

Institute of Oceanography, National Taiwan University, Taipei, Taiwan

S
Sophie Arnaud-Haond
0000-0001-5814-8452

MARBEC, Universite Montpellier, Ifremer, CNRS, IRD, Sète, France

C
Covadonga Orejas

Instituto Español de Oceanograffía, Centro Oceanográfico de Baleares, Palma, Spain

Record details

Type
article
Language
EN
Volume
7
ISSN
2296-7745

Keywords

Oceanography Biodiversity Benthic zone Ecosystem Environmental science Marine ecosystem Ocean acidification Climate change Ecology Megafauna Water mass Geography Geology Biology Archaeology Pleistocene

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Institute of Marine Sciences — Okeanos, University of the Azores

Departamento de Oceanografia e Pescas — Universidade dos Açores

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9901-862 Horta, Portugal

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