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Bioerosion: the other ocean acidification problem

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Bioerosion: the other ocean acidification problem

DOI: 10.1093/icesjms/fsw254

Type: Publication

Year: 2017

Citations: 188

AZORES DEEP-SEA RESEARCH
Publication Open access March 2017

Bioerosion: the other ocean acidification problem

ICES Journal of Marine Science

10.1093/icesjms/fsw254
Open DOI
Total authors
5
Involved team members
1
Citations
188
References
334

Citations by year

11 years
2026
2
2025
15
2024
38
2023
12
2022
26
2021
16
2020
21
2019
27
2018
17
2017
13
2013
1

Abstract

Bioerosion of calcium carbonate is the natural counterpart of biogenic calcification. Both are affected by ocean acidification (OA). We summarize definitions and concepts in bioerosion research and knowledge in the context of OA, providing case examples and meta-analyses. Chemically mediated bioerosion relies on energy demanding, biologically controlled undersaturation or acid regulation and increases with simulated OA, as does passive dissolution. Through substrate weakening both processes can indirectly enhance mechanical bioerosion, which is not directly affected by OA. The low attention and expert knowledge on bioerosion produced some ambiguous views and approaches, and limitations to experimental studies restricted opportunities to generalize. Comparability of various bioerosion and calcification rates remains difficult. Physiological responses of bioeroders or interactions of environmental factors are insufficiently studied. We stress the importance to foster and advance high quality bioerosion research as global trends suggest the following: (i) growing environmental change (eutrophication, coral mortality, OA) is expected to elevate bioerosion in the near future; (ii) changes harmful to calcifiers may not be as severe for bioeroders (e.g. warming); and (iii) factors facilitating bioerosion often reduce calcification rates (e.g. OA). The combined result means that the natural process bioerosion has itself become a “stress factor”” for reef health and resilience.

Authors

1 involved team member
C
Christine H. L. Schönberg
0000-0001-6286-8196

School of Earth and Environment and Oceans Institute, The University of Western Australia, Crawley, WA 6009, Australia

+1 more

J
James K. H. Fang
0000-0002-2969-7978

Benthic Resources and Processes Research Group, Institute of Marine Research, Nordnesgaten 50, Bergen 5005, Norway

A
Aline Tribollet
0000-0003-2385-3682

Laboratoire IPSL-LOCEAN, IRD-Sorbonne Universités (Univ. Paris 6) UPMC-CNRS-MNHN, 32 Avenue Henri Varagnat, Bondy 93143, France

M
Max Wisshak
0000-0001-7531-3317

Marine Research Department, Senckenberg am Meer, 26382 Wilhelmshaven, Germany

Record details

Type
article
Language
EN
Volume
74
Issue
4
Pages
895–925
ISSN
1054-3139

Keywords

Bioerosion Ecology Ocean acidification Coral reef Environmental science Context (archaeology) Climate change Oceanography Biology Geology Paleontology

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Institute of Marine Sciences — Okeanos, University of the Azores

Departamento de Oceanografia e Pescas — Universidade dos Açores

Rua Prof. Doutor Frederico Machado, No. 4
9901-862 Horta, Portugal

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