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Terrestrial discharge influences microbioerosion and microbioeroder community structure in coral reefs

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Terrestrial discharge influences microbioerosion and microbioeroder community structure in coral reefs

DOI: 10.2989/1814232x.2018.1435424

Type: Publication

Year: 2018

Citations: 2

AZORES DEEP-SEA RESEARCH
Publication January 2018

Terrestrial discharge influences microbioerosion and microbioeroder community structure in coral reefs

African Journal of Marine Science

10.2989/1814232x.2018.1435424
Open DOI
Total authors
4
Involved team members
1
Citations
2
References
99

Citations by year

2 years
2023
1
2019
1

Abstract

Microbioerosion rates and microbioeroder community structure were studied in four Kenyan protected coral-reef lagoons using shell fragments of Tridacna giant clams to determine their response to the influence of terrestrial run-off. Fourteen different microbioeroder traces from seven cyanobacteria, three green algae and four fungi species were identified. The river discharge-impacted reef and ‘pristine’ reef showed similar composition but higher microbioeroder abundance and total cyanobacteria- and chlorophyte-bioeroded areas when compared with the other study reefs. Cyanobacteria dominated during the north-east monsoon (NEM) relative to the south-east monsoon (SEM) season, with algae and cyanobacteria being major microbioeroders in the river-impacted and pristine reefs. The rate of microbioerosion varied between 4.3 g CaCO3 m−2 y−1 (SEM) and 134.7 g CaCO3 m−2 y−1 (NEM), and was highest in the river-impacted reef (127.6 g CaCO3 m−2 y−1), which was almost double that in the pristine reef (69.5 g CaCO3 m−2 y−1) and the mangrove-fringed reef (56.2 g CaCO3 m−2 y−1). The microbioerosion rates measured in this study may not be high enough to cause concern with regard to the health and net carbonate production of Kenya’s coral reefs. Nevertheless, predicted increases in the frequency and severity of stresses related to global climate change (e.g. increased sea surface temperature, acidification), as well as interactions with local disturbances and their influence on bioerosion, may be increasingly important in the future.

Authors

1 involved team member
S
Sa Mwachireya

Kenya Marine and Fisheries Research Institute (KMFRI), Mombasa, Kenya

+1 more

B
Be Hartwick

Department of Biological Sciences, Simon Fraser University, Burnaby, British Columbia, Canada

T
Tr Mcclanahan
0000-0001-5821-3584

Wildlife Conservation Society, Marine Programs, Brooklyn, New York, USA

Record details

Type
article
Language
EN
Volume
40
Issue
1
Pages
25–42
ISSN
1814-232X

Keywords

Reef Coral reef Bioerosion Algae Coral Mangrove Oceanography Resilience of coral reefs Environmental science Fringing reef Environmental issues with coral reefs Ecology Fishery Biology Geology

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