Multi-trophic markers illuminate the understanding of the functioning of a remote, low coral cover Marquesan coral reef food web.

Fey, Pauline , Parravicini, Valeriano , Bănaru, Daniela , Dierking, Jan , Galzin, René, Lebreton, Benoit , Meziane, Tarik , Polunin, Nicholas V. C. , Zubia, Mayalen and Letourneur, Yves (2021) Multi-trophic markers illuminate the understanding of the functioning of a remote, low coral cover Marquesan coral reef food web. Open Access Scientific Reports, 11 (1). Art.Nr. 20950. DOI 10.1038/s41598-021-00348-w.

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Abstract

We studied the food web structure and functioning of a coral reef ecosystem in the Marquesas Islands, French Polynesia, characterized by low coral cover, high sea surface temperature and meso- to eutrophic waters. The Marquesas constitute a relevant ecosystem to understand the functioning of low diversity reefs that are also subject to global change. A multi-tracer assessment of organic matter pathways was run to delineate ecosystem functioning, using analysis of fatty acids, bulk and compound specific stable isotope analysis and stable isotopes mixing models. Macroalgae and phytoplankton were the two major food sources fueling this food web with, however, some marked seasonal variations. Specifically, zooplankton relied on phytoplankton-derived organic matter and herbivorous fishes on macroalgae-derived organic matter to a much higher extent in summer than in winter (~ 75% vs. ~ 15%, and ~ 70 to 75% vs. ~ 5 to 15%, respectively). Despite remarkably high δ15N values for all trophic compartments, likely due to local dynamics in the nitrogen stock, trophic levels of consumers were similar to those of other coral reef ecosystems. These findings shed light on the functioning of low coral cover systems, which are expected to expand worldwide under global change.

Document Type: Article
Keywords: Food webs; coral reef ecosystem; Stable nitrogen isotopes
Research affiliation: IFREMER
OceanRep > GEOMAR > FB3 Marine Ecology > FB3-EV Marine Evolutionary Ecology
OceanRep > The Future Ocean - Cluster of Excellence
Main POF Topic: PT6: Marine Life
Refereed: Yes
Open Access Journal?: Yes
Publisher: Nature Research
Related URLs:
Projects: Future Ocean
Date Deposited: 09 Nov 2021 13:43
Last Modified: 07 Feb 2024 15:51
URI: https://oceanrep.geomar.de/id/eprint/54377

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