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First assessment of blue carbon stocks, sequestration rates and potential sources since 1900 at Arguin Island (Mauritania)

Márcio Martins; Fátima Abrantes; Tânia Aires; Sarah Rautenbach; Aschwin H. Engelen; João Encarnação; David Abecasis; Cheikhna Gandega; Vitor Magalhães; Khallahi Brahim; Sidina Ebaye; Jean-Paul Barusseau; André Freiwald; Carmen B. de los Santos; Ester A. Serrão; Rui Santos
Aquatic Sciences · Vol. 87, Issue 4 · 2025

Abstract

Global blue carbon assessments are hindered by a lack of data from understudied seagrass regions, such as those of Western Africa. This study reports the first in situ records of organic carbon (OC) stocks and burial rates for seagrass beds at Arguin Island, Banc d'Arguin (Mauritania), Western Africa, measured in intertidal Zostera noltei and subtidal Cymodocea nodosa meadows. The major blue carbon sources in seagrass meadows since 1900 were assessed using sedimentary environmental DNA (eDNA) and chronostratigraphy. The OC stocks in the top 50 cm of the sediment cores were not significantly different between the beds of the two seagrass species and averaged 27.8 ± 7.14 Mg C ha −1 , which is 5 times higher than that in adjacent unvegetated sediments. The OC sequestration rate for the past 100 years was 10.3 ± 1.4 g C m −2 year −1 in C. nodosa sediments and 12.3 ± 5.9 g C m −2 year −1 in Z. noltei sediments. Sedimentary eDNA analysis revealed that the major OC source within the C. nodosa and Z. noltei sediments has been the seagrass species itself, with low contributions from allochthonous eDNA reads. Carbon sources in Z. noltei meadows were more diverse than those in C. nodosa meadows. In bare sediment, diatoms were the major carbon source. The present study demonstrates the potential of sedimentary eDNA to reveal the major sources of organic matter in blue carbon ecosystems, improving our understanding of the provenance of sedimentary OC and thus carbon cycling processes. Additionally, it provides new OC stock and sequestration rate measurements from a region of the world that remains underrepresented in global blue carbon assessments.

Bibliographic Information

JournalAquatic Sciences
PublisherSpringer
Publication Date2025-10-01
Publication Year2025
Volume87
Issue4
Document TypeJournal Article
Print ISSN1015-1621
eISSN1420-9055
DOI10.1007/s00027-025-01211-0

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NARA Access Coverage1920-01-01~Current
Journal Homepagehttps://www.springer.com/journal/27
Publisher PageOpen Publisher Page
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