Coastal land uplift and intensified land-use influence seagrass carbon and nitrogen sink capacity over millennial timescalesShow others and affiliations
2026 (English)In: Scientific Reports, E-ISSN 2045-2322, Vol. 16, no 1, article id 16263
Article in journal (Refereed) Published
Abstract [en]
Seagrass meadows store sedimentary carbon and nitrogen and thus play an important role in climate change mitigation and nutrient retention globally. Here we reconstruct the impact of land-use and coastal land uplift on millennial–scale seagrass (Zostera marina) blue carbon and nitrogen accumulation in the Baltic Sea based on a multiproxy paleoreconstruction approach. We show that increased landscape clearance resulted in higher terrestrial runoff and increased accumulation of carbon and nitrogen, whereas land uplift led to hydrodynamically sheltered environments facilitating seagrass colonization, occurring 1700 and > 4000 years ago. The establishment of the seagrass meadows resulted in enhancement of the quality of carbon and nitrogen stocks with increased lignin contents. Seagrass establishment also likely supported export of organic matter to surrounding unvegetated areas and thereby contributed to carbon and nitrogen accumulation beyond habitat boundaries. The findings show that the long-term carbon and nitrogen accumulation rates and permanence are shaped by land cultivation and geomorphological changes and highlights the importance of seagrass conservation for maintaining thousands of years of sedimentary carbon and nitrogen storage.
Place, publisher, year, edition, pages
Springer Nature, 2026. Vol. 16, no 1, article id 16263
Keywords [en]
Blue carbon, Baltic sea, Zostera marina, Land-use, Coastal change, Paleoreconstruction
National Category
Environmental Sciences
Research subject
Baltic and East European studies
Identifiers
URN: urn:nbn:se:sh:diva-60193DOI: 10.1038/s41598-026-54674-yISI: 001778027800002PubMedID: 42191823Scopus ID: 2-s2.0-105040409244OAI: oai:DiVA.org:sh-60193DiVA, id: diva2:2065435
Part of project
Climate change mitigation capacity of the Baltic coastal seascape: identification of hotspot environments for coastal blue carbon sequestration and guidance for sustainable management of the Baltic coastal landscapes under global change (CLIM-SCAPE), The Foundation for Baltic and East European StudiesUnravelling the relative influence of climate and land-use change on nitrogen retention in Baltic Sea coastal sediments over the last 300 years, The Foundation for Baltic and East European StudiesSeaside - A multidisciplinary study of maritime environmental history, The Foundation for Baltic and East European StudiesClimate change mitigation capacity of Swedish coastal seascapes, Swedish Research Council Formas
Funder
The Foundation for Baltic and East European Studies, 21‐GP‐0005The Foundation for Baltic and East European Studies, 21‐PD2‐0002The Foundation for Baltic and East European Studies, 55/2017Swedish Research Council Formas, 2021‐01282026-06-032026-06-032026-09-02Bibliographically approved