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May 28, 2026Scientific Reports0 citationsOpen Access

Coastal land uplift and intensified land-use influence seagrass carbon and nitrogen sink capacity over millennial timescales

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MDMartin DahlSödertörn UniversitySBSara BraunSödertörn UniversityMAMaria E. AsplundUniversity of Gothenburg

Key Points

  • This research aims to understand how land-use and coastal uplift influence the carbon and nitrogen storage of seagrass over millennia.
  • Used multiproxy paleoreconstruction to assess seagrass carbon and nitrogen accumulation.
  • Analyzed the impacts of landscape clearance and land uplift on sedimentary processes.
  • Reconstructed historical conditions over millennial timescales in the Baltic Sea.
  • Documented higher accumulation of carbon and nitrogen due to increased terrestrial runoff from land-use changes.
  • Land uplift created sheltered environments, facilitating seagrass colonization over 1700 and more than 4000 years ago.
  • Seagrass presence improved the quality of carbon and nitrogen stocks by increasing lignin content.

Abstract

Abstract 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.

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Cite This Study

Dahl et al. (2026) studied this question.

synapsesocial.com/papers/6a17dbe93fad632b0f9d8a11https://doi.org/10.1038/s41598-026-54674-y
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