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September 26, 2025Limnology and Oceanography Letters2 citationsOpen Access

Century‐scale resilience of stored seagrass blue carbon

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PBPeter BergRHRéjean HébertMMMarion McKenzie

Key Points

  • Seagrass meadows showed resilience with significant blue carbon persistence over a century.
  • Legacy blue carbon levels in sediments were double those found in newly restored seagrass meadows.
  • Sediment core analysis indicated the importance of seagrass even after regional extinction events.
  • Findings suggest successful seagrass restoration projects can enhance long-term carbon sequestration.

Abstract

Abstract Blue carbon sequestration in coastal ecosystems is only relevant to climate change mitigation and carbon offset crediting if the carbon is taken out of circulation for at least a century. Here, we examined sediment cores, up to 2.2 m deep, collected in modern Zostera marina seagrass meadows in Mid‐Atlantic lagoons in Virginia, USA. Seagrass was widely abundant here until disease caused regional extinction in 1933. In 1998, 65 yr later, a small naturally seeded seagrass patch was found and spurred a large‐scale seagrass restoration project, now covering more than 40 km 2 . Integrated data on 210 Pb and 14 C dating, sediment organic matter and carbon content, and stable isotopic and DNA analysis revealed that a large part of the seagrass organic carbon persisted for centuries despite the absence of seagrass for many decades. In some cases, this legacy blue carbon was double the amount buried in sediments of the restored seagrass meadows.

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Cite This Study

Berg et al. (2025) studied this question.

synapsesocial.com/papers/68d6c671b1249cec298b21aehttps://doi.org/10.1002/lol2.70056
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