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Global Patterns and Drivers of Seagrass Biomass, Net Primary Production and Meadow Structure
Centre d'Estudis Avançats de Blanes, Spain.
Centre d'Estudis Avançats de Blanes, Spain; 'Hospitalet de Llobregat, Spain; Universitat de Barcelona, Spain.ORCID iD: 0009-0001-2410-7238
Centre d'Estudis Avançats de Blanes, Spain; Instituto deInvestigaciones Marinas y Costeras (IIMyC), Argentina.
Department of Biodiversity, Conservation and Attractions, Australia; Edith Cowan University, Australia.ORCID iD: 0000-0002-0080-483X
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2025 (English)In: Journal of Biogeography, ISSN 0305-0270, E-ISSN 1365-2699, Vol. 52, no 11, article id e70041Article in journal (Refereed) Published
Abstract [en]

Aim We decipher global patterns in seagrass growth and structure to advance seagrass science, facilitate multidisciplinary research, and promote effective management strategies and policy development for seagrass habitats.Methods A global data set on seagrass total biomass, total net primary productivity (NPP), shoot density, and percent cover was compiled across 11 genera. We tested how these variables change across seagrass genera, life-history strategy, and geographic location; and then modelled the environmental drivers (temperature, nutrients, light availability) of the patterns observed.Results The mean (+/- SE) total biomass of seagrasses globally was estimated at 340 +/- 10 g DW m-2 and total NPP was estimated at 5.4 +/- 0.4 g DW m-2 d-1. Mean shoot density across all genera was 1,780 +/- 67 shoots m-2 and percent cover was 42% +/- 1%. Persistent genera showed the highest total biomass followed by opportunistic then colonising genera, whereas shoot density was higher for colonising than persistent, which had the highest percent cover. Latitudinal and bioregional patterns were identified for some genera and were mostly driven by genus-specific traits, followed by localised environmental factors.Main Conclusions Trends in seagrass meadow ecology were largely influenced by seagrass genera and their life-history strategy, with localised environmental factors, such as temperature and nutrients, also playing a role. Global estimates of seagrass biomass and NPP were 2-times higher than previously reported. Seagrass life-history strategies modulate the trade-offs between NPP and biomass to thrive in specific habitats. This study provides the most updated global synthesis of patterns in seagrass growth and structure.

Place, publisher, year, edition, pages
John Wiley & Sons, 2025. Vol. 52, no 11, article id e70041
Keywords [en]
conservation, life history strategies, management, marine angiosperms, productivity, seagrass ecology, thalassia-testudinum, trade-off, temperature, nutrients, dynamics, gradient, balance, growth, beds
National Category
Ecology Environmental Sciences Physical Geography
Identifiers
URN: urn:nbn:se:sh:diva-57978DOI: 10.1111/jbi.70041ISI: 001553684500001Scopus ID: 2-s2.0-105013758934OAI: oai:DiVA.org:sh-57978DiVA, id: diva2:1993126
Funder
EU, Horizon Europe, 101105307
Note

This work was supported by the European Union’s Horizon Europe Training and Mobility actions under the Marie Skłodowska- Curie grantagreement No 101105307, I+D+i projects RYC2019- 027073-I and MEDCHANGE funded by MCIN/AEI/10.13039/501100011033.

Available from: 2025-08-29 Created: 2025-08-29 Last updated: 2025-11-06Bibliographically approved

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Dahl, Martin

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Gomis, EnricStrydom, SimoneSerrano, EduardRicart, Aurora M.Dahl, MartinMazarrasa, InesBates, Elliott J.Puigcorbé, VienaMoreda, UxueInostroza, KarinaMccallum, RoisinLafratta, AnnaWebster, Chanelle L.O'Dea, Caitlyn M.Said, Nicole E.Duarte, Carlos M.Lavery, Paul S.
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