Global biogeography of the smallest plankton across ocean depths

Author:

Junger Pedro C.12ORCID,Sarmento Hugo1ORCID,Giner Caterina R.3ORCID,Mestre Mireia45ORCID,Sebastián Marta3ORCID,Morán Xosé Anxelu G.6ORCID,Arístegui Javier7ORCID,Agustí Susana8ORCID,Duarte Carlos M.8ORCID,Acinas Silvia G.3ORCID,Massana Ramon3ORCID,Gasol Josep M.3ORCID,Logares Ramiro3ORCID

Affiliation:

1. Department of Hydrobiology, Universidade Federal de São Carlos (UFSCar), São Carlos, SP 13565-905, Brazil.

2. Programa de Pós-Graduação em Ecologia e Recursos Naturais, Centro de Ciências Biológicas e da Saúde, Universidade Federal de São Carlos (UFSCar), São Carlos, SP 13565-905, Brazil.

3. Institut de Ciències del Mar (ICM), CSIC, Barcelona, Catalunya 08003, Spain.

4. Centro COPAS-COASTAL, Departamento de Oceanografía, Universidad de Concepción, Concepción, Chile.

5. Centro FONDAP de Investigación en Dinámica de Ecosistemas Marinos de Altas Latitudes (IDEAL), Valdivia, Chile.

6. Centro Oceanográfico de Gijón/Xixón (IEO, CSIC), Gijón/Xixón, Asturias 33212, Spain.

7. Instituto de Oceanografía y Cambio Global (IOCAG), Universidad de Las Palmas de Gran Canaria (ULPGC), Las Palmas de Gran Canaria 35214, Spain.

8. King Abdullah University of Science and Technology (KAUST), Red Sea Research Center (RSRC), Thuwal 23955-6900, Saudi Arabia.

Abstract

Tiny ocean plankton (picoplankton) are fundamental for the functioning of the biosphere, but the ecological mechanisms shaping their biogeography were partially understood. Comprehending whether these microorganisms are structured by niche versus neutral processes is relevant in the context of global change. We investigate the ecological processes (selection, dispersal, and drift) structuring global-ocean picoplanktonic communities inhabiting the epipelagic (0 to 200 meters), mesopelagic (200 to 1000 meters), and bathypelagic (1000 to 4000 meters) zones. We found that selection decreased, while dispersal limitation increased with depth, possibly due to differences in habitat heterogeneity and dispersal barriers such as water masses and bottom topography. Picoplankton β-diversity positively correlated with environmental heterogeneity and water mass variability, but this relationship tended to be weaker for eukaryotes than for prokaryotes. Community patterns were more pronounced in the Mediterranean Sea, probably because of its cross-basin environmental heterogeneity and deep-water isolation. We conclude that different combinations of ecological mechanisms shape the biogeography of the ocean microbiome across depths.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

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