Selective constraints on global plankton dispersal

Author:

Ward Ben A.,Cael B. B.ORCID,Collins SineadORCID,Young C. Robert

Abstract

Marine microbial communities are highly interconnected assemblages of organisms shaped by ecological drift, natural selection, and dispersal. The relative strength of these forces determines how ecosystems respond to environmental gradients, how much diversity is resident in a community or population at any given time, and how populations reorganize and evolve in response to environmental perturbations. In this study, we introduce a globally resolved population–genetic ocean model in order to examine the interplay of dispersal, selection, and adaptive evolution and their effects on community assembly and global biogeography. We find that environmental selection places strong constraints on global dispersal, even in the face of extremely high assumed rates of adaptation. Changing the relative strengths of dispersal, selection, and adaptation has pronounced effects on community assembly in the model and suggests that barriers to dispersal play a key role in the structuring of marine communities, enhancing global biodiversity and the importance of local historical contingencies.

Funder

Royal Society

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

Reference29 articles.

1. Microbial biogeography: putting microorganisms on the map

2. The Ubiquity of Small Species: Patterns of Local and Global Diversity

3. 'Everything is everywhere, but, the environment selects'; what did Baas Becking and Beijerinck really say?

4. L. G. M. Baas-Becking , Geobiologie of Inleiding Tot de Milieukunde (Van Stockum and Zoon, The Hague, the Netherlands, 1934).

5. S. P. Hubbell , The Unified Neutral Theory of Biodiversity and Biogeographyheory of Biodiversity and Biogeography (Princeton University Press, Princeton, NJ, 2001).

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