Species trait diversity sustains multiple dietary nutrients supplied by freshwater fisheries

Author:

Heilpern Sebastian A.1ORCID,Herrera‐R Guido A.2,Fiorella Kathryn J.3,Moya Luis4,Flecker Alexander S.5,McIntyre Peter B.1

Affiliation:

1. Department of Natural Resources and Environment Cornell University Ithaca New York USA

2. Ecology and Evolutionary Biology University of Tennessee Knoxville Tennessee USA

3. Population Medicine and Diagnostic Sciences Cornell University Ithaca New York USA

4. Wildlife Conservation Society Iquitos Perú

5. Deparment of Ecology and Evolutionary Biology Cornell University Ithaca New York USA

Abstract

AbstractSpecies, through their traits, influence how ecosystems simultaneously sustain multiple functions. However, it is unclear how trait diversity sustains the multiple contributions biodiversity makes to people. Freshwater fisheries nourish hundreds of millions of people globally, but overharvesting and river fragmentation are increasingly affecting catches. We analyse how loss of nutritional trait diversity in consumed fish portfolios affects the simultaneous provisioning of six essential dietary nutrients using household data from the Amazon and Tonlé Sap, two of Earth's most productive and diverse freshwater fisheries. We find that fish portfolios with high trait diversity meet higher thresholds of required daily intakes for a greater variety of nutrients with less fish biomass. This beneficial biodiversity effect is driven by low redundancy in species nutrient content profiles. Our findings imply that sustaining the dietary contributions fish make to people given declining biodiversity could require more biomass and ultimately exacerbate fishing pressure in already‐stressed ecosystems.

Publisher

Wiley

Subject

Ecology, Evolution, Behavior and Systematics

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