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Ubiquitous trophic niche partitioning drives species coexistence and biomass on coral reefs

Created on 24 Sep 2026

Authors

Casey, J. M., Brandl, S. J., Schiettekatte, N. M., Degregori, S., Strona, G., Merciere, A., Morat, F., Zubia, M., Meyer, C. P., Parravicini, V.

Abstract

Coral reefs support an extraordinary diversity and biomass of fishes. However, whether species coexist through fine-scale niche partitioning, and whether this impacts ecosystem functioning, remain unresolved. We combined DNA metabarcoding and stable isotope analysis to reconstruct a high-resolution food web and quantify the trophic niches of 2,060 reef fishes across 261 species. We observed extreme trophic partitioning: species pairs diverged by a median of 93% (DNA metabarcoding) and 86% (stable isotopes), consistently overlapping far less than expected by chance. Further, communities with greater trophic complementarity supported higher standing-stock biomass, particularly at high species richness. Our results confirm limiting similarity and trophic complementarity as the driving forces of coexistence and ecosystem functioning in the ocean's most diverse ecological community.

Preprint server: bioRxiv
The authors list and abstract were imported from bioRxiv on 24 Sep 2026.

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