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Extreme rainfall events alter the trophic structure in bromeliad tanks across the Neotropics

Gustavo Q. Romero, Nicholas A. C. Marino, A Macdonald, Régis Céréghino, M. Kurtis Trzcinski, Dimaris Acosta Mercado, Céline Leroy, Bruno Corbara, Vinicius F. Farjalla, Ignacio M. Barberis, Olivier Dézerald, Edd Hammill, Trisha B. Atwood, Gustavo C. O. Piccoli, Fabiola Ospina Bautista, Jean‐François Carrias, Juliana S. Leal, Guillermo Montero, Pablo A. P. Antiqueira, Rodrigo Freire, Emilio Realpe, Sarah L. Amundrud, Paula M. de Omena, Alice B. A. Campos, Pavel Kratina, Eoin J. O’Gorman, Diane S. Srivastava

2020Nature Communications110 citationsDOIOpen Access PDF

Abstract

Changes in global and regional precipitation regimes are among the most pervasive components of climate change. Intensification of rainfall cycles, ranging from frequent downpours to severe droughts, could cause widespread, but largely unknown, alterations to trophic structure and ecosystem function. We conducted multi-site coordinated experiments to show how variation in the quantity and evenness of rainfall modulates trophic structure in 210 natural freshwater microcosms (tank bromeliads) across Central and South America (18°N to 29°S). The biomass of smaller organisms (detritivores) was higher under more stable hydrological conditions. Conversely, the biomass of predators was highest when rainfall was uneven, resulting in top-heavy biomass pyramids. These results illustrate how extremes of precipitation, resulting in localized droughts or flooding, can erode the base of freshwater food webs, with negative implications for the stability of trophic dynamics.

Topics & Concepts

Trophic levelBiomass (ecology)EcologyEcosystemSpecies evennessPrecipitationEnvironmental scienceMicrocosmDetritivorePredationBiologyGeographySpecies diversityMeteorologySpecies Distribution and Climate ChangePlant and animal studiesEcology and Vegetation Dynamics Studies
Extreme rainfall events alter the trophic structure in bromeliad tanks across the Neotropics | Litcius