Temperature-size responses alter food chain persistence across environmental gradients.

Abstract:

:Body-size reduction is a ubiquitous response to global warming alongside changes in species phenology and distributions. However, ecological consequences of temperature-size (TS) responses for community persistence under environmental change remain largely unexplored. Here, we investigated the interactive effects of warming, enrichment, community size structure and TS responses on a three-species food chain using a temperature-dependent model with empirical parameterisation. We found that TS responses often increase community persistence, mainly by modifying consumer-resource size ratios and thereby altering interaction strengths and energetic efficiencies. However, the sign and magnitude of these effects vary with warming and enrichment levels, TS responses of constituent species, and community size structure. We predict that the consequences of TS responses are stronger in aquatic than in terrestrial ecosystems, especially when species show different TS responses. We conclude that considering the links between phenotypic plasticity, environmental drivers and species interactions is crucial to better predict global change impacts on ecosystem diversity and stability.

journal_name

Ecol Lett

journal_title

Ecology letters

authors

Sentis A,Binzer A,Boukal DS

doi

10.1111/ele.12779

subject

Has Abstract

pub_date

2017-07-01 00:00:00

pages

852-862

issue

7

eissn

1461-023X

issn

1461-0248

journal_volume

20

pub_type

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