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Predator and prey functional traits: understanding the adaptive machinery driving predator–prey interactions

Predator–prey relationships are a central component of community dynamics. Classic approaches have tried to understand and predict these relationships in terms of consumptive interactions between predator and prey species, but characterizing the interaction this way is insufficient to predict the co...

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Autor principal: Schmitz, Oswald
Formato: Online Artículo Texto
Lenguaje:English
Publicado: F1000Research 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5621104/
https://www.ncbi.nlm.nih.gov/pubmed/29043073
http://dx.doi.org/10.12688/f1000research.11813.1
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author Schmitz, Oswald
author_facet Schmitz, Oswald
author_sort Schmitz, Oswald
collection PubMed
description Predator–prey relationships are a central component of community dynamics. Classic approaches have tried to understand and predict these relationships in terms of consumptive interactions between predator and prey species, but characterizing the interaction this way is insufficient to predict the complexity and context dependency inherent in predator–prey relationships. Recent approaches have begun to explore predator–prey relationships in terms of an evolutionary-ecological game in which predator and prey adapt to each other through reciprocal interactions involving context-dependent expression of functional traits that influence their biomechanics. Functional traits are defined as any morphological, behavioral, or physiological trait of an organism associated with a biotic interaction. Such traits include predator and prey body size, predator and prey personality, predator hunting mode, prey mobility, prey anti-predator behavior, and prey physiological stress. Here, I discuss recent advances in this functional trait approach. Evidence shows that the nature and strength of many interactions are dependent upon the relative magnitude of predator and prey functional traits. Moreover, trait responses can be triggered by non-consumptive predator–prey interactions elicited by responses of prey to risk of predation. These interactions in turn can have dynamic feedbacks that can change the context of the predator–prey interaction, causing predator and prey to adapt their traits—through phenotypically plastic or rapid evolutionary responses—and the nature of their interaction. Research shows that examining predator–prey interactions through the lens of an adaptive evolutionary-ecological game offers a foundation to explain variety in the nature and strength of predator–prey interactions observed in different ecological contexts.
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spelling pubmed-56211042017-10-16 Predator and prey functional traits: understanding the adaptive machinery driving predator–prey interactions Schmitz, Oswald F1000Res Review Predator–prey relationships are a central component of community dynamics. Classic approaches have tried to understand and predict these relationships in terms of consumptive interactions between predator and prey species, but characterizing the interaction this way is insufficient to predict the complexity and context dependency inherent in predator–prey relationships. Recent approaches have begun to explore predator–prey relationships in terms of an evolutionary-ecological game in which predator and prey adapt to each other through reciprocal interactions involving context-dependent expression of functional traits that influence their biomechanics. Functional traits are defined as any morphological, behavioral, or physiological trait of an organism associated with a biotic interaction. Such traits include predator and prey body size, predator and prey personality, predator hunting mode, prey mobility, prey anti-predator behavior, and prey physiological stress. Here, I discuss recent advances in this functional trait approach. Evidence shows that the nature and strength of many interactions are dependent upon the relative magnitude of predator and prey functional traits. Moreover, trait responses can be triggered by non-consumptive predator–prey interactions elicited by responses of prey to risk of predation. These interactions in turn can have dynamic feedbacks that can change the context of the predator–prey interaction, causing predator and prey to adapt their traits—through phenotypically plastic or rapid evolutionary responses—and the nature of their interaction. Research shows that examining predator–prey interactions through the lens of an adaptive evolutionary-ecological game offers a foundation to explain variety in the nature and strength of predator–prey interactions observed in different ecological contexts. F1000Research 2017-09-27 /pmc/articles/PMC5621104/ /pubmed/29043073 http://dx.doi.org/10.12688/f1000research.11813.1 Text en Copyright: © 2017 Schmitz O http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution Licence, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Review
Schmitz, Oswald
Predator and prey functional traits: understanding the adaptive machinery driving predator–prey interactions
title Predator and prey functional traits: understanding the adaptive machinery driving predator–prey interactions
title_full Predator and prey functional traits: understanding the adaptive machinery driving predator–prey interactions
title_fullStr Predator and prey functional traits: understanding the adaptive machinery driving predator–prey interactions
title_full_unstemmed Predator and prey functional traits: understanding the adaptive machinery driving predator–prey interactions
title_short Predator and prey functional traits: understanding the adaptive machinery driving predator–prey interactions
title_sort predator and prey functional traits: understanding the adaptive machinery driving predator–prey interactions
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5621104/
https://www.ncbi.nlm.nih.gov/pubmed/29043073
http://dx.doi.org/10.12688/f1000research.11813.1
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