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A way forward with eco evo devo: an extended theory of resource polymorphism with postglacial fishes as model systems

A major goal of evolutionary science is to understand how biological diversity is generated and altered. Despite considerable advances, we still have limited insight into how phenotypic variation arises and is sorted by natural selection. Here we argue that an integrated view, which merges ecology,...

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Autores principales: Skúlason, Skúli, Parsons, Kevin J., Svanbäck, Richard, Räsänen, Katja, Ferguson, Moira M., Adams, Colin E., Amundsen, Per‐Arne, Bartels, Pia, Bean, Colin W., Boughman, Janette W., Englund, Göran, Guðbrandsson, Jóhannes, Hooker, Oliver E., Hudson, Alan G., Kahilainen, Kimmo K., Knudsen, Rune, Kristjánsson, Bjarni K., Leblanc, Camille A‐L., Jónsson, Zophonías, Öhlund, Gunnar, Smith, Carl, Snorrason, Sigurður S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6852119/
https://www.ncbi.nlm.nih.gov/pubmed/31215138
http://dx.doi.org/10.1111/brv.12534
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author Skúlason, Skúli
Parsons, Kevin J.
Svanbäck, Richard
Räsänen, Katja
Ferguson, Moira M.
Adams, Colin E.
Amundsen, Per‐Arne
Bartels, Pia
Bean, Colin W.
Boughman, Janette W.
Englund, Göran
Guðbrandsson, Jóhannes
Hooker, Oliver E.
Hudson, Alan G.
Kahilainen, Kimmo K.
Knudsen, Rune
Kristjánsson, Bjarni K.
Leblanc, Camille A‐L.
Jónsson, Zophonías
Öhlund, Gunnar
Smith, Carl
Snorrason, Sigurður S.
author_facet Skúlason, Skúli
Parsons, Kevin J.
Svanbäck, Richard
Räsänen, Katja
Ferguson, Moira M.
Adams, Colin E.
Amundsen, Per‐Arne
Bartels, Pia
Bean, Colin W.
Boughman, Janette W.
Englund, Göran
Guðbrandsson, Jóhannes
Hooker, Oliver E.
Hudson, Alan G.
Kahilainen, Kimmo K.
Knudsen, Rune
Kristjánsson, Bjarni K.
Leblanc, Camille A‐L.
Jónsson, Zophonías
Öhlund, Gunnar
Smith, Carl
Snorrason, Sigurður S.
author_sort Skúlason, Skúli
collection PubMed
description A major goal of evolutionary science is to understand how biological diversity is generated and altered. Despite considerable advances, we still have limited insight into how phenotypic variation arises and is sorted by natural selection. Here we argue that an integrated view, which merges ecology, evolution and developmental biology (eco evo devo) on an equal footing, is needed to understand the multifaceted role of the environment in simultaneously determining the development of the phenotype and the nature of the selective environment, and how organisms in turn affect the environment through eco evo and eco devo feedbacks. To illustrate the usefulness of an integrated eco evo devo perspective, we connect it with the theory of resource polymorphism (i.e. the phenotypic and genetic diversification that occurs in response to variation in available resources). In so doing, we highlight fishes from recently glaciated freshwater systems as exceptionally well‐suited model systems for testing predictions of an eco evo devo framework in studies of diversification. Studies on these fishes show that intraspecific diversity can evolve rapidly, and that this process is jointly facilitated by (i) the availability of diverse environments promoting divergent natural selection; (ii) dynamic developmental processes sensitive to environmental and genetic signals; and (iii) eco evo and eco devo feedbacks influencing the selective and developmental environments of the phenotype. We highlight empirical examples and present a conceptual model for the generation of resource polymorphism – emphasizing eco evo devo, and identify current gaps in knowledge.
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spelling pubmed-68521192019-11-22 A way forward with eco evo devo: an extended theory of resource polymorphism with postglacial fishes as model systems Skúlason, Skúli Parsons, Kevin J. Svanbäck, Richard Räsänen, Katja Ferguson, Moira M. Adams, Colin E. Amundsen, Per‐Arne Bartels, Pia Bean, Colin W. Boughman, Janette W. Englund, Göran Guðbrandsson, Jóhannes Hooker, Oliver E. Hudson, Alan G. Kahilainen, Kimmo K. Knudsen, Rune Kristjánsson, Bjarni K. Leblanc, Camille A‐L. Jónsson, Zophonías Öhlund, Gunnar Smith, Carl Snorrason, Sigurður S. Biol Rev Camb Philos Soc Original Articles A major goal of evolutionary science is to understand how biological diversity is generated and altered. Despite considerable advances, we still have limited insight into how phenotypic variation arises and is sorted by natural selection. Here we argue that an integrated view, which merges ecology, evolution and developmental biology (eco evo devo) on an equal footing, is needed to understand the multifaceted role of the environment in simultaneously determining the development of the phenotype and the nature of the selective environment, and how organisms in turn affect the environment through eco evo and eco devo feedbacks. To illustrate the usefulness of an integrated eco evo devo perspective, we connect it with the theory of resource polymorphism (i.e. the phenotypic and genetic diversification that occurs in response to variation in available resources). In so doing, we highlight fishes from recently glaciated freshwater systems as exceptionally well‐suited model systems for testing predictions of an eco evo devo framework in studies of diversification. Studies on these fishes show that intraspecific diversity can evolve rapidly, and that this process is jointly facilitated by (i) the availability of diverse environments promoting divergent natural selection; (ii) dynamic developmental processes sensitive to environmental and genetic signals; and (iii) eco evo and eco devo feedbacks influencing the selective and developmental environments of the phenotype. We highlight empirical examples and present a conceptual model for the generation of resource polymorphism – emphasizing eco evo devo, and identify current gaps in knowledge. Blackwell Publishing Ltd 2019-06-19 2019-10 /pmc/articles/PMC6852119/ /pubmed/31215138 http://dx.doi.org/10.1111/brv.12534 Text en © 2019 The Authors. Biological Reviews published by John Wiley & Sons Ltd on behalf of Cambridge Philosophical Society. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Skúlason, Skúli
Parsons, Kevin J.
Svanbäck, Richard
Räsänen, Katja
Ferguson, Moira M.
Adams, Colin E.
Amundsen, Per‐Arne
Bartels, Pia
Bean, Colin W.
Boughman, Janette W.
Englund, Göran
Guðbrandsson, Jóhannes
Hooker, Oliver E.
Hudson, Alan G.
Kahilainen, Kimmo K.
Knudsen, Rune
Kristjánsson, Bjarni K.
Leblanc, Camille A‐L.
Jónsson, Zophonías
Öhlund, Gunnar
Smith, Carl
Snorrason, Sigurður S.
A way forward with eco evo devo: an extended theory of resource polymorphism with postglacial fishes as model systems
title A way forward with eco evo devo: an extended theory of resource polymorphism with postglacial fishes as model systems
title_full A way forward with eco evo devo: an extended theory of resource polymorphism with postglacial fishes as model systems
title_fullStr A way forward with eco evo devo: an extended theory of resource polymorphism with postglacial fishes as model systems
title_full_unstemmed A way forward with eco evo devo: an extended theory of resource polymorphism with postglacial fishes as model systems
title_short A way forward with eco evo devo: an extended theory of resource polymorphism with postglacial fishes as model systems
title_sort way forward with eco evo devo: an extended theory of resource polymorphism with postglacial fishes as model systems
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6852119/
https://www.ncbi.nlm.nih.gov/pubmed/31215138
http://dx.doi.org/10.1111/brv.12534
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