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Artificial Selection on Relative Brain Size in the Guppy Reveals Costs and Benefits of Evolving a Larger Brain

The large variation in brain size that exists in the animal kingdom has been suggested to have evolved through the balance between selective advantages of greater cognitive ability and the prohibitively high energy demands of a larger brain (the “expensive-tissue hypothesis” [1]). Despite over a cen...

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Autores principales: Kotrschal, Alexander, Rogell, Björn, Bundsen, Andreas, Svensson, Beatrice, Zajitschek, Susanne, Brännström, Ioana, Immler, Simone, Maklakov, Alexei A., Kolm, Niclas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3566478/
https://www.ncbi.nlm.nih.gov/pubmed/23290552
http://dx.doi.org/10.1016/j.cub.2012.11.058
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author Kotrschal, Alexander
Rogell, Björn
Bundsen, Andreas
Svensson, Beatrice
Zajitschek, Susanne
Brännström, Ioana
Immler, Simone
Maklakov, Alexei A.
Kolm, Niclas
author_facet Kotrschal, Alexander
Rogell, Björn
Bundsen, Andreas
Svensson, Beatrice
Zajitschek, Susanne
Brännström, Ioana
Immler, Simone
Maklakov, Alexei A.
Kolm, Niclas
author_sort Kotrschal, Alexander
collection PubMed
description The large variation in brain size that exists in the animal kingdom has been suggested to have evolved through the balance between selective advantages of greater cognitive ability and the prohibitively high energy demands of a larger brain (the “expensive-tissue hypothesis” [1]). Despite over a century of research on the evolution of brain size, empirical support for the trade-off between cognitive ability and energetic costs is based exclusively on correlative evidence [2], and the theory remains controversial [3, 4]. Here we provide experimental evidence for costs and benefits of increased brain size. We used artificial selection for large and small brain size relative to body size in a live-bearing fish, the guppy (Poecilia reticulata), and found that relative brain size evolved rapidly in response to divergent selection in both sexes. Large-brained females outperformed small-brained females in a numerical learning assay designed to test cognitive ability. Moreover, large-brained lines, especially males, developed smaller guts, as predicted by the expensive-tissue hypothesis [1], and produced fewer offspring. We propose that the evolution of brain size is mediated by a functional trade-off between increased cognitive ability and reproductive performance and discuss the implications of these findings for vertebrate brain evolution.
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spelling pubmed-35664782013-02-07 Artificial Selection on Relative Brain Size in the Guppy Reveals Costs and Benefits of Evolving a Larger Brain Kotrschal, Alexander Rogell, Björn Bundsen, Andreas Svensson, Beatrice Zajitschek, Susanne Brännström, Ioana Immler, Simone Maklakov, Alexei A. Kolm, Niclas Curr Biol Report The large variation in brain size that exists in the animal kingdom has been suggested to have evolved through the balance between selective advantages of greater cognitive ability and the prohibitively high energy demands of a larger brain (the “expensive-tissue hypothesis” [1]). Despite over a century of research on the evolution of brain size, empirical support for the trade-off between cognitive ability and energetic costs is based exclusively on correlative evidence [2], and the theory remains controversial [3, 4]. Here we provide experimental evidence for costs and benefits of increased brain size. We used artificial selection for large and small brain size relative to body size in a live-bearing fish, the guppy (Poecilia reticulata), and found that relative brain size evolved rapidly in response to divergent selection in both sexes. Large-brained females outperformed small-brained females in a numerical learning assay designed to test cognitive ability. Moreover, large-brained lines, especially males, developed smaller guts, as predicted by the expensive-tissue hypothesis [1], and produced fewer offspring. We propose that the evolution of brain size is mediated by a functional trade-off between increased cognitive ability and reproductive performance and discuss the implications of these findings for vertebrate brain evolution. Cell Press 2013-01-21 /pmc/articles/PMC3566478/ /pubmed/23290552 http://dx.doi.org/10.1016/j.cub.2012.11.058 Text en © 2013 ELL & Excerpta Medica. This document may be redistributed and reused, subject to certain conditions (http://www.elsevier.com/wps/find/authorsview.authors/supplementalterms1.0) .
spellingShingle Report
Kotrschal, Alexander
Rogell, Björn
Bundsen, Andreas
Svensson, Beatrice
Zajitschek, Susanne
Brännström, Ioana
Immler, Simone
Maklakov, Alexei A.
Kolm, Niclas
Artificial Selection on Relative Brain Size in the Guppy Reveals Costs and Benefits of Evolving a Larger Brain
title Artificial Selection on Relative Brain Size in the Guppy Reveals Costs and Benefits of Evolving a Larger Brain
title_full Artificial Selection on Relative Brain Size in the Guppy Reveals Costs and Benefits of Evolving a Larger Brain
title_fullStr Artificial Selection on Relative Brain Size in the Guppy Reveals Costs and Benefits of Evolving a Larger Brain
title_full_unstemmed Artificial Selection on Relative Brain Size in the Guppy Reveals Costs and Benefits of Evolving a Larger Brain
title_short Artificial Selection on Relative Brain Size in the Guppy Reveals Costs and Benefits of Evolving a Larger Brain
title_sort artificial selection on relative brain size in the guppy reveals costs and benefits of evolving a larger brain
topic Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3566478/
https://www.ncbi.nlm.nih.gov/pubmed/23290552
http://dx.doi.org/10.1016/j.cub.2012.11.058
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