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Genetic Basis of a Cognitive Complexity Metric

Relational complexity (RC) is a metric reflecting capacity limitation in relational processing. It plays a crucial role in higher cognitive processes and is an endophenotype for several disorders. However, the genetic underpinnings of complex relational processing have not been investigated. Using t...

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Autores principales: Hansell, Narelle K., Halford, Graeme S., Andrews, Glenda, Shum, David H. K., Harris, Sarah E., Davies, Gail, Franic, Sanja, Christoforou, Andrea, Zietsch, Brendan, Painter, Jodie, Medland, Sarah E., Ehli, Erik A., Davies, Gareth E., Steen, Vidar M., Lundervold, Astri J., Reinvang, Ivar, Montgomery, Grant W., Espeseth, Thomas, Hulshoff Pol, Hilleke E., Starr, John M., Martin, Nicholas G., Le Hellard, Stephanie, Boomsma, Dorret I., Deary, Ian J., Wright, Margaret J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4393228/
https://www.ncbi.nlm.nih.gov/pubmed/25860228
http://dx.doi.org/10.1371/journal.pone.0123886
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author Hansell, Narelle K.
Halford, Graeme S.
Andrews, Glenda
Shum, David H. K.
Harris, Sarah E.
Davies, Gail
Franic, Sanja
Christoforou, Andrea
Zietsch, Brendan
Painter, Jodie
Medland, Sarah E.
Ehli, Erik A.
Davies, Gareth E.
Steen, Vidar M.
Lundervold, Astri J.
Reinvang, Ivar
Montgomery, Grant W.
Espeseth, Thomas
Hulshoff Pol, Hilleke E.
Starr, John M.
Martin, Nicholas G.
Le Hellard, Stephanie
Boomsma, Dorret I.
Deary, Ian J.
Wright, Margaret J.
author_facet Hansell, Narelle K.
Halford, Graeme S.
Andrews, Glenda
Shum, David H. K.
Harris, Sarah E.
Davies, Gail
Franic, Sanja
Christoforou, Andrea
Zietsch, Brendan
Painter, Jodie
Medland, Sarah E.
Ehli, Erik A.
Davies, Gareth E.
Steen, Vidar M.
Lundervold, Astri J.
Reinvang, Ivar
Montgomery, Grant W.
Espeseth, Thomas
Hulshoff Pol, Hilleke E.
Starr, John M.
Martin, Nicholas G.
Le Hellard, Stephanie
Boomsma, Dorret I.
Deary, Ian J.
Wright, Margaret J.
author_sort Hansell, Narelle K.
collection PubMed
description Relational complexity (RC) is a metric reflecting capacity limitation in relational processing. It plays a crucial role in higher cognitive processes and is an endophenotype for several disorders. However, the genetic underpinnings of complex relational processing have not been investigated. Using the classical twin model, we estimated the heritability of RC and genetic overlap with intelligence (IQ), reasoning, and working memory in a twin and sibling sample aged 15-29 years (N = 787). Further, in an exploratory search for genetic loci contributing to RC, we examined associated genetic markers and genes in our Discovery sample and selected loci for replication in four independent samples (ALSPAC, LBC1936, NTR, NCNG), followed by meta-analysis (N>6500) at the single marker level. Twin modelling showed RC is highly heritable (67%), has considerable genetic overlap with IQ (59%), and is a major component of genetic covariation between reasoning and working memory (72%). At the molecular level, we found preliminary support for four single-marker loci (one in the gene DGKB), and at a gene-based level for the NPS gene, having influence on cognition. These results indicate that genetic sources influencing relational processing are a key component of the genetic architecture of broader cognitive abilities. Further, they suggest a genetic cascade, whereby genetic factors influencing capacity limitation in relational processing have a flow-on effect to more complex cognitive traits, including reasoning and working memory, and ultimately, IQ.
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spelling pubmed-43932282015-04-21 Genetic Basis of a Cognitive Complexity Metric Hansell, Narelle K. Halford, Graeme S. Andrews, Glenda Shum, David H. K. Harris, Sarah E. Davies, Gail Franic, Sanja Christoforou, Andrea Zietsch, Brendan Painter, Jodie Medland, Sarah E. Ehli, Erik A. Davies, Gareth E. Steen, Vidar M. Lundervold, Astri J. Reinvang, Ivar Montgomery, Grant W. Espeseth, Thomas Hulshoff Pol, Hilleke E. Starr, John M. Martin, Nicholas G. Le Hellard, Stephanie Boomsma, Dorret I. Deary, Ian J. Wright, Margaret J. PLoS One Research Article Relational complexity (RC) is a metric reflecting capacity limitation in relational processing. It plays a crucial role in higher cognitive processes and is an endophenotype for several disorders. However, the genetic underpinnings of complex relational processing have not been investigated. Using the classical twin model, we estimated the heritability of RC and genetic overlap with intelligence (IQ), reasoning, and working memory in a twin and sibling sample aged 15-29 years (N = 787). Further, in an exploratory search for genetic loci contributing to RC, we examined associated genetic markers and genes in our Discovery sample and selected loci for replication in four independent samples (ALSPAC, LBC1936, NTR, NCNG), followed by meta-analysis (N>6500) at the single marker level. Twin modelling showed RC is highly heritable (67%), has considerable genetic overlap with IQ (59%), and is a major component of genetic covariation between reasoning and working memory (72%). At the molecular level, we found preliminary support for four single-marker loci (one in the gene DGKB), and at a gene-based level for the NPS gene, having influence on cognition. These results indicate that genetic sources influencing relational processing are a key component of the genetic architecture of broader cognitive abilities. Further, they suggest a genetic cascade, whereby genetic factors influencing capacity limitation in relational processing have a flow-on effect to more complex cognitive traits, including reasoning and working memory, and ultimately, IQ. Public Library of Science 2015-04-10 /pmc/articles/PMC4393228/ /pubmed/25860228 http://dx.doi.org/10.1371/journal.pone.0123886 Text en © 2015 Hansell et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Hansell, Narelle K.
Halford, Graeme S.
Andrews, Glenda
Shum, David H. K.
Harris, Sarah E.
Davies, Gail
Franic, Sanja
Christoforou, Andrea
Zietsch, Brendan
Painter, Jodie
Medland, Sarah E.
Ehli, Erik A.
Davies, Gareth E.
Steen, Vidar M.
Lundervold, Astri J.
Reinvang, Ivar
Montgomery, Grant W.
Espeseth, Thomas
Hulshoff Pol, Hilleke E.
Starr, John M.
Martin, Nicholas G.
Le Hellard, Stephanie
Boomsma, Dorret I.
Deary, Ian J.
Wright, Margaret J.
Genetic Basis of a Cognitive Complexity Metric
title Genetic Basis of a Cognitive Complexity Metric
title_full Genetic Basis of a Cognitive Complexity Metric
title_fullStr Genetic Basis of a Cognitive Complexity Metric
title_full_unstemmed Genetic Basis of a Cognitive Complexity Metric
title_short Genetic Basis of a Cognitive Complexity Metric
title_sort genetic basis of a cognitive complexity metric
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4393228/
https://www.ncbi.nlm.nih.gov/pubmed/25860228
http://dx.doi.org/10.1371/journal.pone.0123886
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