Cargando…

The genetic organization of longitudinal subcortical volumetric change is stable throughout the lifespan

Development and aging of the cerebral cortex show similar topographic organization and are governed by the same genes. It is unclear whether the same is true for subcortical regions, which follow fundamentally different ontogenetic and phylogenetic principles. We tested the hypothesis that genetical...

Descripción completa

Detalles Bibliográficos
Autores principales: Fjell, Anders Martin, Grydeland, Hakon, Wang, Yunpeng, Amlien, Inge K, Bartres-Faz, David, Brandmaier, Andreas M, Düzel, Sandra, Elman, Jeremy, Franz, Carol E, Håberg, Asta K, Kietzmann, Tim C, Kievit, Rogier Andrew, Kremen, William S, Krogsrud, Stine K, Kühn, Simone, Lindenberger, Ulman, Macía, Didac, Mowinckel, Athanasia Monika, Nyberg, Lars, Panizzon, Matthew S, Solé-Padullés, Cristina, Sørensen, Øystein, Westerhausen, Rene, Walhovd, Kristine Beate
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8260220/
https://www.ncbi.nlm.nih.gov/pubmed/34180395
http://dx.doi.org/10.7554/eLife.66466
_version_ 1783718780458762240
author Fjell, Anders Martin
Grydeland, Hakon
Wang, Yunpeng
Amlien, Inge K
Bartres-Faz, David
Brandmaier, Andreas M
Düzel, Sandra
Elman, Jeremy
Franz, Carol E
Håberg, Asta K
Kietzmann, Tim C
Kievit, Rogier Andrew
Kremen, William S
Krogsrud, Stine K
Kühn, Simone
Lindenberger, Ulman
Macía, Didac
Mowinckel, Athanasia Monika
Nyberg, Lars
Panizzon, Matthew S
Solé-Padullés, Cristina
Sørensen, Øystein
Westerhausen, Rene
Walhovd, Kristine Beate
author_facet Fjell, Anders Martin
Grydeland, Hakon
Wang, Yunpeng
Amlien, Inge K
Bartres-Faz, David
Brandmaier, Andreas M
Düzel, Sandra
Elman, Jeremy
Franz, Carol E
Håberg, Asta K
Kietzmann, Tim C
Kievit, Rogier Andrew
Kremen, William S
Krogsrud, Stine K
Kühn, Simone
Lindenberger, Ulman
Macía, Didac
Mowinckel, Athanasia Monika
Nyberg, Lars
Panizzon, Matthew S
Solé-Padullés, Cristina
Sørensen, Øystein
Westerhausen, Rene
Walhovd, Kristine Beate
author_sort Fjell, Anders Martin
collection PubMed
description Development and aging of the cerebral cortex show similar topographic organization and are governed by the same genes. It is unclear whether the same is true for subcortical regions, which follow fundamentally different ontogenetic and phylogenetic principles. We tested the hypothesis that genetically governed neurodevelopmental processes can be traced throughout life by assessing to which degree brain regions that develop together continue to change together through life. Analyzing over 6000 longitudinal MRIs of the brain, we used graph theory to identify five clusters of coordinated development, indexed as patterns of correlated volumetric change in brain structures. The clusters tended to follow placement along the cranial axis in embryonic brain development, suggesting continuity from prenatal stages, and correlated with cognition. Across independent longitudinal datasets, we demonstrated that developmental clusters were conserved through life. Twin-based genetic correlations revealed distinct sets of genes governing change in each cluster. Single-nucleotide polymorphisms-based analyses of 38,127 cross-sectional MRIs showed a similar pattern of genetic volume–volume correlations. In conclusion, coordination of subcortical change adheres to fundamental principles of lifespan continuity and genetic organization.
format Online
Article
Text
id pubmed-8260220
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher eLife Sciences Publications, Ltd
record_format MEDLINE/PubMed
spelling pubmed-82602202021-07-07 The genetic organization of longitudinal subcortical volumetric change is stable throughout the lifespan Fjell, Anders Martin Grydeland, Hakon Wang, Yunpeng Amlien, Inge K Bartres-Faz, David Brandmaier, Andreas M Düzel, Sandra Elman, Jeremy Franz, Carol E Håberg, Asta K Kietzmann, Tim C Kievit, Rogier Andrew Kremen, William S Krogsrud, Stine K Kühn, Simone Lindenberger, Ulman Macía, Didac Mowinckel, Athanasia Monika Nyberg, Lars Panizzon, Matthew S Solé-Padullés, Cristina Sørensen, Øystein Westerhausen, Rene Walhovd, Kristine Beate eLife Neuroscience Development and aging of the cerebral cortex show similar topographic organization and are governed by the same genes. It is unclear whether the same is true for subcortical regions, which follow fundamentally different ontogenetic and phylogenetic principles. We tested the hypothesis that genetically governed neurodevelopmental processes can be traced throughout life by assessing to which degree brain regions that develop together continue to change together through life. Analyzing over 6000 longitudinal MRIs of the brain, we used graph theory to identify five clusters of coordinated development, indexed as patterns of correlated volumetric change in brain structures. The clusters tended to follow placement along the cranial axis in embryonic brain development, suggesting continuity from prenatal stages, and correlated with cognition. Across independent longitudinal datasets, we demonstrated that developmental clusters were conserved through life. Twin-based genetic correlations revealed distinct sets of genes governing change in each cluster. Single-nucleotide polymorphisms-based analyses of 38,127 cross-sectional MRIs showed a similar pattern of genetic volume–volume correlations. In conclusion, coordination of subcortical change adheres to fundamental principles of lifespan continuity and genetic organization. eLife Sciences Publications, Ltd 2021-06-28 /pmc/articles/PMC8260220/ /pubmed/34180395 http://dx.doi.org/10.7554/eLife.66466 Text en © 2021, Fjell et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Neuroscience
Fjell, Anders Martin
Grydeland, Hakon
Wang, Yunpeng
Amlien, Inge K
Bartres-Faz, David
Brandmaier, Andreas M
Düzel, Sandra
Elman, Jeremy
Franz, Carol E
Håberg, Asta K
Kietzmann, Tim C
Kievit, Rogier Andrew
Kremen, William S
Krogsrud, Stine K
Kühn, Simone
Lindenberger, Ulman
Macía, Didac
Mowinckel, Athanasia Monika
Nyberg, Lars
Panizzon, Matthew S
Solé-Padullés, Cristina
Sørensen, Øystein
Westerhausen, Rene
Walhovd, Kristine Beate
The genetic organization of longitudinal subcortical volumetric change is stable throughout the lifespan
title The genetic organization of longitudinal subcortical volumetric change is stable throughout the lifespan
title_full The genetic organization of longitudinal subcortical volumetric change is stable throughout the lifespan
title_fullStr The genetic organization of longitudinal subcortical volumetric change is stable throughout the lifespan
title_full_unstemmed The genetic organization of longitudinal subcortical volumetric change is stable throughout the lifespan
title_short The genetic organization of longitudinal subcortical volumetric change is stable throughout the lifespan
title_sort genetic organization of longitudinal subcortical volumetric change is stable throughout the lifespan
topic Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8260220/
https://www.ncbi.nlm.nih.gov/pubmed/34180395
http://dx.doi.org/10.7554/eLife.66466
work_keys_str_mv AT fjellandersmartin thegeneticorganizationoflongitudinalsubcorticalvolumetricchangeisstablethroughoutthelifespan
AT grydelandhakon thegeneticorganizationoflongitudinalsubcorticalvolumetricchangeisstablethroughoutthelifespan
AT wangyunpeng thegeneticorganizationoflongitudinalsubcorticalvolumetricchangeisstablethroughoutthelifespan
AT amlieningek thegeneticorganizationoflongitudinalsubcorticalvolumetricchangeisstablethroughoutthelifespan
AT bartresfazdavid thegeneticorganizationoflongitudinalsubcorticalvolumetricchangeisstablethroughoutthelifespan
AT brandmaierandreasm thegeneticorganizationoflongitudinalsubcorticalvolumetricchangeisstablethroughoutthelifespan
AT duzelsandra thegeneticorganizationoflongitudinalsubcorticalvolumetricchangeisstablethroughoutthelifespan
AT elmanjeremy thegeneticorganizationoflongitudinalsubcorticalvolumetricchangeisstablethroughoutthelifespan
AT franzcarole thegeneticorganizationoflongitudinalsubcorticalvolumetricchangeisstablethroughoutthelifespan
AT habergastak thegeneticorganizationoflongitudinalsubcorticalvolumetricchangeisstablethroughoutthelifespan
AT kietzmanntimc thegeneticorganizationoflongitudinalsubcorticalvolumetricchangeisstablethroughoutthelifespan
AT kievitrogierandrew thegeneticorganizationoflongitudinalsubcorticalvolumetricchangeisstablethroughoutthelifespan
AT kremenwilliams thegeneticorganizationoflongitudinalsubcorticalvolumetricchangeisstablethroughoutthelifespan
AT krogsrudstinek thegeneticorganizationoflongitudinalsubcorticalvolumetricchangeisstablethroughoutthelifespan
AT kuhnsimone thegeneticorganizationoflongitudinalsubcorticalvolumetricchangeisstablethroughoutthelifespan
AT lindenbergerulman thegeneticorganizationoflongitudinalsubcorticalvolumetricchangeisstablethroughoutthelifespan
AT maciadidac thegeneticorganizationoflongitudinalsubcorticalvolumetricchangeisstablethroughoutthelifespan
AT mowinckelathanasiamonika thegeneticorganizationoflongitudinalsubcorticalvolumetricchangeisstablethroughoutthelifespan
AT nyberglars thegeneticorganizationoflongitudinalsubcorticalvolumetricchangeisstablethroughoutthelifespan
AT panizzonmatthews thegeneticorganizationoflongitudinalsubcorticalvolumetricchangeisstablethroughoutthelifespan
AT solepadullescristina thegeneticorganizationoflongitudinalsubcorticalvolumetricchangeisstablethroughoutthelifespan
AT sørensenøystein thegeneticorganizationoflongitudinalsubcorticalvolumetricchangeisstablethroughoutthelifespan
AT westerhausenrene thegeneticorganizationoflongitudinalsubcorticalvolumetricchangeisstablethroughoutthelifespan
AT walhovdkristinebeate thegeneticorganizationoflongitudinalsubcorticalvolumetricchangeisstablethroughoutthelifespan
AT fjellandersmartin geneticorganizationoflongitudinalsubcorticalvolumetricchangeisstablethroughoutthelifespan
AT grydelandhakon geneticorganizationoflongitudinalsubcorticalvolumetricchangeisstablethroughoutthelifespan
AT wangyunpeng geneticorganizationoflongitudinalsubcorticalvolumetricchangeisstablethroughoutthelifespan
AT amlieningek geneticorganizationoflongitudinalsubcorticalvolumetricchangeisstablethroughoutthelifespan
AT bartresfazdavid geneticorganizationoflongitudinalsubcorticalvolumetricchangeisstablethroughoutthelifespan
AT brandmaierandreasm geneticorganizationoflongitudinalsubcorticalvolumetricchangeisstablethroughoutthelifespan
AT duzelsandra geneticorganizationoflongitudinalsubcorticalvolumetricchangeisstablethroughoutthelifespan
AT elmanjeremy geneticorganizationoflongitudinalsubcorticalvolumetricchangeisstablethroughoutthelifespan
AT franzcarole geneticorganizationoflongitudinalsubcorticalvolumetricchangeisstablethroughoutthelifespan
AT habergastak geneticorganizationoflongitudinalsubcorticalvolumetricchangeisstablethroughoutthelifespan
AT kietzmanntimc geneticorganizationoflongitudinalsubcorticalvolumetricchangeisstablethroughoutthelifespan
AT kievitrogierandrew geneticorganizationoflongitudinalsubcorticalvolumetricchangeisstablethroughoutthelifespan
AT kremenwilliams geneticorganizationoflongitudinalsubcorticalvolumetricchangeisstablethroughoutthelifespan
AT krogsrudstinek geneticorganizationoflongitudinalsubcorticalvolumetricchangeisstablethroughoutthelifespan
AT kuhnsimone geneticorganizationoflongitudinalsubcorticalvolumetricchangeisstablethroughoutthelifespan
AT lindenbergerulman geneticorganizationoflongitudinalsubcorticalvolumetricchangeisstablethroughoutthelifespan
AT maciadidac geneticorganizationoflongitudinalsubcorticalvolumetricchangeisstablethroughoutthelifespan
AT mowinckelathanasiamonika geneticorganizationoflongitudinalsubcorticalvolumetricchangeisstablethroughoutthelifespan
AT nyberglars geneticorganizationoflongitudinalsubcorticalvolumetricchangeisstablethroughoutthelifespan
AT panizzonmatthews geneticorganizationoflongitudinalsubcorticalvolumetricchangeisstablethroughoutthelifespan
AT solepadullescristina geneticorganizationoflongitudinalsubcorticalvolumetricchangeisstablethroughoutthelifespan
AT sørensenøystein geneticorganizationoflongitudinalsubcorticalvolumetricchangeisstablethroughoutthelifespan
AT westerhausenrene geneticorganizationoflongitudinalsubcorticalvolumetricchangeisstablethroughoutthelifespan
AT walhovdkristinebeate geneticorganizationoflongitudinalsubcorticalvolumetricchangeisstablethroughoutthelifespan