A transcriptomic atlas of mouse neocortical layers.

In the mammalian cortex, neurons and glia form a patterned structure across six layers whose complex cytoarchitectonic arrangement is likely to contribute to cognition. We sequenced transcriptomes from layers 1-6b of different areas (primary and secondary) of the adult (postnatal day 56) mouse somat...

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Main Authors: Belgard, T, Marques, A, Oliver, P, Abaan, H, Sirey, T, Hoerder-Suabedissen, A, García-Moreno, F, Molnár, Z, Margulies, E, Ponting, C
Format: Journal article
Language:English
Published: 2011
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author Belgard, T
Marques, A
Oliver, P
Abaan, H
Sirey, T
Hoerder-Suabedissen, A
García-Moreno, F
Molnár, Z
Margulies, E
Ponting, C
author_facet Belgard, T
Marques, A
Oliver, P
Abaan, H
Sirey, T
Hoerder-Suabedissen, A
García-Moreno, F
Molnár, Z
Margulies, E
Ponting, C
author_sort Belgard, T
collection OXFORD
description In the mammalian cortex, neurons and glia form a patterned structure across six layers whose complex cytoarchitectonic arrangement is likely to contribute to cognition. We sequenced transcriptomes from layers 1-6b of different areas (primary and secondary) of the adult (postnatal day 56) mouse somatosensory cortex to understand the transcriptional levels and functional repertoires of coding and noncoding loci for cells constituting these layers. A total of 5,835 protein-coding genes and 66 noncoding RNA loci are differentially expressed ("patterned") across the layers, on the basis of a machine-learning model (naive Bayes) approach. Layers 2-6b are each associated with specific functional and disease annotations that provide insights into their biological roles. This new resource (http://genserv.anat.ox.ac.uk/layers) greatly extends currently available resources, such as the Allen Mouse Brain Atlas and microarray data sets, by providing quantitative expression levels, by being genome-wide, by including novel loci, and by identifying candidate alternatively spliced transcripts that are differentially expressed across layers.
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spelling oxford-uuid:1bb9cff3-3bf0-4569-a877-2cd38357e49a2022-03-26T11:02:00ZA transcriptomic atlas of mouse neocortical layers.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:1bb9cff3-3bf0-4569-a877-2cd38357e49aEnglishSymplectic Elements at Oxford2011Belgard, TMarques, AOliver, PAbaan, HSirey, THoerder-Suabedissen, AGarcía-Moreno, FMolnár, ZMargulies, EPonting, CIn the mammalian cortex, neurons and glia form a patterned structure across six layers whose complex cytoarchitectonic arrangement is likely to contribute to cognition. We sequenced transcriptomes from layers 1-6b of different areas (primary and secondary) of the adult (postnatal day 56) mouse somatosensory cortex to understand the transcriptional levels and functional repertoires of coding and noncoding loci for cells constituting these layers. A total of 5,835 protein-coding genes and 66 noncoding RNA loci are differentially expressed ("patterned") across the layers, on the basis of a machine-learning model (naive Bayes) approach. Layers 2-6b are each associated with specific functional and disease annotations that provide insights into their biological roles. This new resource (http://genserv.anat.ox.ac.uk/layers) greatly extends currently available resources, such as the Allen Mouse Brain Atlas and microarray data sets, by providing quantitative expression levels, by being genome-wide, by including novel loci, and by identifying candidate alternatively spliced transcripts that are differentially expressed across layers.
spellingShingle Belgard, T
Marques, A
Oliver, P
Abaan, H
Sirey, T
Hoerder-Suabedissen, A
García-Moreno, F
Molnár, Z
Margulies, E
Ponting, C
A transcriptomic atlas of mouse neocortical layers.
title A transcriptomic atlas of mouse neocortical layers.
title_full A transcriptomic atlas of mouse neocortical layers.
title_fullStr A transcriptomic atlas of mouse neocortical layers.
title_full_unstemmed A transcriptomic atlas of mouse neocortical layers.
title_short A transcriptomic atlas of mouse neocortical layers.
title_sort transcriptomic atlas of mouse neocortical layers
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