Large-scale analysis of gene expression and connectivity in the rodent brain: insights through data integration
Recent research in C. elegans and the rodent has identified correlations between gene expression and connectivity. Here we extend this type of approach to examine complex patterns of gene expression in the rodent brain in the context of regional brain connectivity and differences in cellular populat...
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doaj-3b4416014b1d4955a1116f25e11657fd2020-11-24T22:51:25ZengFrontiers Media S.A.Frontiers in Neuroinformatics1662-51962011-07-01510.3389/fninf.2011.0001210834Large-scale analysis of gene expression and connectivity in the rodent brain: insights through data integrationLeon eFrench0Leon eFrench1Powell Patrick Cheng Tan2Paul ePavlidis3Paul ePavlidis4University of British ColumbiaUniversity of British ColumbiaUniversity of British ColumbiaUniversity of British ColumbiaUniversity of British ColumbiaRecent research in C. elegans and the rodent has identified correlations between gene expression and connectivity. Here we extend this type of approach to examine complex patterns of gene expression in the rodent brain in the context of regional brain connectivity and differences in cellular populations. Using multiple large-scale data sets obtained from public sources, we identified two novel patterns of mouse brain gene expression showing a strong degree of anti-correlation, and relate this to multiple data modalities including macroscale connectivity. We found that these signatures are associated with differences in expression of neuronal and oligodendrocyte markers, suggesting they reflect regional differences in cellular populations. We also find that the expression level of these genes is correlated with connectivity degree, with regions expressing the neuron-enriched pattern having more incoming and outgoing connections with other regions. Our results exemplify what is possible when increasingly detailed large-scale cell- and gene-level data sets are integrated with connectivity data.http://journal.frontiersin.org/Journal/10.3389/fninf.2011.00012/fullGenomeTranscriptomeNeuronoligodendrocyteconnectome |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Leon eFrench Leon eFrench Powell Patrick Cheng Tan Paul ePavlidis Paul ePavlidis |
spellingShingle |
Leon eFrench Leon eFrench Powell Patrick Cheng Tan Paul ePavlidis Paul ePavlidis Large-scale analysis of gene expression and connectivity in the rodent brain: insights through data integration Frontiers in Neuroinformatics Genome Transcriptome Neuron oligodendrocyte connectome |
author_facet |
Leon eFrench Leon eFrench Powell Patrick Cheng Tan Paul ePavlidis Paul ePavlidis |
author_sort |
Leon eFrench |
title |
Large-scale analysis of gene expression and connectivity in the rodent brain: insights through data integration |
title_short |
Large-scale analysis of gene expression and connectivity in the rodent brain: insights through data integration |
title_full |
Large-scale analysis of gene expression and connectivity in the rodent brain: insights through data integration |
title_fullStr |
Large-scale analysis of gene expression and connectivity in the rodent brain: insights through data integration |
title_full_unstemmed |
Large-scale analysis of gene expression and connectivity in the rodent brain: insights through data integration |
title_sort |
large-scale analysis of gene expression and connectivity in the rodent brain: insights through data integration |
publisher |
Frontiers Media S.A. |
series |
Frontiers in Neuroinformatics |
issn |
1662-5196 |
publishDate |
2011-07-01 |
description |
Recent research in C. elegans and the rodent has identified correlations between gene expression and connectivity. Here we extend this type of approach to examine complex patterns of gene expression in the rodent brain in the context of regional brain connectivity and differences in cellular populations. Using multiple large-scale data sets obtained from public sources, we identified two novel patterns of mouse brain gene expression showing a strong degree of anti-correlation, and relate this to multiple data modalities including macroscale connectivity. We found that these signatures are associated with differences in expression of neuronal and oligodendrocyte markers, suggesting they reflect regional differences in cellular populations. We also find that the expression level of these genes is correlated with connectivity degree, with regions expressing the neuron-enriched pattern having more incoming and outgoing connections with other regions. Our results exemplify what is possible when increasingly detailed large-scale cell- and gene-level data sets are integrated with connectivity data. |
topic |
Genome Transcriptome Neuron oligodendrocyte connectome |
url |
http://journal.frontiersin.org/Journal/10.3389/fninf.2011.00012/full |
work_keys_str_mv |
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