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Transcriptional regulation of brain gene expression in response to a territorial intrusion


ABSTRACT: We investigated the transcriptomic response to territorial intrusion in four regions of the brain (telencephalon, diencephalon, cerebellum and brain stem) of a teleost fish, the threespined stickleback (Gasterosteus aculeatus). We tested the hypothesis that gene regulatory networks modulate the transcriptional response to territorial intrusion in the different brain regions and thereby aggressive behavior. Indeed, transcription regulatory network analysis identified cis-regulatory transcription factor motifs enriched in upregulated genes in one brain region and downregulated in the others. We further validated our findings by showing that many of the differentially expressed genes in the diencephalon were positively correlated with levels of aggression in individual males. 2 conditions: control fish and fish that experienced intrusion into their territory, Biological replicates 5.Four brain regions. Sample 4BS was excluded from the analysis during data preprocessing because it was an outlier.

ORGANISM(S): Gasterosteus aculeatus

SUBMITTER: Yibayiri Sanogo 

PROVIDER: E-GEOD-32961 | biostudies-arrayexpress |

REPOSITORIES: biostudies-arrayexpress

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Transcriptional regulation of brain gene expression in response to a territorial intrusion.

Sanogo Yibayiri O YO   Band Mark M   Blatti Charles C   Sinha Saurabh S   Bell Alison M AM  

Proceedings. Biological sciences 20121024 1749


Aggressive behaviour associated with territorial defence is widespread and has fitness consequences. However, excess aggression can interfere with other important biological functions such as immunity and energy homeostasis. How the expression of complex behaviours such as aggression is regulated in the brain has long intrigued ethologists, but has only recently become amenable for molecular dissection in non-model organisms. We investigated the transcriptomic response to territorial intrusion i  ...[more]

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