Natural variations of adult neurogenesis and anxiety predict hierarchical status of inbred mice
Grieco, F.; Balla, A.; Larrieu, T.; Toni, N.
Show abstract
Hierarchy provides a survival advantage to social animals in challenging circumstances. In mice, social dominance is associated with trait anxiety and reduced stress resilience which are regulated by adult hippocampal neurogenesis. Here, we tested whether adult hippocampal neurogenesis may regulate social dominance behavior. We observed that future dominant individuals exhibited higher trait anxiety and lower levels of hippocampal neurogenesis prior to social hierarchy formation, suggesting that baseline neurogenesis might predict individual social status among a group. This phenotype persisted after social hierarchy was stable. Experimentally reducing neurogenesis prior to the stabilization of social hierarchy in group-housed males increased the probability of mice to become dominant and increased anxiety. Finally, when innate dominance was assessed in socially isolated and anxiety-matched animals, mice with impaired neurogenesis displayed a dominant status toward strangers. Together, these results indicate that adult neurogenesis predicts and regulates hierarchical and situational dominance behavior along with anxiety-related behavior. These results provide a framework to study the mechanisms underlying social hierarchy and the dysregulation of dominance behavior in psychiatric diseases related to anxiety.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Serotonin sensing by microglia conditions the proper development of neuronal circuits and of social and adaptive skills 96%
- Sex-specific GABAergic microcircuits that switch vulnerability into resilience to stress and reverse the effects of chronic stress exposure 95%
- Transcriptome signatures of the medial prefrontal cortex underlying GABAergic control of resilience to chronic stress exposure 95%
Similar papers in this journal
- Distinct ventral tegmental area neuronal ensembles are indispensable for reward-driven approach and stress-driven avoidance behaviors 95%
- Early life stress alters transcriptomic patterning across reward circuitry in male and female mice 95%
- SWI/SNF chromatin remodeler complex within the reward pathway is required for behavioral adaptations to stress 95%
Similar papers in this journal
- Effect of relative social rank within a social hierarchy on neural activation in response to familiar or unfamiliar social signals 95%
- Stress and behavioral correlates in the head-fixed method 94%
- From stress to depression: Development of extracellular matrix-dependent cognitive impairment following social stress 93%
Similar papers in this journal
- Oxytocin neurons mediates the effect of social isolation via the VTA circuits 95%
- Firing patterns of ventral hippocampal neurons predict the exploration of anxiogenic locations 94%
- NPAS4 in the medial prefrontal cortex mediates chronic social defeat stress- induced anhedonia and dendritic spine loss 94%
Similar papers in this journal
- Constitutive depletion of brain serotonin differentially affects rats' social and cognitive abilities 94%
- Humanized substitutions of Vmat1 in mice alter amygdala-dependent behaviors associated with the evolution of anxiety 94%
- Anterior hypothalamic nucleus drives distinct defensive responses through cell-type-specific activity 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.