Transcriptomic changes across subregions of the primate cerebellum support the evolution of uniquely human behaviors
Rickelton, K.; Ely, J. J.; Hopkins, W. D.; Hof, P. R.; Sherwood, C. C.; Bauernfeind, A. L.; Babbitt, C. C.
Show abstract
BackgroundCompared to other primates, humans display unique behaviors including language and complex tool use. These abilities are made possible in part by the cerebellum. This region of the hindbrain, comprising the flocculus, vermis, and lateral hemispheres, has expanded throughout primate evolution, particularly in great apes. Given the cerebellums architecture--differing in connectivity, neuron content, and functions across subregions--examining subregional differences is crucial to understanding its evolutionary trajectory. ResultsWe performed bulk RNA-seq across samples from six primate species, representing 40-50 million years of evolutionary history, across four subregions of the cerebellum (vermis, flocculus, right lateral hemisphere, left lateral hemisphere). We analyzed changes in gene expression with respect to evolutionary relationships via the Ornstein-Uhlenbeck model and found that, on average, 8.5% of orthologous genes are differentially expressed in humans relative to other non-human primates. Subregion-specific gene expression patterns reveal that the primate lateral hemispheres exhibit significant differences in synaptic activity and glucose metabolism, which in turn are highly implicated in neural processing. ConclusionsThis study provides a novel perspective on gene expression divergences across cerebellar subregions in multiple primate species, offering valuable insights into the evolution of this brain structure. Our findings reveal distinct subregional transcriptomic patterns, with the lateral hemispheres emerging as key sites of divergence across the six primate species. The enrichment of genes related to synaptic activity, glucose metabolism, locomotion, and vocalization highlights the cerebellums crucial role in supporting the neural complexity underlying uniquely human and other species-specific primate behaviors.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- A De Novo Genome Assembly, Gene Annotation, And Expression Atlas For The Monarch Butterfly Danaus plexippus 93%
- Genomic insights into the host specific adaptation of the Pneumocystis genus and emergence of the human pathogen Pneumocystis jirovecii 92%
- Comprehensive in situ mapping of human cortical transcriptomic cell types 92%
Similar papers in this journal
- Evolutionary analysis reveals the role of a non-catalytic domain of peptidyl arginine deiminase 2 in transcriptional regulation 93%
- Distinct transcriptional programs define a heterogeneous neuronal ensemble for social interaction 93%
- Identity and Nature of Neural Stem Cells in the Adult Human Subventricular Zone 93%
Similar papers in this journal
- Functional signatures of evolutionarily young CTCF binding sites 93%
- Genome binding properties of Zic transcription factors underlie their changing functions during neuronal maturation 93%
- Single cell resolution landscape of equine peripheral blood mononuclear cells reveals diverse immune cell subtypes including T-bet+ B cells 92%
"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.