Chromatin Accessibility Profiling of the Canine Brain Reveals Regulatory Programs Associated With Dog‐Wolf Divergence and Human Psychiatric Risk

The domestic dog has emerged as a valuable model for investigating the biology of social behavior and neuropsychiatric disease, yet a comprehensive map of gene regulatory elements across the canine brain is still lacking. Here, we generated an ATAC-seq atlas spanning seven major brain regions and the pituitary gland from four adult beagle dogs. We identified 251,492 putative cis-regulatory elements (CREs) and found that chromatin accessibility profiles resolve anatomically distinct regions into discrete regulatory modules, including striatal, cortical-associated, hypothalamic/habenular, and pituitary groups. Region-specific accessible elements were enriched predominantly in distal non-coding regions and were associated with distinct transcription factor (TF) programs and biological functions. Integration with dog-wolf genetic differentiation signals identified tissue-specific CREs overlapping highly differentiated genomic regions, including loci linked to neuronal and neuroendocrine pathways. Cross-species integration of human Genome-Wide Association Study data further indicated that canine cortical-associated chromatin features and striatal-enriched chromatin signatures, along with genes linked to such CREs, exhibit enrichment for schizophrenia (SCZ) and bipolar disorder (BD) risk signals. Together, these findings delineate the regional cis-regulatory landscape of the canine brain and support the dog as a translational model for studying the regulatory basis of neuropsychiatric disease.

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Publication Details

Journal
Integrative Zoology
Published
2026-09-28
DOI
https://doi.org/10.1111/1749-4877.70189
Primary Topic
Human-Animal Interaction Studies
Type
article
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article

Chromatin Accessibility Profiling of the Canine Brain Reveals Regulatory Programs Associated With Dog‐Wolf Divergence and Human Psychiatric Risk

Ya‐ping Zhang, Yibo Tong, Rongjie Duan, Yuanfang Xu et al.
Integrative Zoology
Human-Animal Interaction Studies
article

Chromatin Accessibility Profiling of the Canine Brain Reveals Regulatory Programs Associated With Dog‐Wolf Divergence and Human Psychiatric Risk

Ya‐ping Zhang, Yibo Tong, Rongjie Duan, Yuanfang Xu, Mengyang Ni, Jinsheng Xu, Yuedong Zhang, Bowen Zhou, Ye Liu, Yanhu Liu, Zijie Scott Zhang, Rui Cheng, Xuan Li, Dan Xue, Junze Wu, Biao Deng
article en

Abstract

The domestic dog has emerged as a valuable model for investigating the biology of social behavior and neuropsychiatric disease, yet a comprehensive map of gene regulatory elements across the canine brain is still lacking. Here, we generated an ATAC-seq atlas spanning seven major brain regions and the pituitary gland from four adult beagle dogs. We identified 251,492 putative cis-regulatory elements (CREs) and found that chromatin accessibility profiles resolve anatomically distinct regions into discrete regulatory modules, including striatal, cortical-associated, hypothalamic/habenular, and pituitary groups. Region-specific accessible elements were enriched predominantly in distal non-coding regions and were associated with distinct transcription factor (TF) programs and biological functions. Integration with dog-wolf genetic differentiation signals identified tissue-specific CREs overlapping highly differentiated genomic regions, including loci linked to neuronal and neuroendocrine pathways. Cross-species integration of human Genome-Wide Association Study data further indicated that canine cortical-associated chromatin features and striatal-enriched chromatin signatures, along with genes linked to such CREs, exhibit enrichment for schizophrenia (SCZ) and bipolar disorder (BD) risk signals. Together, these findings delineate the regional cis-regulatory landscape of the canine brain and support the dog as a translational model for studying the regulatory basis of neuropsychiatric disease.

Integrative Zoology
Kunming Institute of Zoology (CN), Yunnan University (CN), Chinese Academy of Sciences (CN), Southwest Forestry University (CN), Yunnan Machinery Research and Design Institute (CN), University of Chinese Academy of Sciences (CN)
Openalex Percentile: Top 12%
Human-Animal Interaction Studies
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