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Single-nucleus and spatial transcriptomics identify brain landscape of gene regulatory networks associated with behavioral maturation in honeybees

  • Xiaohuan Mu
  • , Zijing Zhang
  • , Qun Liu
  • , Jie Ma
  • , Yating Qin
  • , Haoyu Lang
  • , Yingying Zhang
  • , Nannan Zhang
  • , Qunfei Guo
  • , Pei Zhang
  • , Denghui Li
  • , Ruihua Zhang
  • , Qianyue Ji
  • , Aijun Jiang
  • , Yang Wang
  • , Shanshan Pan
  • , Xiawei Liu
  • , Xuemei Liu
  • , Jiahui Sun
  • , Yan Liu
  • Hao Chen, Li Zheng, Liang Meng, Haorong Lu, He Zhang, Yifan Zhai, Qiye Li, Junnian Liu, Huanming Yang, Jian Wang, Xiaosong Hu, Xun Xu, Shanshan Liu, Hao Zheng
  • China Agricultural University
  • Hebei Normal University
  • BGI
  • BGI Research-Shenzhen
  • University of Chinese Academy of Sciences
  • Shandong Academy of Agricultural Sciences

Research output: Contribution to journalArticlepeer-review

10 Scopus citations

Abstract

Animal behavior is linked to the gene regulatory network (GRN) coordinating gene expression in the brain. Eusocial honeybees, with their natural behavioral plasticity, provide an excellent model for exploring the connection between brain activity and behavior. Using single-nucleus RNA sequencing and spatial transcriptomics, we analyze the expression patterns of brain cells associated with the behavioral maturation from nursing to foraging. Integrating spatial and cellular data uncovered cell-type and spatial heterogeneity in GRN organization. Interestingly, the stripe regulon is explicitly activated in foragers’ small Keyon cells, which are implicated in spatial learning and navigation. When worker age is controlled in artificial colonies, stripe and its key targets remained highly expressed in the KC regions of bees performing foraging tasks. These findings suggest that specific GRNs coordinate individual brain cell activity during behavioral transitions, shedding light on GRN-driven brain heterogeneity and its role in the division of labor of social life.

Original languageEnglish
Article number3343
JournalNature Communications
Volume16
Issue number1
DOIs
StatePublished - Dec 2025
Externally publishedYes

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