PubMed · 41231672
Multi-omics analyses reveal DjTcf4 critical for proper timing of differentiation in planarian regeneration.
Abstract
The blastema is key to forming complete tissues in regenerating Dugesia japonica (D. japonica). However, the dynamic changes in cellular compositions and transcription landscapes in blastema during regeneration are understudied. Here, through genome reannotation, 3D spatial transcriptome construction, single-cell RNA sequencing (scRNA-seq), and single-cell assay for transposase-accessible chromatin sequencing (scATAC-seq) analyses of changes in gene expression and chromatin structures, we delineate key transcription factors regulating the developmental trajectories of major cell clusters in the regenerating head. Importantly, we find that the T cell factor 4 (DjTcf4)-positive cells highly accumulate at wound areas, and its gene network is critical for the proper timing of development during regeneration in multiple progenitor cells. Depletion of DjTcf4 and its target genes leads to singular eye and/or dull tail phenotypes and delays regeneration. Taken together, we build multi-omics atlases in D. japonica and reveal the noncanonical function of the DjTcf4 network in developmental pattern formation, laying a foundation for studies of regeneration in D. japonica.
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Hao Wang, Mengmeng Lu, Lei Huang, Xiaopeng Zou, Hongfei Liu, Ya Gao, Xiaofeng Song, Mengqian Li, Yang Zhou, Zhengwei Guo, Kai Lei, Shoutao Zhang, Yanming Wang, Yunchao Kan. 2025-11-11. Multi-omics analyses reveal DjTcf4 critical for proper timing of differentiation in planarian regeneration.. https://doi.org/10.1016/j.celrep.2025.116551
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