In vivo multimodal lineage tracing of mammalian development by DeepTrack barcoding
Chenyu Guo, Junyao Jiang, Xiaomin Wang, Xinghuai Huang, Shenghu Zhang, Chenyang Shao, Mingyuan Zhang, Xiwen Hu 等 21 位
Fudan University Westlake University Second Affiliated Hospital of Nanjing Medical University Nanjing Medical University
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摘要与影响
A comprehensive recording of cell fate transitions and underlying molecular changes remains a fundamental goal in developmental biology. Here, we present DeepTrack, a lineage tracing mouse model that integrates in situ cellular barcoding with high-throughput, single-cell multi-omics to simultaneously profile clonal fates, transcriptomic states, and chromatin accessibility. Using DeepTrack, we profiled clonal behaviors during gastrulation and early organogenesis, uncovered early fate priming within epiblast clones, and revealed clonal architecture within distinct regions of the nervous system. Embryo-wide multi-omic lineage tracing at single-cell resolution revealed transcriptional and epigenetic programs underlying fate commitment in neuromesodermal progenitors (NMPs). Clonal tracing with multi-omic profiles enabled inference of fate-associated gene-regulatory networks and identified the transcription factor Cdx2 as a key regulator of mesodermal specification in NMPs. Genetic perturbation of Cdx2 in chimeric embryos impaired paraxial mesoderm differentiation. Together, DeepTrack provides a versatile framework for decoding multimodal regulation of cell fate across diverse developmental contexts.
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生物医学Single-cell and spatial transcriptomics
Pluripotent Stem Cells Research · Cancer Cells and Metastasis
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