生物
合子
谱系(遗传)
进化生物学
亚科
系统发育学
器官发生
遗传学
细胞谱系
克莱德
DNA
细胞分裂
发育生物学
个体发育
索马
优势(遗传学)
电池类型
基因
细胞分化
细胞生物学
细胞
DNA测序
等级制度
作者
Qi Yu,Haedong Kim,Sophie Seidel,James F. Clark,Beth Martin,Kyle O'Connor,Riza M. Daza,Molly J. Gasperini,Jenny F. Nathans,Maggie Lam,Elena Gamo,Shruthi VijayKumar,Lauren M. Kuo,Jean‐Benoît Lalanne,Kamen P. Simeonov,Marion Pepper,Cole Trapnell,Jesse M. Gray,Junhong Choi,Chengxiang Qiu
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2026-10-08
被引量:1
标识
DOI:10.1126/science.ael0508
摘要
Mammalian biology unfolds over time, within tissues and organs opaque to our eyes and instruments. We applied DNA Typewriter, a sequential molecular recorder, to record the cell lineage of a mouse over nearly two weeks of development. From one embryo, we reconstruct a time-calibrated, parsimony-supported, zygote-rooted phylogeny of 1.28 million transcriptionally profiled cells. A burst of editing unequivocally marks the daughters of the first cleavage, which serve as inline replicates. We quantify clonal dominance arising during gastrulation. Tree siblings share cell type far above chance; heterotypic siblings mark terminal differentiations. Temporal sweeps of clade co-occurrence recover a dated hierarchy of cell-type couplings; imputed labels for internal nodes recapitulate known state paths. A lineage-anchored ontogeny of mammalian development, long out of reach, is coming into view.
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