生物
多细胞生物
拟南芥
发育生物学
突变体
计算生物学
表型
基因表达调控
细胞命运测定
转录组
电池类型
基因调控网络
细胞
细胞生物学
基因
遗传学
基因表达
转录因子
作者
Rachel Shahan,Che‐Wei Hsu,Trevor M. Nolan,Benjamin Cole,Isaiah Taylor,Laura Greenstreet,Stephen X. Zhang,Anton Afanassiev,Anna Hendrika Cornelia Vlot,Geoffrey Schiebinger,Philip N. Benfey,Uwe Ohler
标识
DOI:10.1016/j.devcel.2022.01.008
摘要
In all multicellular organisms, transcriptional networks orchestrate organ development. The Arabidopsis root, with its simple structure and indeterminate growth, is an ideal model for investigating the spatiotemporal transcriptional signatures underlying developmental trajectories. To map gene expression dynamics across root cell types and developmental time, we built a comprehensive, organ-scale atlas at single-cell resolution. In addition to estimating developmental progressions in pseudotime, we employed the mathematical concept of optimal transport to infer developmental trajectories and identify their underlying regulators. To demonstrate the utility of the atlas to interpret new datasets, we profiled mutants for two key transcriptional regulators at single-cell resolution, shortroot and scarecrow. We report transcriptomic and in vivo evidence for tissue trans-differentiation underlying a mixed cell identity phenotype in scarecrow. Our results support the atlas as a rich community resource for unraveling the transcriptional programs that specify and maintain cell identity to regulate spatiotemporal organ development.
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