生物
形态发生
基因
基因表达
原丝体
核糖核酸
苔藓
细胞生物学
细胞生长
叶尖生长
普氏藻
顶端细胞
计算生物学
细胞
遗传学
植物
突变体
花粉
授粉
花粉管
作者
Zexi Chen,Wenbo Wang,Shizhao Zhou,Lulu Ding,Zhanwu Xu,Xuwu Sun,Heqiang Huo,Li Liu
出处
期刊:Cell Reports
[Elsevier]
日期:2024-07-23
卷期号:43 (8): 114524-114524
标识
DOI:10.1016/j.celrep.2024.114524
摘要
The transition from two-dimensional (2D) to 3D growth likely facilitated plants to colonize land, but its heterogeneity is not well understood. In this study, we utilized single-cell RNA sequencing to analyze the moss Physcomitrium patens, whose morphogenesis involves a transition from 2D to 3D growth. We profiled over 17,000 single cells covering all major vegetative tissues, including 2D filaments (chloronema and caulonema) and 3D structures (bud and gametophore). Pseudotime analyses revealed larger numbers of candidate genes that determine cell fates for 2D tip elongation or 3D bud differentiation. Using weighted gene co-expression network analysis, we identified a module that connects β-type carbonic anhydrases (βCAs) with auxin. We further validated the cellular expression patterns of βCAs and demonstrated their roles in 3D gametophore development. Overall, our study provides insights into cellular heterogeneity in a moss and identifies molecular signatures that underpin the 2D-to-3D growth transition at single-cell resolution.
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