Plant Cell and Molecular Biology, Institute of Biology, Humboldt-Universität zu Berlin, Berlin, Germany.
Systems Biology of Gene Regulation, Humboldt-Universität zu Berlin, Institute of Biology, Berlin, Germany.
J Exp Bot. 2021 May 28;72(12):4202-4217. doi: 10.1093/jxb/erab110.
Multicellular organisms display a fascinating complexity of cellular identities and patterns of diversification. The concept of 'cell type' aims to describe and categorize this complexity. In this review, we discuss the traditional concept of cell types and highlight the impact of single-cell technologies and spatial omics on the understanding of cellular differentiation in plants. We summarize and compare position-based and lineage-based mechanisms of cell identity specification using flower development as a model system. More than understanding ontogenetic origins of differentiated cells, an important question in plant science is to understand their position- and developmental stage-specific heterogeneity. Combinatorial action and crosstalk of external and internal signals is the key to cellular heterogeneity, often converging on transcription factors that orchestrate gene expression programs.
多细胞生物表现出令人着迷的细胞身份和多样化模式的复杂性。“细胞类型”的概念旨在描述和分类这种复杂性。在这篇综述中,我们讨论了传统的细胞类型概念,并强调了单细胞技术和空间组学对理解植物细胞分化的影响。我们总结并比较了使用花发育作为模型系统的基于位置和基于谱系的细胞身份指定机制。在植物科学中,一个重要的问题不仅仅是理解分化细胞的个体发生起源,还包括理解它们在位置和发育阶段上的特异性异质性。外部和内部信号的组合作用和串扰是细胞异质性的关键,通常集中在协调基因表达程序的转录因子上。