Cell fate acquisition at a de novo developmental boundary in the maize leaf

生物 细胞命运测定 命运图 形态发生 多细胞生物 器官发生 细胞生物学 形态发生剂 发育生物学 植物 叶序 车身平面图 分生组织 转录组 进化生物学 解剖 细胞分裂 干细胞 边界(拓扑) 细胞分化 表皮(动物学) 生长素 电池类型 叶片
作者
Lukas J Evans,Ruqiang Zhang,Maria Camila Medina,Elizabeth A. Fitzgerald,Anne W. Sylvester,George Chuck,Samuel Leiboff,Michael J. Scanlon
出处
期刊:Proceedings of the National Academy of Sciences of the United States of America [National Academy of Sciences]
卷期号:123 (9): e2533591123-e2533591123
标识
DOI:10.1073/pnas.2533591123
摘要

The formation of boundaries separating developmental fields with distinct gene expression and cell fate trajectories is a universal feature of noncolonial multicellular organisms. Developmental boundaries arise reiteratively during ontogeny and are characterized by stiff, slowly dividing cells that demarcate adjacent and divergent morphogenetic domains; the genetic mechanisms of cell fate acquisition within these boundaries are incompletely understood. Grass leaves are initiated at a developmental boundary in the periphery of the shoot apical meristem, an organogenic pool of plant stem cells that generates all lateral organs in the plant shoot. During later primordial growth, maize leaves form a de novo developmental boundary that ultimately separates the distal, photosynthetic leaf blade from the proximal, clasping leaf sheath. Morphogenesis at this blade/sheath boundary in maize leaves generates an epidermal outgrowth called the ligule and two tissue-wedges forming the auricle, a hinge-like structure with major effects on leaf angle, light capture, and yield. Here, we use cell lineage mapping, morphometric measures of cell division and expansion, cell-specific multidimensional transcriptomic analyses, and topological landscape modeling to investigate the mechanisms of cell fate acquisition at the ligule/auricle morphogenetic boundary in the maize leaf. The data suggest a model where auricle initial cells are recruited from blade founder cells at this boundary, via repression of blade identity during early stages in auricle ontogeny. Thereafter, auricle primordial cells assume a developmental genetic trajectory that is distinct from the blade, sheath, and ligule, thereby acquiring a unique auricle cell fate in the maize leaf.
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