Donnelly P M, Bonetta D, Tsukaya H, Dengler R E, Dengler N G
Department of Botany, University of Toronto, Toronto, Ontario, M5S 1A1, Canada.
Dev Biol. 1999 Nov 15;215(2):407-19. doi: 10.1006/dbio.1999.9443.
Cell cycling plays an important role in plant development, including: (1) organ morphogenesis, (2) cell proliferation within tissues, and (3) cell differentiation. In this study we use a cyclin::beta-glucuronidase reporter construct to characterize spatial and temporal patterns of cell cycling at each of these levels during wild-type development in the model genetic organism Arabidopsis thaliana (Columbia). We show that a key morphogenetic event in leaf development, blade formation, is highly correlated with localized cell cycling at the primordium margin. However, tissue layers are established by a more diffuse distribution of cycling cells that does not directly involve the marginal zone. During leaf expansion, tissue proliferation shows a strong longitudinal gradient, with basiplastic polarity. Tissue layers differ in pattern of proliferative cell divisions: cell cycling of palisade mesophyll precursors is prolonged in comparison to that of pavement cells of the adjacent epidermal layers, and cells exit the cycle at different characteristic sizes. Cell divisions directly related to formation of stomates and of vascular tissue from their respective precursors occur throughout the period of leaf extension, so that differing tissue patterns reflect superposition of cycling related to cell differentiation on more general tissue proliferation. Our results indicate that cell cycling related to leaf morphogenesis, tissue-specific patterns of cell proliferation, and cell differentiation occurs concurrently during leaf development and suggest that unique regulatory pathways may operate at each level.
细胞周期在植物发育中起着重要作用,包括:(1)器官形态发生,(2)组织内的细胞增殖,以及(3)细胞分化。在本研究中,我们使用一个细胞周期蛋白::β-葡萄糖醛酸酶报告构建体来表征模式遗传生物拟南芥(哥伦比亚生态型)野生型发育过程中这些水平上细胞周期的时空模式。我们表明,叶片发育中的一个关键形态发生事件,即叶片形成,与原基边缘的局部细胞周期高度相关。然而,组织层是由细胞周期更分散的分布建立的,这并不直接涉及边缘区域。在叶片扩展过程中,组织增殖呈现出强烈的纵向梯度,具有基向极性。组织层在增殖细胞分裂模式上存在差异:与相邻表皮层的铺板细胞相比,栅栏叶肉前体细胞的细胞周期延长,并且细胞在不同的特征大小下退出细胞周期。与气孔及其各自前体形成维管组织直接相关的细胞分裂在叶片伸展的整个时期都有发生,因此不同的组织模式反映了与细胞分化相关的细胞周期在更普遍的组织增殖上的叠加。我们的结果表明,与叶片形态发生、组织特异性细胞增殖模式和细胞分化相关的细胞周期在叶片发育过程中同时发生,并表明可能在每个水平上都有独特的调控途径在起作用。