Parizot Boris, Laplaze Laurent, Ricaud Lilian, Boucheron-Dubuisson Elodie, Bayle Vincent, Bonke Martin, De Smet Ive, Poethig Scott R, Helariutta Yka, Haseloff Jim, Chriqui Dominique, Beeckman Tom, Nussaume Laurent
Department of Plant Biology and Environmental Microbiology, The Institute of Environmental Biology and Biotechnology, Centre National de la Recherche Scientifique, Université Aix-Marseille, Saint Paul lez Durance, France.
Plant Physiol. 2008 Jan;146(1):140-8. doi: 10.1104/pp.107.107870. Epub 2007 Nov 9.
The outer tissues of dicotyledonous plant roots (i.e. epidermis, cortex, and endodermis) are clearly organized in distinct concentric layers in contrast to the diarch to polyarch vascular tissues of the central stele. Up to now, the outermost layer of the stele, the pericycle, has always been regarded, in accordance with the outer tissue layers, as one uniform concentric layer. However, considering its lateral root-forming competence, the pericycle is composed of two different cell types, with one subset of cells being associated with the xylem, showing strong competence to initiate cell division, whereas another group of cells, associated with the phloem, appears to remain quiescent. Here, we established, using detailed microscopy and specific Arabidopsis thaliana reporter lines, the existence of two distinct pericycle cell types. Analysis of two enhancer trap reporter lines further suggests that the specification between these two subsets takes place early during development, in relation with the determination of the vascular tissues. A genetic screen resulted in the isolation of mutants perturbed in pericycle differentiation. Detailed phenotypical analyses of two of these mutants, combined with observations made in known vascular mutants, revealed an intimate correlation between vascular organization, pericycle fate, and lateral root initiation potency, and illustrated the independence of pericycle differentiation and lateral root initiation from protoxylem differentiation. Taken together, our data show that the pericycle is a heterogeneous cell layer with two groups of cells set up in the root meristem by the same genetic pathway controlling the diarch organization of the vasculature.
双子叶植物根的外层组织(即表皮、皮层和内皮层)与中央中柱的二原型到多原型维管组织相比,明显地组织成不同的同心层。到目前为止,中柱的最外层,即中柱鞘,一直被认为与外层组织层一样,是一个统一的同心层。然而,考虑到其形成侧根的能力,中柱鞘由两种不同的细胞类型组成,其中一组细胞与木质部相关,表现出很强的启动细胞分裂的能力,而另一组与韧皮部相关的细胞似乎保持静止。在这里,我们利用详细的显微镜观察和特定的拟南芥报告株系,确定了两种不同的中柱鞘细胞类型的存在。对两个增强子陷阱报告株系的分析进一步表明,这两个亚群之间的特化在发育早期就发生了,与维管组织的确定有关。一项遗传筛选导致分离出中柱鞘分化受到干扰的突变体。对其中两个突变体的详细表型分析,结合在已知维管突变体中的观察结果,揭示了维管组织、中柱鞘命运和侧根起始能力之间的密切相关性,并说明了中柱鞘分化和侧根起始与原生木质部分化的独立性。综上所述,我们的数据表明,中柱鞘是一个异质细胞层,在根分生组织中由控制维管系统二原型组织的相同遗传途径建立起两组细胞。