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PXY-CLE41 受体配体对定义了一个多功能途径,控制着血管细胞分裂的速度和方向。

The PXY-CLE41 receptor ligand pair defines a multifunctional pathway that controls the rate and orientation of vascular cell division.

机构信息

Faculty of Life Sciences, University of Manchester, Manchester M13 9PT, UK.

出版信息

Development. 2010 Mar;137(5):767-74. doi: 10.1242/dev.044941.

Abstract

Controlling the orientation of cell division is fundamental to the development of complex body plans. This is particularly apparent in plants, where development is determined by differential growth that results solely from changes in cell expansion and orientation of the cell division plane. Despite the fundamental importance of cell division orientation to plant development, the mechanisms regulating this process remain almost completely unknown. During vascular development, the meristematic cambial cells divide down their long axis in a highly orientated manner to generate clear files of cells. The receptor kinase PXY has previously be shown to be essential for this orientation. Here, we demonstrate that the division plane is determined by the interactions of PXY and its peptide ligand, CLE41. PXY is expressed within dividing meristematic cells of the procambium, whereas CLE41 localises to the adjacent phloem cells. Altering the pattern of CLE41 expression leads to a loss of cell division orientation and a dramatic loss of ordered vascular tissue development. By contrast, increasing phloem-specific expression of CLE41 results in more cell divisions, but the orientation of cell division is retained, leading to both increased and well-ordered vascular development. We demonstrate that PXY signalling is down-regulated by CLE41. This feedback mechanism is crucial in integrating the different roles of PXY signalling in controlling xylem differentiation, regulating the rate of vascular cell division and determining the orientation of cell division. Parallels with animal systems indicate that localised signalling from adjacent cells is a general mechanism for defining the plane of cell division.

摘要

控制细胞分裂的方向对于复杂身体结构的发育至关重要。这在植物中尤为明显,植物的发育是由差异生长决定的,而差异生长仅源自于细胞扩展和细胞分裂平面方向的变化。尽管细胞分裂方向对植物发育具有重要意义,但调节这一过程的机制仍几乎完全未知。在血管发育过程中,分生组织的形成层细胞沿着长轴以高度定向的方式分裂,形成清晰的细胞层。先前已经表明,受体激酶 PXY 对于这种定向是必需的。在这里,我们证明分裂平面是由 PXY 及其肽配体 CLE41 的相互作用决定的。PXY 在原形成层的分裂分生细胞内表达,而 CLE41 定位于相邻的韧皮部细胞。改变 CLE41 表达的模式会导致细胞分裂方向的丧失和有序的血管组织发育的严重丧失。相比之下,增加韧皮部特异性的 CLE41 表达会导致更多的细胞分裂,但细胞分裂的方向得以保留,从而导致血管发育的增加和有序。我们证明 PXY 信号被 CLE41 下调。这种反馈机制对于整合 PXY 信号在控制木质部分化、调节血管细胞分裂速度和确定细胞分裂方向方面的不同作用至关重要。与动物系统的平行性表明,来自相邻细胞的局部信号是确定细胞分裂平面的一般机制。

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