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WIGGUM基因是拟南芥花分生组织大小正常调控所必需的。

The WIGGUM gene is required for proper regulation of floral meristem size in Arabidopsis.

作者信息

Running M P, Fletcher J C, Meyerowitz E M

机构信息

California Institute of Technology, Pasadena, CA 91125, USA.

出版信息

Development. 1998 Jul;125(14):2545-53. doi: 10.1242/dev.125.14.2545.

Abstract

The study of cell division control within developing tissues is central to understanding the processes of pattern formation. The floral meristem of angiosperms gives rise to floral organs in a particular number and pattern. Despite its critical role, little is known about how cell division is controlled in the floral meristem, and few genes involved have been identified. We describe the phenotypic effects of mutations in WIGGUM, a gene required for control of cell proliferation in the floral and apical meristem of Arabidopsis thaliana. wiggum flowers contain more organs, especially sepals and petals, than found in wild-type flowers. This organ number phenotype correlates with specific size changes in the early floral meristem, preceding organ initiation. Genetic studies suggest that WIGGUM acts on a similar process but in a separate pathway than the CLAVATA1 and CLAVATA3 genes in meristem size regulation, and reveal interactions with other genes affecting meristem structure and identity. Analysis of double mutant phenotypes also reveals a role for WIGGUM in apical meristem function. We propose that WIGGUM plays a role in restricting cell division relative to cellular differentiation in specific regions of the apical and floral meristems.

摘要

对发育中组织内细胞分裂控制的研究是理解模式形成过程的核心。被子植物的花分生组织以特定的数量和模式产生花器官。尽管其具有关键作用,但对于花分生组织中细胞分裂如何受到控制知之甚少,且已鉴定出的相关基因也很少。我们描述了WIGGUM基因突变的表型效应,WIGGUM基因是拟南芥花和顶端分生组织中控制细胞增殖所必需的。与野生型花相比,wiggum花含有更多的器官,尤其是萼片和花瓣。这种器官数量表型与花分生组织早期、器官起始之前的特定大小变化相关。遗传学研究表明,WIGGUM作用于与分生组织大小调控中的CLAVATA1和CLAVATA3基因类似但独立的途径,并揭示了其与影响分生组织结构和特征的其他基因的相互作用。对双突变体表型的分析也揭示了WIGGUM在顶端分生组织功能中的作用。我们提出,WIGGUM在顶端和花分生组织的特定区域中,相对于细胞分化而言,在限制细胞分裂方面发挥作用。

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