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Regulation of meristem organization and cell division by TSO1, an Arabidopsis gene with cysteine-rich repeats.

机译:TSO1对分生组织的组织和细胞分裂的调节,TSO1是具有丰富半胱氨酸重复序列的拟南芥基因。

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摘要

In higher plants, meristem organization and cell division regulation are two fundamentally important and intimately related biological processes. Identifying and isolating regulatory genes in these processes is essential for understanding higher plant growth and development. We describe the molecular isolation and analyses of an Arabidopsis gene, TSO1, which regulates both of these processes. We previously showed that tso1 mutants displayed defects in cell division of floral meristem cells including partially formed cell walls, increased DNA content, and multinucleated cells (Liu, Z., Running, M. P. and Meyerowitz, E. M. (1997). Development 124, 665-672). Here, we characterize a second defect of tso1 in influorescence meristem development and show that the enlarged influorescence in tso1 mutants results from repeated division of one inflorescence meristem into two or more influorescence meristems. Using a map-based approach, we isolated the TSO1 gene and found that TSO1 encodes a protein with cysteine-rich repeats bearing similarity to Drosophila Enhancer of zeste and its plant homologs. In situ TSO1 mRNA expression pattern and the nuclear localization of TSO1-GFP are consistent with a regulatory role of TSO1 in floral meristem cell division and in influorescence meristem organization.
机译:在高等植物中,分生组织和细胞分裂调节是两个基本重要且密切相关的生物学过程。在这些过程中鉴定和分离调节基因对于理解更高的植物生长和发育至关重要。我们描述了调节这两个过程的拟南芥基因TSO1的分子分离和分析。我们以前的研究表明,tso1突变体在花分生组织细胞的细胞分裂中显示出缺陷,包括部分形成的细胞壁,增加的DNA含量和多核细胞(Liu,Z.,Running,MP和Meyerowitz,EM(1997)。Development 124,665- 672)。在这里,我们表征了tso1在荧光分生组织发展中的第二个缺陷,并表明tso1突变体中扩大的荧光是由一个花序分生组织重复分成两个或多个荧光分生组织造成的。使用基于图谱的方法,我们分离了TSO1基因,发现TSO1编码的蛋白质具有富含半胱氨酸的重复序列,与zeste果蝇增强子及其植物同源物具有相似性。 TSO1 mRNA的原位表达模式和TSO1-GFP的核定位与TSO1在花分生组织分裂和荧光分生组织中的调节作用一致。

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