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SHOOT ORGANIZATION Genes Regulate Shoot Apical Meristem Organization and the Pattern of Leaf Primordium Initiation in Rice

机译:芽组织基因调控水稻芽尖分生组织和叶片原基萌发模式

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摘要

The mechanism regulating the pattern of leaf initiation was analyzed by using shoot organization (sho) mutants derived from three loci (SHO1, SHO2, and SHO3). In the early vegetative phase, sho mutants show an increased rate of leaf production with random phyllotaxy. The resulting leaves are malformed, threadlike, or short and narrow. Their shoot apical meristems are relatively low and wide, that is, flat shaped, although their shape and size are highly variable among plants of the same genotype. Statistical analysis reveals that the shape of the shoot meristem rather than its size is closely correlated with the variations of plastochron and phyllotaxy. Rapid and random leaf production in sho mutants is correlated with the frequent and disorganized cell divisions in the shoot meristem and with a reduction of expression domain of a rice homeobox gene, OSH1. These changes in the organization and behavior of the shoot apical meristems suggest that sho mutants have fewer indeterminate cells and more determinate cells than wild type, with many cells acting as leaf founder cells. Thus, the SHO genes have an important role in maintaining the proper organization of the shoot apical meristem, which is essential for the normal initiation pattern of leaf primordia.
机译:通过使用衍生自三个基因座(SHO1,SHO2和SHO3)的芽组织(sho)突变体,分析了调控叶片起始模式的机制。在早期的营养阶段,sho突变体显示出具有随机叶序的叶片生产速率增加。产生的叶子畸形,线状或短而狭窄。尽管它们的形状和大小在同一基因型的植物中变化很大,但它们的芽顶分生组织相对较低和较宽,即呈扁平状。统计分析表明,茎分生组织的形状而不是其大小与质膜同步和叶序变化密切相关。 sho突变体中叶片的快速随机产生与分生组织中频繁且混乱的细胞分裂以及水稻同源异型盒基因OSH1的表达域减少有关。芽顶分生组织的组织和行为的这些变化表明,sho突变体比野生型具有更少的不确定细胞和更多的确定细胞,其中许多细胞充当叶奠基细胞。因此,SHO基因在维持芽顶分生组织的正确组织中具有重要作用,这对于正常的叶片原基启动模式至关重要。

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