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Potential role of the rice OsCCS52A gene in endoreduplication

机译:水稻OsCCS52A基因在核内复制中的潜在作用

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In eukaryotes, the cell cycle consists of four distinct phases: G1, S, G2 and M. In certain condition, the cells skip M-phase and undergo endoreduplication. Endoreduplication, occurring during a modified cell cycle, duplicates the entire genome without being followed by M-phase. A cycle of endoreduplication is common in most of the differentiated cells of plant vegetative tissues and it occurs extensively in cereal endosperm cells. Endoreduplication occurs when CDK/Cyclin complex low or inactive caused by ubiquitin-mediated degradation by APC and their activators. In this study, rice cell cycle switch 52 A (OsCCS52A), an APC activator, is functionally characterized using the reverse genetic approach. In rice, OsCCS52A is highly expressed in seedlings, flowers, immature panicles and 15 DAP kernels. Localization studies revealed that OsCCS52A is a nuclear protein. OsCCS52A interacts with OsCdc16 in yeast. In addition, overexpression of OsCCS52A inhibits mitotic cell division and induces endoreduplication and cell elongation in fission yeast. The homozygous mutant exhibits dwarfism and smaller seeds. Further analysis demonstrated that endoreduplication cycles in the endosperm of mutant seeds were disturbed, evidenced by reduced nuclear and cell sizes. Taken together, these results suggest that OsCCS52A is involved in maintaining normal seed size formation by mediating the exit from mitotic cell division to enter the endoreduplication cycles in rice endosperm.
机译:在真核生物中,细胞周期由四个不同的阶段组成:G1,S,G2和M。在某些条件下,细胞会跳过M期并进行核内复制。在修饰的细胞周期中发生的核内复制,复制了整个基因组,而没有随后的M期。核内复制的一个周期在植物营养组织的大多数分化细胞中很普遍,并且在谷物胚乳细胞中广泛存在。当泛素介导的APC及其激活剂降解引起的CDK /细胞周期蛋白复合物低或无活性时,发生核内复制。在这项研究中,水稻细胞周期开关52 A(OsCCS52A)是一种APC激活剂,使用反向遗传方法对其功能进行了表征。在水稻中,OsCCS52A在幼苗,花朵,未成熟的圆锥花序和15个DAP籽粒中高表达。定位研究表明,OsCCS52A是一种核蛋白。 OsCCS52A与酵母中的OsCdc16相互作用。此外,OsCCS52A的过表达抑制裂殖酵母中的有丝分裂细胞分裂,并诱导核内复制和细胞伸长。纯合突变体表现出矮化和较小的种子。进一步的分析表明突变种子的胚乳中的核内复制周期受到干扰,这由减少的核和细胞大小证明。综上所述,这些结果表明,OsCCS52A通过介导有丝分裂细胞分裂的退出进入水稻胚乳的核内复制周期,参与维持正常的种子大小形成。

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