首页> 外文期刊>Developmental biology >The rice flattened shoot meristem, encoding CAF-1 p150 subunit, is required for meristem maintenance by regulating the cell-cycle period.
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The rice flattened shoot meristem, encoding CAF-1 p150 subunit, is required for meristem maintenance by regulating the cell-cycle period.

机译:水稻扁平芽新芽分生组织,编码CAF-1 p150亚基,通过调节细胞周期来维持分生组织。

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We isolated flattened shoot meristem (fsm) mutants in rice that showed defective seedling growth and died in the vegetative phase. Since most fsm plants had flat and small shoot apical meristems (SAMs), we suggest that FSM is required for proper SAM maintenance. FSM encodes a putative ortholog of Arabidopsis FASCIATA1 (FAS1) that corresponds to the p150 subunit of chromatin assembly factor-1 (CAF-1). FSM is expressed patchily in tissues with actively dividing cells, suggesting a tight association of FSM with specific cell-cycle phases. Double-target in situ hybridization counterstained with cell-cycle marker genes revealed that FSM is expressed mainly in the G(1) phase. In fsm, expressions of the two marker genes representing S- and G(2)- to M-phases were enhanced in SAM, despite a reduced number of cells in SAM, suggesting that S- and G(2)-phases are prolonged in fsm. In addition, developmental events in fsm leaves took place at the proper time, indicating that the temporal regulation of development occurs independently of the cell-cycle period. In contrast to the fasciated phenotype of Arabidopsis fas1, fsm showed size reduction of SAM. The opposite phenotypes between fsm and fas1 indicate that the SAM maintenance is regulated differently between rice and Arabidopsis.
机译:我们在水稻中分离了展平的芽分生组织(fsm)突变体,该突变体显示出幼苗生长不良并在营养期死亡。由于大多数fsm植物的茎顶端分生组织(SAM)扁平且较小,因此我们建议FSM是正确维护SAM所必需的。 FSM编码拟南芥FASCIATA1(FAS1)的一个直系同源基因,它对应于染色质装配因子1(CAF-1)的p150亚基。 FSM在具有活跃分裂细胞的组织中局部表达,表明FSM与特定细胞周期阶段紧密相关。用细胞周期标记基因复染的双靶原位杂交表明,FSM主要在G(1)相中表达。在fsm中,尽管SAM中的细胞数量减少,但代表SAM的S和G(2)-至M期的两个标记基因的表达却增强了,这表明S-和G(2)阶段在SAM中得以延长。 fsm。此外,fsm叶片中的发育事件在适当的时间发生,这表明发育的时间调控独立于细胞周期周期而发生。与拟南芥fas1的迷恋的表型相反,fsm显示SAM的尺寸减小。 fsm和fas1之间相反的表型表明,水稻和拟南芥对SAM的维持调控不同。

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