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Arabidopsis CYCD3 D-type cyclins link cell proliferation and endocycles and are rate-limiting for cytokinin responses

机译:拟南芥CYCD3 D型细胞周期蛋白链接细胞增殖和周期,并限制细胞分裂素反应

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Current understanding of the integration of cell division and expansion in the development of plant lateral organs such as leaves is limited. Cell number is established during a mitotic phase, and subsequent growth into a mature organ relies primarily on cell expansion accompanied by endocycles. Here we show that the three Arabidopsis cyclin D3 (CYCD3) genes are expressed in overlapping but distinct patterns in developing lateral organs and the shoot meristem. Triple loss-of-function mutants show that CYCD3 function is essential neither for the mitotic cell cycle nor for morphogenesis. Rather, analysis of mutant and reciprocal overex-pression phenotypes shows that CYCD3 function contributes to the control of cell number in developing leaves by regulating the duration of the mitotic phase and timing of the transition to endocycles. Petals, which normally do not endoreduplicate, respond to loss of CYCD3 function with larger cells that initiate endocycles. The phytohormone cytokinin regulates cell division in the shoot meristem and developing leaves and induces CYCD3 expression. Loss of CYCD3 impairs shoot meristem function and leads to reduced cytokinin responses, including the inability to initiate shoots on callus, without affecting endogenous cytokinin levels. We conclude that CYCD3 activity is important for determining cell number in developing lateral organs and the relative contribution of the alternative processes of cell production and cell expansion to overall organ growth, as well as mediating cytokinin effects in apical growth and development.
机译:目前对植物叶等植物横向器官发育中细胞分裂和扩增的整合的了解有限。细胞数量是在有丝分裂期建立的,随后生长成成熟器官主要取决于伴随着内循环的细胞扩增。在这里,我们显示了三个拟南芥细胞周期蛋白D3(CYCD3)基因在发育中的侧器官和芽分生组织中以重叠但不同的模式表达。三重功能丧失的突变体表明CYCD3功能对于有丝分裂细胞周期或形态发生都不是必需的。相反,对突变和倒数过表达表型的分析表明,CYCD3功能通过调节有丝分裂期的持续时间和过渡到内环周期的时机,有助于发育叶片中细胞数量的控制。正常情况下不会重复复制的花瓣对启动内循环的较大细胞响应CYCD3功能的丧失。植物激素细胞分裂素调节芽分生组织和正在发育的叶片中的细胞分裂,并诱导CYCD3表达。 CYCD3的丧失会损害芽分生组织功能并导致细胞分裂素反应降低,包括无法在愈伤组织上引发芽,而又不影响内源性细胞分裂素水平。我们得出的结论是,CYCD3活性对于确定发育中的侧器官中的细胞数以及细胞生产和细胞扩增的替代过程对整体器官生长以及介导细胞分裂素在心尖生长和发育中的相对贡献的相对贡献至关重要。

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