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拟南芥培养细胞中细胞周期蛋白转录水平的调控

Modulation of cyclin transcript levels in cultured cells of Arabidopsis thaliana.

作者信息

Fuerst R A, Soni R, Murray J A, Lindsey K

机构信息

Department of Botany, University of Leicester, United Kingdom.

出版信息

Plant Physiol. 1996 Nov;112(3):1023-33. doi: 10.1104/pp.112.3.1023.

Abstract

Previous studies on the cell cycle of Arabidopsis thaliana have been hindered by the lack of synchronous cell culture systems. We have used liquid callus cultures and a cycloheximide-synchronized suspension culture of Arabidopsis to investigate changes in cyclin transcript levels in response to exogenous auxin, cytokinin, and nutrients, and during the cell cycle. CYCD1 (delta 1) transcript was virtually undetectable in liquid-cultured callus or suspension-culture cells. CYCD2 (delta 2) transcript levels were largely unaffected by the readdition of phytohormones or nitrate to the growth medium, and remained constant throughout the cell cycle in suspension-culture cells. CYCD3 (delta 3) transcript levels were strongly dependent on nitrate, and were induced at the G1/S transition following phytohormone readdition. In synchronized suspension-culture cells, CYCD3 transcript accumulated during the S phase, and remained constant thereafter. These results support the hypothesis that D cyclins function as part of the cellular machinery that integrates diverse signals impinging upon commitment to cell division. In synchronized cells transcripts of the mitotic cyclins CYC1, CYC2, and CYC3 reached a maximum with peak mitotic index, but CYC3 transcript levels increased earlier than those of CYC1 or CYC2. The kinetics of accumulation of CYC transcript levels support their classification as A-type (CYC3) and B-type (CYC1 and CYC2) cyclins, respectively.

摘要

以往对拟南芥细胞周期的研究因缺乏同步细胞培养系统而受阻。我们利用拟南芥的液体愈伤组织培养物和环己酰亚胺同步化悬浮培养物,来研究细胞周期蛋白转录水平对外源生长素、细胞分裂素和营养物质的响应,以及在细胞周期中的变化。CYCD1(δ1)转录本在液体培养的愈伤组织或悬浮培养细胞中几乎检测不到。CYCD2(δ2)转录本水平在向生长培养基中重新添加植物激素或硝酸盐后基本不受影响,并且在悬浮培养细胞的整个细胞周期中保持恒定。CYCD3(δ3)转录本水平强烈依赖于硝酸盐,并在重新添加植物激素后的G1/S转换期被诱导。在同步化的悬浮培养细胞中,CYCD3转录本在S期积累,此后保持恒定。这些结果支持了D型细胞周期蛋白作为整合影响细胞分裂承诺的多种信号的细胞机制一部分发挥作用的假说。在同步化细胞中,有丝分裂细胞周期蛋白CYC1、CYC2和CYC3的转录本在有丝分裂指数峰值时达到最大值,但CYC3转录本水平比CYC1或CYC2增加得更早。CYC转录本水平的积累动力学分别支持它们被分类为A型(CYC3)和B型(CYC1和CYC2)细胞周期蛋白。

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本文引用的文献

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Arabidopsis thaliana and Plant Molecular Genetics.拟南芥与植物分子遗传学。
Science. 1985 Sep 20;229(4719):1214-8. doi: 10.1126/science.229.4719.1214.
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Cell. 1993 Jun 18;73(6):1059-65. doi: 10.1016/0092-8674(93)90636-5.

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