Zhiponova Miroslava K, Pettkó-Szandtner Aladár, Stelkovics Eva, Neer Zsuzsanna, Bottka Sándor, Krenács Tibor, Dudits Dénes, Fehér Attila, Szilák László
Institute of Plant Biology, Biological Research Center, Szeged H-6701, Hungary.
Plant Physiol. 2006 Feb;140(2):693-703. doi: 10.1104/pp.105.072173. Epub 2006 Jan 11.
Cyclin-dependent serine/threonine kinases (CDKs) have pivotal roles in regulating the eukaryotic cell cycle. Plants possess a unique class of CDKs (B-type CDKs) with preferential protein accumulation at G2/M-phases; however, their exact functions are still enigmatic. Here we describe the functional characterization of a 360-bp promoter region of the alfalfa (Medicago sativa) CDKB2;1 gene in transgenic plants and cell lines. It is shown that the activity of the analyzed promoter was characteristic for proliferating meristematic regions in planta and specific for cells in the G2/M-phases in synchronized cell cultures. Immunohistochemical analysis of transgenic root sections further confirmed the correlation of the expression of the CDKB2;1 promoter-linked reporter genes with the accumulation of the correspondent kinase. It was found that, in addition to auxin (2,4-dichlorophenoxyacetic acid) treatment, wounding could also induce both the reporter and endogenous genes in transgenic leaf explants. Furthermore, ethylene, known as a wound-response mediator, had a similar effect. The gene activation in response to wounding or ethephon was faster and occurred without the induction of cell cycle progression in contrast to the control auxin treatment. In silico analysis of this promoter indeed revealed the presence of a set of cis-elements, indicating not only cell cycle- but wound- and ethylene-dependent regulation of this CDK gene. Based on the presented data, we discuss the functional significance of the complex regulation of mitosis-specific CDK genes in plants.
细胞周期蛋白依赖性丝氨酸/苏氨酸激酶(CDKs)在调控真核细胞周期中起关键作用。植物拥有一类独特的CDKs(B型CDKs),其蛋白质在G2/M期优先积累;然而,它们的确切功能仍然未知。在这里,我们描述了紫花苜蓿(Medicago sativa)CDKB2;1基因360bp启动子区域在转基因植物和细胞系中的功能特性。结果表明,所分析的启动子活性在植物体内增殖的分生组织区域具有特征性,在同步化细胞培养中对G2/M期的细胞具有特异性。对转基因根切片的免疫组织化学分析进一步证实了CDKB2;1启动子连接的报告基因的表达与相应激酶积累之间的相关性。发现除了生长素(2,4-二氯苯氧乙酸)处理外,伤口也能诱导转基因叶片外植体中的报告基因和内源基因。此外,已知作为伤口反应介质的乙烯也有类似作用。与对照生长素处理相比,伤口或乙烯利诱导的基因激活更快,且在不诱导细胞周期进程的情况下发生。对该启动子的电子分析确实揭示了一组顺式元件的存在,这不仅表明该CDK基因受细胞周期调控,还受伤口和乙烯调控。基于所提供的数据,我们讨论了植物中有丝分裂特异性CDK基因复杂调控的功能意义。