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Control of petal and pollen development by the plant cyclin-dependent kinase inhibitor ICK1 in transgenic Brassica plants

机译:植物细胞周期蛋白依赖性激酶抑制剂ICK1控制转基因芸苔属植物花瓣和花粉发育

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摘要

The cyclin-dependent protein kinases (CDKs) have a central role in cell cycle regulation and can be inhibited by the binding of small protein CDK inhibitors. The first plant CDK inhibitor gene ICK1 was previously identified in Arabidopsis thaliana. In comparison to known animal CDK inhibitors, ICK1 protein exhibits unique structural and functional properties. The expression of ICK1 directed by the constitutive CaMV 35S promoter was shown to inhibit cell division and plant growth. The aim of this study was to determine the effects of ICK1 overexpression on particular organs and cells. ICK1 was expressed in specific tissues or cells of Brassica napus L. plants using two tissue-specific promoters, Arabidopsis AP3 and Brassica Bgp1. Transgenic AP3-ICK1 plants were morphologically normal except for some modified flowers either without petals or with petals of reduced size. Surprisingly, petals of novel shapes such as tubular petals were also observed, indicating a profound effect of cell division inhibition on morphogenesis. The cell size in the smaller modified petals was similar to that in control petals, suggesting that the reduction of petal size is mainly due to the reduction of cell numbers and that the inhibition of cell division does not necessarily lead to an increase in cell size. Transgenic Bgp1-ICK1 plants were normal morphologically; however, dramatic decreases in seed production were observed in some plants. In those plants, the ability of pollen to germinate and pollen nuclear number were affected. These results are discussed in relation to the cell cycle and plant development.
机译:细胞周期蛋白依赖性蛋白激酶(CDKs)在细胞周期调节中起着核心作用,并且可以被小蛋白CDK抑制剂的结合所抑制。先前在拟南芥中鉴定了第一个植物CDK抑制剂基因ICK1。与已知的动物CDK抑制剂相比,ICK1蛋白具有独特的结构和功能特性。由组成型CaMV 35S启动子指导的ICK1的表达显示抑制细胞分裂和植物生长。这项研究的目的是确定ICK1过表达对特定器官和细胞的影响。使用两个组织特异性启动子,拟南芥AP3和芸苔属Bgp1,在甘蓝型油菜植物的特定组织或细胞中表达ICK1。转基因AP3-ICK1植物在形态上是正常的,除了一些没有花瓣或花瓣缩小的修饰花。令人惊讶地,还观察到新颖形状的花瓣,例如管状花瓣,表明细胞分裂抑制对形态发生的深远影响。较小的修饰花瓣中的细胞大小类似于对照花瓣中的细胞大小,这表明花瓣大小的减少主要是由于细胞数量的减少,并且抑制细胞分裂并不一定导致细胞大小的增加。转基因的Bgp1-ICK1植物在形态上是正常的。然而,在某些植物中观察到种子产量的急剧下降。在那些植物中,花粉发芽的能力和花粉核数受到影响。讨论了有关细胞周期和植物发育的这些结果。

著录项

  • 来源
    《Planta》 |2002年第2期|248-257|共10页
  • 作者单位

    Saskatoon Research Centre 107 Science Place Saskatoon SK S7N 0X2 Canada;

    Saskatoon Research Centre 107 Science Place Saskatoon SK S7N 0X2 Canada;

    Department of Biology University of Saskatchewan Saskatoon SK S7N 5E2 Canada;

    Saskatoon Research Centre 107 Science Place Saskatoon SK S7N 0X2 Canada;

    Plant Biotechnology Institute 110 Gymnasium Place Saskatoon SK S7N 0W9 Canada;

    Department of Biology University of Saskatchewan Saskatoon SK S7N 5E2 Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Arabidopsis Brassica (cell cycle) CDK inhibitor ICK1 Cell cycle Petal Pollen;

    机译:拟南芥(细胞周期)CDK抑制剂ICK1细胞周期花瓣花粉;

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