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PHYTOCHROME REGULATED TRANSCRIPTION FACTOR FOR CONTROL OF HIGHER PLANT DEVELOPMENT

机译:植物色素调节转录因子,用于控制高等植物的发育

摘要

The present invention involves the isolation and characterization of the first discovered phytochrome-regulated transcriptional factor, a protein designated CCA1 which binds to the promoter region of the chlorophyll binding protein gene (Lhcb1*3) of Arabidopsis. The Lhcb1*3 gene of Arabidopsis is known to be regulated by phytochrome in etiolated seedlings where a brief illumination by red light results in a large increase in the level of mRNA from this gene. A DNA binding activity, designated CA-1, that interacts with the promoter region of Lhcb1*3 was previously discovered in cellular extracts. This binding activity was used to obtain a cDNA clone for a transcription factor that binds specifically to the Lhcb1*3 promoter. Modification of the expression of CCA1 using techniques of genetic engineering results in unexpected changes in the timing of plant flowering. When CCA1 is overexpressed, it appears that the normal circadian rhythms of the plant are disrupted. The plants take a significantly longer time to reach flowering even in the presence of day length conditions that normally induce flowering. Thus, a method of extending vegetative growth and delaying flowering is provided.
机译:本发明涉及分离和鉴定第一个发现的植物色素调节的转录因子,一种称为CCA1的蛋白,其与拟南芥的叶绿素结合蛋白基因(Lhcb1 * 3)的启动子区结合。已知拟南芥的Lhcb1 * 3基因受光化苗中植物色素的调节,其中短暂的红光照射导致该基因的mRNA水平大大增加。先前在细胞提取物中发现了与Lhcb1 * 3的启动子区域相互作用的DNA结合活性,称为CA-1。该结合活性用于获得与Lhcb1 * 3启动子特异性结合的转录因子的cDNA克隆。使用基因工程技术修饰CCA1的表达会导致植物开花时间的意外变化。当CCA1过表达时,似乎植物的正常昼夜节律被破坏。即使在通常会诱导开花的日间条件下,植物也需要花费更长的时间才能开花。因此,提供了延长营养生长并延迟开花的方法。

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