Palatnik Javier F, Allen Edwards, Wu Xuelin, Schommer Carla, Schwab Rebecca, Carrington James C, Weigel Detlef
Department of Molecular Biology, Max Planck Institute for Developmental Biology, D-72076 Tübingen, Germany.
Nature. 2003 Sep 18;425(6955):257-63. doi: 10.1038/nature01958. Epub 2003 Aug 20.
Plants with altered microRNA metabolism have pleiotropic developmental defects, but direct evidence for microRNAs regulating specific aspects of plant morphogenesis has been lacking. In a genetic screen, we identified the JAW locus, which produces a microRNA that can guide messenger RNA cleavage of several TCP genes controlling leaf development. MicroRNA-guided cleavage of TCP4 mRNA is necessary to prevent aberrant activity of the TCP4 gene expressed from its native promoter. In addition, overexpression of wild-type and microRNA-resistant TCP variants demonstrates that mRNA cleavage is largely sufficient to restrict TCP function to its normal domain of activity. TCP genes with microRNA target sequences are found in a wide range of species, indicating that microRNA-mediated control of leaf morphogenesis is conserved in plants with very different leaf forms.
微RNA代谢改变的植物具有多效性发育缺陷,但一直缺乏微RNA调控植物形态发生特定方面的直接证据。在一项遗传筛选中,我们鉴定出了JAW位点,它产生一种微RNA,可引导对几个控制叶片发育的TCP基因进行信使核糖核酸切割。微RNA引导的TCP4信使核糖核酸切割对于防止从其天然启动子表达的TCP4基因异常活性是必要的。此外,野生型和抗微RNA的TCP变体的过表达表明,信使核糖核酸切割在很大程度上足以将TCP功能限制在其正常活性域内。具有微RNA靶序列的TCP基因存在于多种物种中,这表明微RNA介导的叶片形态发生控制在具有非常不同叶片形态的植物中是保守的。