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Regulation of Leaf Morphology by MicroRNA394 and its Target LEAF CURLING RESPONSIVENESS

机译:MicroRNA394对叶片形态的调控及其目标叶片卷曲反应

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摘要

The present study identified Arabidopsis miR394 and its target, an F-box (SKP1-Cullin/CDC53-F-box) gene At1g27340 (here referred to as LEAF CURLING RESPONSIVENESS, LCR), for regulation of leaf curling-related morphology. The loss-of-function lcr mutants exhibit pleiotropic defects with semi-dwarfism, altered leaf shape and a shorter stem. Overexpression of an miR394-resistant version of LCR under the 35S promoter (35S:m5LCR) and target mimicry MIM394 resulted in a curled-down leaf defect. Conversely, transgenic plants overexpressing 35S:MIR394a/b display a curled-up leaf phenotype. Detailed analyses show that there is a certain level of LCR that is optimal for leaf morphology, but lower or higher levels lead to abnormal leaf development, indicating that expression of miR394 in the leaf lamina is necessary for proper leaf morphology. Because the phytohormone auxin plays a crucial role in leaf morphogenesis and patterning, the DR5-GUS reporter gene was used to monitor the auxin response. We show that DR5 expression patterns in lcr and 35S::m5LCR plants were significantly different from those in the wild type. Also, overexpression of LCR in 35S::m5LCR plants drastically decreased the expression of the auxin-responsive genes IAA3, AXR3 and IAMT1, whereas increased expression of the genes was found in 35S::MIR394a plants. These results indicate that miR394 and its target LCR are involved in the regulation of leaf development.
机译:本研究确定了拟南芥miR394及其靶标,即一个F-box(SKP1-Cullin / CDC53-F-box)基因At1g27340(此处称为“叶卷曲反应”,LCR),用于调节与叶片卷曲有关的形态。功能丧失的lcr突变体表现出多效性缺陷,具有半侏儒症,改变的叶片形状和较短的茎。在35S启动子(35S:m5LCR)和目标模仿MIM394下过表达miR394抗性版本的LCR导致叶片缺陷。相反,过表达35S:MIR394a / b的转基因植物表现出卷曲的表型。详细的分析表明,有一定水平的LCR最适合叶片形态,但是较低或较高的水平则会导致叶片发育异常,这表明miR394在叶片中的表达对于适当的叶片形态是必需的。由于植物激素生长素在叶片形态和模式中起关键作用,因此使用DR5-GUS报告基因来监测植物生长素的反应。我们显示,lcr和35S :: m5LCR植物中的DR5表达模式与野生型中的显着不同。同样,在35S :: m5LCR植物中LCR的过表达极大地降低了生长素应答基因IAA3,AXR3和IAMT1的表达,而在35S :: MIR394a植物中发现基因的表达增加。这些结果表明miR394及其靶LCR参与叶发育的调节。

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  • 来源
    《Plant and Cell Physiology》 |2012年第7期|p.1283-1294|共12页
  • 作者单位

    1Department of Biochemistry and Molecular Biology, College of Life Sciences, Nanjing Agricultural University, Nanjing 210095, PR China 2School of Biological Sciences, University of East Anglia, Norwich NR4 7TJ, UK 3Institute of Bast Fiber Crops, Chinese Academy of Agricultural Sciences, Changcha 410205, PR China;

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