Liu Dongmei, Song Yu, Chen Zhixiang, Yu Diqiu
Key Laboratory of Tropical Forest Ecology, Xishuangbanna Tropical Botanical Garden, Chinese Academy of Sciences, Kunming, 650223, Yunnan, China.
Physiol Plant. 2009 Jun;136(2):223-36. doi: 10.1111/j.1399-3054.2009.01229.x. Epub 2009 Feb 2.
MicroRNAs (miRNAs) are comprised of approximately 21 nucleotide (nt) RNAs that play important regulatory roles in growth and development by targeting mRNAs for cleavage or translational repression. In Arabidopsis, more than one hundred miRNAs have been identified but the biological functions of only a limited number of them have been determined by molecular genetic analysis. miR396 is a miRNA conserved among the dicot and monocot plants. In Arabidopsis, miR396 has two loci (MIR396a and MIR396b) and targets six Growth-Regulating Factor (GRF) genes encoding putative transcription factors with roles in plant leaf growth. Using a northern blot hybridizations approach, we have found that MIR396 is predominantly expressed in leaf and seedling. To further analyze the role of miR396 in the regulation of target genes and leaf growth, we have generated transgenic Arabidopsis plants that constitutively overexpress MIR396a or MIR396b. These transgenic plants have narrow-leaf phenotypes due to reduction in cell number. Ectopic overexpression of MIR396 represses expression of not only six GRF genes but also GIF1 encoding a GRF-interacting transcription coactivator with a role in cell proliferation in leaf. In addition, transgenic MIR396-overexpressing plants have lower densities of stomata and are more tolerant to drought than wild-type plants. These results strongly support the belief that miR396 plays an important role in plant leaf growth and development, most likely by repressing GRF gene expression.
微小RNA(miRNA)由约21个核苷酸(nt)的RNA组成,通过靶向mRNA进行切割或翻译抑制,在生长和发育中发挥重要的调控作用。在拟南芥中,已鉴定出一百多种miRNA,但只有少数miRNA的生物学功能通过分子遗传学分析得以确定。miR396是一种在双子叶植物和单子叶植物中保守的miRNA。在拟南芥中,miR396有两个位点(MIR396a和MIR396b),并靶向六个生长调节因子(GRF)基因,这些基因编码在植物叶片生长中起作用的假定转录因子。使用Northern印迹杂交方法,我们发现MIR396主要在叶片和幼苗中表达。为了进一步分析miR396在靶基因调控和叶片生长中的作用,我们构建了组成型过表达MIR396a或MIR396b的转基因拟南芥植株。这些转基因植株由于细胞数量减少而具有窄叶表型。MIR396的异位过表达不仅抑制了六个GRF基因的表达,还抑制了GIF1的表达,GIF1编码一种与GRF相互作用的转录共激活因子,在叶片细胞增殖中起作用。此外,过表达MIR396的转基因植株气孔密度较低,比野生型植株更耐旱。这些结果有力地支持了miR396在植物叶片生长和发育中起重要作用的观点,最有可能是通过抑制GRF基因表达来实现的。