Sosa-Valencia Guadalupe, Palomar Miguel, Covarrubias Alejandra A, Reyes José L
Departamento de Biología Molecular de Plantas, Instituto de Biotecnología, Universidad Nacional Autónoma de México,Av. Universidad 2001, Col. Chamilpa, C.P. 62210, Cuernavaca Mor., Mexico.
J Exp Bot. 2017 Apr 1;68(8):2013-2026. doi: 10.1093/jxb/erw380.
Recent studies have identified microRNAs as post-transcriptional regulators involved in stress responses. miR1514a is a legume microRNA that is induced in response to drought stress in Phaseolus vulgaris (common bean) and shows differential accumulation levels in roots during water deficit in two cultivars with different drought tolerance phenotypes. A recent degradome analysis revealed that miR1514a targets the transcripts of two NAC transcription factors (TFs), Phvul.010g121000 and Phvul.010g120700. Furthermore, expression studies and small RNA-seq data indicate that only Phvul.010g120700 generates phasiRNAs, which also accumulate under water deficit conditions. To confirm these results, we over-expressed miR1514a in transgenic hairy roots, and observed a reduced accumulation of Phvul.010g120700 and an increase in NAC-derived phasiRNAs; inhibition of miR1514a activity resulted in the opposite effect. Moreover, we determined that a NAC-derived phasiRNA associates with ARGONAUTE 1 (AGO1), suggesting that it is functional. In addition, a transcriptome analysis of transgenic hairy roots with reduced miR1514a levels revealed several differentially expressed transcripts, mainly involved in metabolism and stress responses, suggesting they are regulated by the NAC TF and/or by phasiRNAs. This work therefore demonstrates the participation of miR1514 in the regulation of a NAC transcription factor transcript through phasiRNA production during the plant response to water deficit.
最近的研究已确定微小RNA是参与应激反应的转录后调节因子。miR1514a是一种豆科植物微小RNA,在菜豆(普通豆)中受干旱胁迫诱导,并且在水分亏缺期间,在两个具有不同耐旱表型的品种的根中表现出不同的积累水平。最近的降解组分析表明,miR1514a靶向两个NAC转录因子(TFs)Phvul.010g121000和Phvul.010g120700的转录本。此外,表达研究和小RNA测序数据表明,只有Phvul.010g120700产生相位小干扰RNA(phasiRNAs),其在水分亏缺条件下也会积累。为了证实这些结果,我们在转基因毛状根中过表达miR1514a,并观察到Phvul.010g120700的积累减少以及NAC衍生的phasiRNAs增加;抑制miR1514a的活性则产生相反的效果。此外,我们确定一种NAC衍生的phasiRNA与AGO1(AGO1)相关联,表明它具有功能。另外,对miR1514a水平降低的转基因毛状根进行的转录组分析揭示了几种差异表达的转录本,主要参与代谢和应激反应,表明它们受NAC转录因子和/或phasiRNAs的调节。因此,这项工作证明了miR1514在植物对水分亏缺的反应过程中通过phasiRNA的产生参与NAC转录因子转录本的调节。