Zhao Wenchao, Li Zilong, Fan Jingwei, Hu Canli, Yang Rui, Qi Xin, Chen Hua, Zhao Fukuan, Wang Shaohui
Beijing Key Laboratory for Agricultural Application and New Technique, Plant Science and Technology College, Beijing University of Agriculture, Beijing, 102206, China.
Biological Science and Engineering College, Beijing University of Agriculture, Beijing, 102206, China.
J Exp Bot. 2015 Aug;66(15):4653-67. doi: 10.1093/jxb/erv238. Epub 2015 May 22.
MicroRNAs (miRNAs) are important transcriptional and post-transcriptional modulators of gene expression that play crucial roles in the responses to diverse stresses. To explore jasmonic acid (JA)-dependent miRNA-mediated regulatory networks that are responsive to root-knot nematode (RKN), two small RNA libraries were constructed from wild-type (WT) and JA mutant (spr2) plants. A total of 263 known miRNAs and 441 novel miRNAs were significantly regulated under RKN stress in the two libraries. The spatio-temporal expression of candidate miRNAs and their corresponding targets were analysed by qRT-PCR under RKN stress. A clear negative correlation was observed between miR319 and its target TEOSINTE BRANCHED1/CYCLOIDEA/PRO-LIFERATING CELL FACTOR 4 (TCP4) in leaf, stem, and root under RKN stress, implying that the miR319/TCP4 module is involved in the systemic defensive response. Reverse genetics demonstrated that the miR319/TCP4 module affected JA synthetic genes and the endogenous JA level in leaves, thereby mediating RKN resistance. These results suggested that the action of miR319 in serving as a systemic signal responder and regulator that modulated the RKN systemic defensive response was mediated via JA. The potential cross-talk between miR319/TCP4 and miR396/GRF (GROWTH RESPONDING FACTOR) in roots under RKN invasion is discussed, and a predictive model regarding miR319/TCP4-mediated RKN resistance is proposed.
微小RNA(miRNA)是基因表达重要的转录和转录后调节因子,在对多种胁迫的反应中发挥关键作用。为了探索茉莉酸(JA)依赖性miRNA介导的对根结线虫(RKN)有响应的调控网络,从野生型(WT)和JA突变体(spr2)植物构建了两个小RNA文库。在这两个文库中,共有263个已知miRNA和441个新miRNA在RKN胁迫下受到显著调控。在RKN胁迫下,通过qRT-PCR分析了候选miRNA及其相应靶标的时空表达。在RKN胁迫下,叶片、茎和根中miR319与其靶标玉米分枝素1/环化素/增殖细胞因子4(TCP4)之间观察到明显的负相关,这意味着miR319/TCP4模块参与了系统防御反应。反向遗传学表明,miR319/TCP4模块影响叶片中的JA合成基因和内源性JA水平,从而介导对RKN的抗性。这些结果表明,miR319作为系统信号响应者和调节因子来调节RKN系统防御反应的作用是通过JA介导的。讨论了RKN入侵下根中miR319/TCP4和miR396/生长响应因子(GRF)之间潜在的相互作用,并提出了关于miR319/TCP4介导的RKN抗性的预测模型。