Department of Plant and Soil Sciences, University of Kentucky, 1401 University Drive, Lexington, KY 40546, USA.
Math, Science, and Technology Center, Paul Laurence Dunbar High School, 1600 Man o' War Boulevard, Lexington, KY 40513, USA.
Sci Rep. 2017 Feb 22;7:43027. doi: 10.1038/srep43027.
MicroRNAs (miRNAs) regulate numerous crucial biological processes in plants. However, information is limited on their involvement in the biosynthesis of specialized metabolites in plants, including Catharanthus roseus that produces a number of pharmaceutically valuable, bioactive terpenoid indole alkaloids (TIAs). Using small RNA-sequencing, we identified 181 conserved and 173 novel miRNAs (cro-miRNAs) in C. roseus seedlings. Genome-wide expression analysis revealed that a set of cro-miRNAs are differentially regulated in response to methyl jasmonate (MeJA). In silico target prediction identified 519 potential cro-miRNA targets that include several auxin response factors (ARFs). The presence of cleaved transcripts of miRNA-targeted ARFs in C. roseus cells was confirmed by Poly(A) Polymerase-Mediated Rapid Amplification of cDNA Ends (PPM-RACE). We showed that auxin (indole acetic acid, IAA) repressed the expression of key TIA pathway genes in C. roseus seedlings. Moreover, we demonstrated that a miRNA-regulated ARF, CrARF16, binds to the promoters of key TIA pathway genes and repress their expression. The C. roseus miRNAome reported here provides a comprehensive account of the cro-miRNA populations, as well as their abundance and expression profiles in response to MeJA. In addition, our findings underscore the importance of miRNAs in posttranscriptional control of the biosynthesis of specialized metabolites.
MicroRNAs (miRNAs) 调控植物中许多重要的生物学过程。然而,关于它们在植物中参与特殊代谢物生物合成的信息有限,包括长春花,它产生许多具有药用价值的生物活性萜类吲哚生物碱(TIAs)。通过小 RNA 测序,我们在长春花幼苗中鉴定了 181 个保守和 173 个新的 miRNA(cro-miRNAs)。全基因组表达分析表明,一组 cro-miRNAs 对甲基茉莉酸(MeJA)的响应存在差异调节。基于计算机的靶标预测鉴定了 519 个潜在的 cro-miRNA 靶标,其中包括几个生长素响应因子(ARFs)。通过 Poly(A) 聚合酶介导的快速 cDNA 末端扩增(PPM-RACE)证实了 miRNA 靶向 ARF 的切割转录本存在于长春花细胞中。我们表明,生长素(吲哚乙酸,IAA)抑制了长春花幼苗中关键 TIA 途径基因的表达。此外,我们证明了一个 miRNA 调控的 ARF,CrARF16,结合到关键 TIA 途径基因的启动子上,并抑制它们的表达。这里报道的长春花 miRNA 组提供了一个全面的 cro-miRNA 群体描述,以及它们在 MeJA 响应下的丰度和表达谱。此外,我们的发现强调了 miRNA 在特殊代谢物生物合成的转录后调控中的重要性。