Duan Hui, Lu Xin, Lian Conglong, An Yi, Xia Xinli, Yin Weilun
National Engineering Laboratory for Tree Breeding, College of Biological Sciences and Biotechnology, Beijing Forestry University Beijing, China.
Front Plant Sci. 2016 Aug 17;7:1184. doi: 10.3389/fpls.2016.01184. eCollection 2016.
MicroRNA (miRNA) is a type of non-coding small RNA with a regulatory function at the posttranscriptional level in plant growth development and in response to abiotic stress. Previous studies have not reported on miRNAs responses to the phytohormone abscisic acid (ABA) at a genome-wide level in Populus euphratica, a model tree for studying abiotic stress responses in woody plants. Here we analyzed the miRNA response to ABA at a genome-wide level in P. euphratica utilizing high-throughput sequencing. To systematically perform a genome-wide analysis of ABA-responsive miRNAs in P. euphratica, nine sRNA libraries derived from three groups (control, treated with ABA for 1 day and treated with ABA for 4 days) were constructed. Each group included three libraries from three individual plantlets as biological replicate. In total, 151 unique mature sequences belonging to 75 conserved miRNA families were identified, and 94 unique sequences were determined to be novel miRNAs, including 56 miRNAs with miRNA(*) sequences. In all, 31 conserved miRNAs and 31 novel miRNAs response to ABA significantly differed among the groups. In addition, 4132 target genes were predicted for the conserved and novel miRNAs. Confirmed by real-time qPCR, expression changes of miRNAs were inversely correlated with the expression profiles of their putative targets. The Populus special or novel miRNA-target interactions were predicted might be involved in some biological process related stress tolerance. Our analysis provides a comprehensive view of how P. euphratica miRNA respond to ABA, and moreover, different temporal dynamics were observed in different ABA-treated libraries.
微小RNA(miRNA)是一类非编码小RNA,在植物生长发育及对非生物胁迫的响应中发挥转录后水平的调控作用。以往研究尚未在胡杨(一种用于研究木本植物非生物胁迫响应的模式树种)中对miRNA在全基因组水平上对植物激素脱落酸(ABA)的响应进行报道。在此,我们利用高通量测序在全基因组水平上分析了胡杨中miRNA对ABA的响应。为系统地对胡杨中ABA响应性miRNA进行全基因组分析,构建了来自三组(对照、ABA处理1天和ABA处理4天)的9个小RNA文库。每组包含来自三株独立幼苗的三个文库作为生物学重复。总共鉴定出属于75个保守miRNA家族的151个独特成熟序列,确定94个独特序列为新的miRNA,其中包括56个带有miRNA(*)序列的miRNA。总共,31个保守miRNA和31个新miRNA对ABA的响应在各组间存在显著差异。此外,预测了保守和新miRNA的4132个靶基因。通过实时定量PCR证实,miRNA的表达变化与其假定靶标的表达谱呈负相关。预测的胡杨特异或新的miRNA-靶标相互作用可能参与了一些与胁迫耐受性相关的生物学过程。我们的分析全面展示了胡杨miRNA对ABA的响应情况,此外,在不同ABA处理的文库中观察到了不同的时间动态。