Sun Yuyan, Qiu Yang, Zhang Xiaohui, Chen Xiaohua, Shen Di, Wang Haiping, Li Xixiang
Institute of Vegetables and Flowers, Chinese Academy of Agricultural Sciences, Beijing 100081, China; Beijing Research Station of Vegetable Crop Gene Resource and Germplasm Enhancement, Ministry of Agriculture, Beijing 100081, China.
Institute of Vegetables and Flowers, Chinese Academy of Agricultural Sciences, Beijing 100081, China; Beijing Research Station of Vegetable Crop Gene Resource and Germplasm Enhancement, Ministry of Agriculture, Beijing 100081, China.
Gene. 2015 Sep 10;569(1):118-26. doi: 10.1016/j.gene.2015.05.044. Epub 2015 May 23.
MicroRNAs (miRNAs) are small, endogenous, non-coding RNAs that play vital regulatory roles in plant growth and development. To identify the miRNAs associated with taproot development at the whole genome level, we sequenced five RNA libraries constructed from radish taproots at different developmental stages and generated a total of 148M clean reads. Using an integrative bioinformatics analysis, 494 known miRNAs belonging to 434 families and 220 putative novel miRNAs were identified. Combining the differential expression analysis and target prediction, we found that 77 miRNAs were potentially associated with taproot development. Target transcripts generated significant GO terms relating to cell proliferation, root development and hormone-mediated signaling. The KEGG analyses revealed that plant hormone signal transduction, zeatin biosynthesis, biosynthesis of secondary metabolites, cell cycle, MAPK signaling and p53 signaling were closely associated with taproot development. These findings will provide valuable information for further functional verification of miRNAs and their targets in radish taproot development.
微小RNA(miRNA)是一类小的内源性非编码RNA,在植物生长发育过程中发挥着至关重要的调控作用。为了在全基因组水平上鉴定与主根发育相关的miRNA,我们对从不同发育阶段的萝卜主根构建的5个RNA文库进行了测序,共获得了1.48亿条clean reads。通过综合生物信息学分析,鉴定出了属于434个家族的494个已知miRNA和220个推定的新miRNA。结合差异表达分析和靶标预测,我们发现77个miRNA可能与主根发育相关。靶转录本产生了与细胞增殖、根发育和激素介导信号传导相关的显著GO术语。KEGG分析表明,植物激素信号转导、玉米素生物合成、次生代谢物生物合成、细胞周期、MAPK信号传导和p53信号传导与主根发育密切相关。这些发现将为进一步功能验证miRNA及其在萝卜主根发育中的靶标提供有价值的信息。