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首页> 外文期刊>BMC Plant Biology >Transcriptome profiling of root microRNAs reveals novel insights into taproot thickening in radish ( Raphanus sativus L.)
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Transcriptome profiling of root microRNAs reveals novel insights into taproot thickening in radish ( Raphanus sativus L.)

机译:根microRNA的转录组分析揭示了萝卜主根增厚的新见解(Raphanus sativus L.)

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Background Radish ( Raphanus sativus L.) is an economically important root vegetable crop, and the taproot-thickening process is the most critical period for the final productivity and quality formation. MicroRNAs (miRNAs) are a family of non-coding small RNAs that play an important regulatory function in plant growth and development. However, the characterization of miRNAs and their roles in regulating radish taproot growth and thickening remain largely unexplored. A Solexa high-throughput sequencing technology was used to identify key miRNAs involved in taproot thickening in radish. Results Three small RNA libraries from ‘NAU-YH’ taproot collected at pre-cortex splitting stage, cortex splitting stage and expanding stage were constructed. In all, 175 known and 107 potential novel miRNAs were discovered, from which 85 known and 13 novel miRNAs were found to be significantly differentially expressed during taproot thickening. Furthermore, totally 191 target genes were identified for the differentially expressed miRNAs. These target genes were annotated as transcription factors and other functional proteins, which were involved in various biological functions including plant growth and development, metabolism, cell organization and biogenesis, signal sensing and transduction, and plant defense response. RT-qPCR analysis validated miRNA expression patterns for five miRNAs and their corresponding target genes. Conclusions The small RNA populations of radish taproot at different thickening stages were firstly identified by Solexa sequencing. Totally 98 differentially expressed miRNAs identified from three taproot libraries might play important regulatory roles in taproot thickening. Their targets encoding transcription factors and other functional proteins including NF-YA2 , ILR1 , bHLH74, XTH16 , CEL41 and EXPA9 were involved in radish taproot thickening. These results could provide new insights into the regulatory roles of miRNAs during the taproot thickening and facilitate genetic improvement of taproot in radish.
机译:背景萝卜(Raphanus sativus L.)是一种经济上重要的根菜类作物,主根增厚过程是最终生产力和品质形成的最关键时期。 MicroRNA(miRNA)是非编码小RNA家族,在植物生长和发育中起着重要的调节作用。但是,miRNA的特征及其在调节萝卜主根生长和增厚中的作用仍未得到充分的研究。 Solexa高通量测序技术用于鉴定与萝卜主根增厚有关的关键miRNA。结果构建了3个来自“ NAU-YH”主根的小RNA文库,分别在皮层分裂前,皮层分裂期和扩张期收集。总共发现了175种已知的和107种潜在的新型miRNA,从中发现85种已知的13种新颖miRNA在主根增厚过程中显着差异表达。此外,针对差异表达的miRNA,共鉴定出191个靶基因。这些目标基因被标注为转录因子和其他功能蛋白,它们参与了各种生物学功能,包括植物的生长发育,代谢,细胞组织和生物发生,信号传感和转导以及植物防御反应。 RT-qPCR分析验证了五个miRNA及其相应靶基因的miRNA表达模式。结论首先通过Solexa测序鉴定了萝卜在不同增稠阶段的小RNA群体。从三个主根文库中鉴定出的总共98个差异表达的miRNA可能在主根增厚中起重要的调节作用。它们的编码转录因子和其他功能蛋白(包括NF-YA2,ILR1,bHLH74,XTH16,CEL41和EXPA9)的靶标与萝卜主根增厚有关。这些结果可以为miRNA在根部增厚过程中的调控作用提供新的见解,并促进萝卜中根部的遗传改良。

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