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Integrative Analysis of mRNA and miRNA Expression Profiles of the Tuberous Root Development at Seedling Stages in Turnips

机译:萝卜苗期块根发育的mRNA和miRNA表达谱的综合分析

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摘要

The tuberous root of Brassica rapa L. (turnip) is an important modified organ for nutrition storage. A better understanding of the molecular mechanisms involved in the process of tuberous root development is of great value in both economic and biological context. In this study, we analyzed the expression profiles of both mRNAs and miRNAs in tuberous roots at an early stage before cortex splitting (ES), cortex splitting stage (CSS), and secondary root thickening stage (RTS) in turnip based on high-throughput sequencing technology. A large number of differentially expressed genes (DEGs) and several differentially expressed miRNAs (DEMs) were identified. Based on the DEG analysis, we propose that metabolism is the dominant pathway in both tuberous root initiation and secondary thickening process. The plant hormone signal transduction pathway may play a predominant role in regulating tuberous root initiation, while the starch and sucrose metabolism may be more important for the secondary thickening process. These hypotheses were partially supported by sequential DEM analyses. Of all DEMs, miR156a, miR157a, and miR172a exhibited relatively high expression levels, and were differentially expressed in both tuberous root initiation and the secondary thickening process with the expression profiles negatively correlated with those of their target genes. Our results suggest that these miRNAs play important roles in tuberous root development in turnips.
机译:甘蓝型油菜(萝卜)的块茎根是重要的改良营养器官。更好地了解结节状根发育过程中涉及的分子机制,在经济和生物学方面均具有重要价值。在这项研究中,我们基于高通量分析了萝卜的皮层分裂(ES),皮层分裂阶段(CSS)和次生根加厚阶段(RTS)之前的结节状根中mRNA和miRNA的表达谱。测序技术。鉴定出大量差异表达基因(DEG)和几个差异表达miRNA(DEM)。基于DEG分析,我们认为代谢是块茎根萌生和次级增厚过程的主要途径。植物激素信号转导途径可能在调节块根的萌发中起主要作用,而淀粉和蔗糖的代谢对于二次增稠过程可能更为重要。这些假设得到了顺序DEM分析的部分支持。在所有DEM中,miR156a,miR157a和miR172a表现出相对较高的表达水平,并且在块根的起始阶段和第二次增厚过程中均差异表达,其表达谱与其靶基因的表达负相关。我们的结果表明,这些miRNA在萝卜的块根发育中起重要作用。

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