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Dynamic transcriptional profiling provides insights into tuberous root development in Rehmannia glutinosa

机译:动态转录谱分析提供了对熟地黄块状块根发育的见解

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摘要

Rehmannia glutinosa, an herb of the Scrophulariaceae family, is widely cultivated in the Northern part of China. The tuberous root has well-known medicinal properties; however, yield and quality are threatened by abiotic and biotic stresses. Understanding the molecular process of tuberous root development may help identify novel targets for its control. In the present study, we used Illumina sequencing and de novo assembly strategies to obtain a reference transcriptome that is relevant to tuberous root development. We then conducted RNA-seq quantification analysis to determine gene expression profiles of the adventitious root (AR), thickening adventitious root (TAR), and the developing tuberous root (DTR). Expression profiling identified a total of 6794 differentially expressed unigenes during root development. Bioinformatics analysis and gene expression profiling revealed changes in phenylpropanoid biosynthesis, starch and sucrose metabolism, and plant hormone biosynthesis during root development. Moreover, we identified and allocated putative functions to the genes involved in tuberous root development, including genes related to major carbohydrate metabolism, hormone metabolism, and transcription regulation. The present study provides the initial description of gene expression profiles of AR, TAR, and DTR, which facilitates identification of genes of interest. Moreover, our work provides insights into the molecular mechanisms underlying tuberous root development and may assist in the design and development of improved breeding schemes for different R. glutinosa varieties through genetic manipulation.
机译:地黄是玄参科的一种药草,在中国北方广泛种植。块根具有众所周知的药用特性。然而,非生物和生物胁迫威胁着产量和质量。了解块根发育的分子过程可能有助于确定控制它的新目标。在本研究中,我们使用Illumina测序和从头组装策略来获得与块根发育相关的参考转录组。然后,我们进行了RNA-seq定量分析,以确定不定根(AR),加厚不定根(TAR)和发育中的块茎根(DTR)的基因表达谱。表达谱分析在根发育过程中总共鉴定了6794个差异表达的单基因。生物信息学分析和基因表达谱分析表明,根发育过程中苯丙烷类生物合成,淀粉和蔗糖代谢以及植物激素生物合成发生了变化。此外,我们确定了与块根发育相关的基因的推定功能,包括与主要碳水化合物代谢,激素代谢和转录调控有关的基因。本研究提供了AR,TAR和DTR的基因表达谱的初步描述,这有助于鉴定感兴趣的基因。此外,我们的工作提供了关于块根发育的分子机制的见解,并可能通过基因操作来协助设计和开发不同的谷胱甘肽变种的改良育种方案。

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