首页> 外文期刊>Journal of natural medicines >De novo transcriptome assembly and characterization of nine tissues of Lonicera japonica to identify potential candidate genes involved in chlorogenic acid, luteolosides, and secoiridoid biosynthesis pathways
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De novo transcriptome assembly and characterization of nine tissues of Lonicera japonica to identify potential candidate genes involved in chlorogenic acid, luteolosides, and secoiridoid biosynthesis pathways

机译:德诺科转录组组装和氮素粳稻九组织的表征,以鉴定潜在的候选基因,涉及起绿酸,旋氏醇和塞倍体化生物合成途径的潜在候选基因

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Lonicera japonica is one of the most important medicinal plants with applications in traditional Chinese and Japanese medicine for thousands of years. Extensive studies on the constituents of L. japonica extracts have revealed an accumulation of pharmaceutically active metabolite classes, such as chlorogenic acid, luteolin and other flavonoids, and secoiridoids, which impart characteristic medicinal properties. Despite being a rich source of pharmaceutically active metabolites, little is known about the biosynthetic enzymes involved, and their expression profile across different tissues of L. japonica. In this study, we performed de novo transcriptome assembly for L. japonica, representing transcripts from nine different tissues. A total of 22 Gbps clean RNA-seq reads from nine tissues of L. japonica were used, resulting in 243,185 unigenes, with 99,938 unigenes annotated based on a homology search using blastx against the NCBI-nr protein database. Unsupervised principal component analysis and correlation studies using transcript expression data from all nine tissues of L. japonica showed relationships between tissues, explaining their association at different developmental stages. Homologs for all genes associated with chlorogenic acid, luteolin, and secoiridoid biosynthesis pathways were identified in the L. japonica transcriptome assembly. Expression of unigenes associated with chlorogenic acid was enriched in stems and leaf-2, unigenes from luteolin were enriched in stems and flowers, while unigenes from secoiridoid metabolic pathways were enriched in leaf-1 and shoot apex. Our results showed that different tissues of L. japonica are enriched with sets of unigenes associated with specific pharmaceutically important metabolic pathways and, therefore, possess unique medicinal properties. The present study will serve as a resource for future attempts for functional characterization of enzyme coding genes within key metabolic processes.
机译:Lonicera japonica是数千年的中文和日本医学中最重要的药用植物之一。关于L.粳稻提取物的成分的广泛研究表明,药学活性代谢物类别的积累,例如绿原酸,叶氏菌素和其他类黄酮,以及释放特征性药物性质。尽管是具有丰富的药物活性代谢物来源,但对于所涉及的生物合成酶而言,其表达谱具有很少,以及粳稻不同组织的表达谱。在这项研究中,我们对L. japonica进行了De Novo转录组组件,其代表来自九个不同组织的转录物。使用总共22种GBPS清洁RNA-SEQ从L. japonica的九个组织读数,导致243,185个unigenes,基于使用Blastx对NCBI-NR蛋白质数据库的同源性搜索注释了99,938个undigenes。无监督的主要成分分析和相关性研究使用来自L. japonica的所有九个组织的转录表达数据显示组织之间的关系,在不同发育阶段解释它们的关联。在L. japonica转录组组件中鉴定了与绿原酸,叶黄素和secoiridoid生物合成途径相关的所有基因的同源物。富含茎和叶片的植物中富含茎和叶片的植物的表达,从茎和花中富集,富含茎和花,而来自Secoiridoid代谢途径的未成语在叶1和射击顶点中富集。我们的研究结果表明,L.粳稻的不同组织富含与特异性药学上重要的代谢途径相关的杂种,因此具有独特的药用性能。本研究将作为未来试图在关键代谢过程中进行酶编码基因功能表征的资源。

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