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Comparative transcriptome analysis of rhizome nodes and internodes in Panax. japonicus var. major reveals candidate genes involved in the biosynthesis of triterpenoid saponins

机译:韧皮术中根茎节点与尤基的比较转录组分析。 japonicus var。 主要揭示参与三萜皂苷生物合成的候选基因

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摘要

The rhizome of P. japonicus var. major, one of the important herbs in Traditional Chinese medicine (TCM), has been used as tonic and hemostatic drugs in Tujia and Miao ethnic groups of China for thousand years. In this study, comparative metabolite and transcriptome analysis of rhizome nodes and internodes of wild P. japonicus var. major was performed to reveal their different roles in the biosynthesis of triterpene saponins. The results showed that the node was the crucial section for the synthesis of ginsenosides in the rhizome. The content of oleanane-type ginsenosides in the node was much higher than those in the internode. Most isoprenoid biosynthesis-related genes were highly expressed in the node. And, candidate UDP-glycosyltransferase (UGT) genes were also found to be differentially expressed between node and internode. Our study will provide a better understanding of the metabolism of ginsenosides in the rhizome of P. japonicus var. major.
机译:粳稻的根茎。 主要是中医(TCM)中的重要草药之一,已被用作千年土家市和苗族群体的滋补和止血药。 在本研究中,对比较代谢物和转录物组的根茎节点和野生P.Paponicus var的细节。 突出的是揭示其在三萜皂苷的生物合成中的不同作用。 结果表明,该节点是在根茎中合成人参皂苷的关键部分。 节点中的烯烃型人参皂苷的含量远高于节间的含量。 大多数异戊二烯生物合成相关基因在节点中高度表达。 并且,还发现候选UDP-糖基转移酶(UGT)基因在节点和节结之间差异表达。 我们的研究将更好地了解粳稻var的根茎中人参皂苷的新陈代谢。 重大的。

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