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首页> 外文期刊>Journal of natural medicines >Identification of potential genes involved in triterpenoid saponins biosynthesis in Gleditsia sinensis by transcriptome and metabolome analyses
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Identification of potential genes involved in triterpenoid saponins biosynthesis in Gleditsia sinensis by transcriptome and metabolome analyses

机译:通过转录组和代谢物分析鉴定参与Gleditsia Sinensis中的三萜皂苷生物合成的潜在基因

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Gleditsia sinensis is widely used as a medicinal plant in Asia, especially in China. Triterpenes, alkaloids, and sterols were isolated from Gleditsia species. Among them, triterpenoid saponins are very important metabolites owing to their various pharmacological activities. However, the triterpenoid saponin biosynthesis pathway has not been well characterized. In the present study, we performed de novo transcriptome assembly for 14.3Gbps of clean reads sequenced from nine tissues of G.sinensis. The results showed that 81,511 unique transcripts (unitranscripts) (47,855 unigenes) were constructed, of which 31,717 unigenes were annotated with Gene Ontology and EC numbers by Blast2GO against the NCBI-nr protein database. We also analyzed the metabolite contents in the same nine tissues by LS-MS/MS, and saponins including gleditsiosideI were found in fruit at higher levels. Many of the genes with tissue-specific expression in fruit are involved in the flavonoid biosynthesis pathway, and many of those have UDP-glucosyltransferase (UGT) activity. We constructed a saponin biosynthesis pathway and identified two key enzyme families in the triterpenoid saponin biosynthesis pathway, cytochrome P450 and UDP-glucosyltransferase, that are encoded by 37 unigenes and 77 unigenes, respectively. CYP72A, CYP716A, and CYP88D, which are known as key enzymes for saponin biosynthesis, were also identified among the P450s. Our results provide insight into the secondary metabolite biosynthesis and serve as important resources for future research and cultivation of G.sinensis.
机译:Gleditsia sinensis广泛用作亚洲的药用植物,特别是在中国。从Gleditsia物种中分离出三萜,生物碱和甾醇。其中,由于其各种药理活动,三萜皂苷是非常重要的代谢物。然而,三萜类皂苷生物合成途径并未具体表征。在本研究中,我们进行了从G.sinensis的九个组织测序的14.3Gbps的De Novo转录组组件。结果表明,构建了81,511种独特的转录物(UnitRAsscripts)(UnitRAsscripts)(47,855个unigenes),其中31,717个unigenes通过Blast2Go对NCBI-NR蛋白质数据库进行了基因本体和EC编号。我们还通过LS-MS / MS分析了相同九种组织中的代谢物含量,并且在果实中发现包括Gleditsiosiei的皂苷在更高的水果中。果实中具有组织特异性表达的许多基因涉及类黄酮生物合成途径,许多这些具有UDP-葡糖糖基转移酶(UGT)活性。我们构建了一种皂苷生物合成途径,并鉴定了三萜类皂苷生物合成途径,细胞色素P450和UDP-葡糖基转移酶中的两个关键酶系列,其分别由37个unigenes和77个unegenes编码。 CYP72A,CYP716A和CYP88D称为皂苷生物合成的关键酶,在P450中也鉴定出来。我们的结果提供了对次生代谢产物生物合成的洞察力,并作为未来研究和培养G.Sinensis的重要资源。

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