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首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >Transcriptome analysis and functional characterization of oxidosqualene cyclases of the arjuna triterpene saponin pathway
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Transcriptome analysis and functional characterization of oxidosqualene cyclases of the arjuna triterpene saponin pathway

机译:Arjuna Triterpene Saponin途径氧化喹啉环酶的转录组分析及功能表征

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Arjuna (Terminalia arjuna) tree has been popular in Indian traditional medicine to treat cardiovascular ailments. The tree accumulates bioactive triterpene glycosides (saponins) and aglycones (sapogenins), in a tissue-preferential manner. Oleanane triterpenes/saponins (derived from beta-amyrin) with potential cardioprotective function predominantly accumulate in the bark. However, arjuna triterpene saponin pathway enzymes remain to be identified and biochemically characterized. Here, we employed a combined transcriptomics, metabolomics and biochemical approach to functionally define a suite of oxidosqualene cyclases (OSCs) that catalyzed key reactions towards triterpene scaffold diversification. De novo assembly of 131 millions Illumina NextSeq500 sequencing reads obtained from leaf and stem bark samples led to a total of 156,650 reference transcripts. Four distinct OSCs (TaOSC1-4) with 54-71 % sequence identities were identified and functionally characterized. TaOSC1, TaOSC3 and TaOSC4 were biochemically characterized as beta-amyrin synthase, cycloartenol synthase and lupeol synthase, respectively. However, TaOSC2 was found to be a multifunctional OSC producing both alpha-amyrin and beta-amyrin, but showed a preference for alpha-amyrin product. Both TaOSC1 and TaOSC2 produced alpha-amyrin, the direct precursor for oleanane triterpene/saponin biosynthesis; but, TaOSC1 transcript expressed preferentially in bark, suggesting a major role of TaOSC1 in the biosynthesis of oleanane triterpenes/saponins in bark.
机译:Arjuna(Arrjuna)树在印度传统医学中受到欢迎,以治疗心血管疾病。树木以组织优先方式累积生物活性三萜糖苷(Saponins)和糖基(SapogenIns)。烯烃三萜烯/皂苷(衍生自β-胺),具有潜在的心脏保护功能主要积聚在树皮中。然而,Arjuna Triterpene Saponin途径酶仍然鉴定和生物化学表征。在这里,我们使用组合的转录组,代谢组合和生化方法来在功能上定义一套氧化喹啉环酶(OSC),其催化对Triterpene支架多样化的关键反应。从叶子和茎树皮样品获得的131百万illumina leverseq500测序读数的everumina leverseq500的测序读数导致了156,650个参考转录物。识别出具有54-71%的序列同一性的四个不同的OSC(Taosc1-4)。 TaOSC1,TaOSC3和TaOSC4分别生物化学表征为β-氨基氨基合酶,环烯醇合酶和卢普醇合成酶。然而,发现TAOSC2是一种多功能OSC,产生α-氨纶和β-氨基,但表明α-炔烃产物的偏好。 TaOSC1和TaOSC2都产生了α-氨纶,烯烃三萜/皂苷生物合成的直接前体;但是,在树皮中优先表达的taosc1成绩单,表明Taosc1在树皮中烯烃三萜/皂苷的生物合成中的主要作用。

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