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鉴定与功能表征栀子中的三个环烯醚萜合酶。

Identification and functional characterization of three iridoid synthases in Gardenia jasminoides.

机构信息

Research Center of Chinese Herbal Resource Science and Engineering, Guangzhou University of Chinese Medicine, Guangzhou, People's Republic of China.

Key Laboratory of Chinese Medicinal Resource From Lingnan, Ministry of Education, Guangzhou University of Chinese Medicine, Guangzhou, People's Republic of China.

出版信息

Planta. 2022 Feb 3;255(3):58. doi: 10.1007/s00425-022-03824-3.

Abstract

The discovery of three iridoid synthases (GjISY, GjISY2 and GjISY4) from Gardenia jasminoides and their functional characterization increase the understanding of iridoid scaffold/iridoid glycoside biosynthesis in iridoid-producing plants. Iridoids are a class of noncanonical monoterpenes that are found naturally in the plant kingdom mostly as glycosides. Over 40 iridoid glycosides (e.g., geniposide, gardenoside and shanzhiside) have been isolated from Gardenia jasminoides. They have multiple pharmacological properties and health-promoting effects. However, their biosynthetic pathway is poorly understood, and the iridoid synthase (ISY) responsible for the cyclization of the core scaffold remains unclear. In this study, three homologs of ISYs from G. jasminoides (GjISY, GjISY2 and GjISY4) were identified on the basis of transcriptomic data and functionally characterized. The genomic structure and intron-exon arrangement revealed that all three ISYs contained an intron. Biochemical assays indicated that all three recombinant enzymes reduced 8-oxogeranial to nepetalactol and its open forms (iridodials) as the products of the classical CrISY (Catharanthus roseus). In addition, all three enzymes reduced progesterone to 5-β-prognane-3,20-dione. However, only GjISY2 and GjISY4 reduced 2-cyclohexen-1-one to cyclohexanone. Overall, the GjISY2 expression levels in the flowers and fruits were similar to the GjISY and GjISY4 expression levels. By contrast, the GjISY2 expression levels in the upper and lower leaves were substantially higher than the GjISY and GjISY4 expression levels. Among the three, GjISY2 exhibited the highest catalytic efficiency for 8-oxogeranial. GjISY2 might be the major contributor to iridoid biosynthesis in G. jasminoides. Collectively, our results advance the understanding of iridoid scaffold/iridoid glycoside biosynthesis in G. jasminoides and provide a potential target for metabolic engineering and breeding.

摘要

从栀子中发现了三种环烯醚萜合酶(GjISY、GjISY2 和 GjISY4),并对其功能进行了表征,这增加了对产生环烯醚萜的植物中环烯醚萜支架/环烯醚萜糖苷生物合成的理解。环烯醚萜是一类非典型的单萜类化合物,在植物界中主要以糖苷的形式天然存在。从栀子中分离出了 40 多种环烯醚萜糖苷(如京尼平苷、栀子苷和山栀苷)。它们具有多种药理作用和促进健康的功效。然而,它们的生物合成途径知之甚少,负责核心支架环化的环烯醚萜合酶(ISY)也不清楚。在这项研究中,根据转录组数据,从栀子中鉴定出了三种 ISY 同源物(GjISY、GjISY2 和 GjISY4),并对其功能进行了表征。基因组结构和内含子-外显子排列表明,这三种 ISY 都含有一个内含子。生化分析表明,所有三种重组酶均将 8-氧香叶醛还原为新橙皮醇及其开环形式(iridodials),作为经典 CrISY(长春花)的产物。此外,所有三种酶均将孕酮还原为 5-β-孕烷-3,20-二酮。然而,只有 GjISY2 和 GjISY4 将 2-环己烯-1-酮还原为环己酮。总的来说,GjISY2 在花和果实中的表达水平与 GjISY 和 GjISY4 的表达水平相似。相比之下,GjISY2 在上下叶中的表达水平远高于 GjISY 和 GjISY4。在这三种酶中,GjISY2 对 8-氧香叶醛的催化效率最高。GjISY2 可能是栀子中环烯醚萜生物合成的主要贡献者。总的来说,我们的结果提高了对栀子中环烯醚萜支架/环烯醚萜糖苷生物合成的理解,并为代谢工程和育种提供了一个潜在的目标。

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