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野生稻种 Oryza brachyatha 中二萜合酶基因的特征为水稻植保素生物合成提供了进化见解。

Characterization of diterpene synthase genes in the wild rice species Oryza brachyatha provides evolutionary insight into rice phytoalexin biosynthesis.

机构信息

Faculty of Agriculture, Yamagata University, Tsuruoka, 997-8555, Japan.

Faculty of Agriculture, Yamagata University, Tsuruoka, 997-8555, Japan.

出版信息

Biochem Biophys Res Commun. 2018 Sep 10;503(3):1221-1227. doi: 10.1016/j.bbrc.2018.07.028. Epub 2018 Jul 11.

DOI:10.1016/j.bbrc.2018.07.028
PMID:30005875
Abstract

Cultivated rice (Oryza sativa; Os) produces a variety of labdane-related diterpenoids; not only phytohormone gibberellins (GAs) but also phytoalexins for defense including phytocassanes, momilactones and oryzalexins. Their carbon skeleton diterpenes are constructed from geranylgeranyl diphosphate via ent-copalyl diphosphate (ent-CDP) or its diastereomer syn-CDP. These two-step reactions are successively catalyzed by homologs of the two diterpene synthases, ent-CDP synthase (ent-CPS) and ent-kaurene synthase (KS) that are responsible for the biosynthesis of GAs; e.g. OsCPS4 and OsKSL8 that are involved in the biosynthesis of oryzalexin S, a rice phytoalexin. Oryza brachyantha (Ob) is the most distant wild rice species from Os among the Oryza genus. We previously reported that the Ob genome contains ObCPS_11g, ObKSL8-a, ObKSL8-b and ObKSL8-c for specialized metabolism at a locus similar to the OsKSL8 locus on chromosome 11. These Ob genes are closely related to OsCPS4 and OsKSL8, respectively. We herein characterize the diterpene synthase genes in Ob, using functional analyses and expression analysis. Recombinant OsKSL8 and ObKSL8-a showed the same in vitro function when syn-CDP or normal-CDP were used as substrates. Nonetheless, our results suggest that Ob produces normal-CDP-related diterpenoid phytoalexins, presumably via ObKSL8-a, while Os produces a syn-CDP-related phytoalexin, oryzalexin S, via OsKSL8. This difference must be due to the kinds of CPS that are present in each species; Os has OsCPS4 encoding syn-CPS, while Ob has ObCPS_11g encoding normal-CPS. Thus, we propose the evolutionary history underlying oryzalexin S biosynthesis: the gain of a syn-CPS was a critical event allowing the biosynthesis of oryzalexin S.

摘要

栽培稻(Oryza sativa;Os)产生多种法呢基二萜类化合物;不仅包括植物激素赤霉素(GAs),还包括防御用的植物抗毒素,如 phytocassanes、momilactones 和 oryzalexins。它们的碳骨架二萜类化合物是由牻牛儿基香叶基二磷酸通过 ent-贝壳杉烯二磷酸(ent-CDP)或其非对映异构体 syn-CDP 构建而成。这两个两步反应分别由赤霉素生物合成同源物 ent-CDP 合酶(ent-CPS)和 ent-贝壳杉烯合酶(KS)催化;例如 OsCPS4 和 OsKSL8,它们参与 oryzalexin S 的生物合成,oryzalexin S 是一种水稻植物抗毒素。Oryza brachyantha(Ob)是 Oryza 属中与 Os 亲缘关系最远的野生稻种。我们之前报道过,Ob 基因组在 11 号染色体上的 OsKSL8 基因座附近包含用于特殊代谢的 ObCPS_11g、ObKSL8-a、ObKSL8-b 和 ObKSL8-c。这些 Ob 基因分别与 OsCPS4 和 OsKSL8 密切相关。本文通过功能分析和表达分析,对 Ob 中的二萜合酶基因进行了表征。当使用 syn-CDP 或正常-CDP 作为底物时,重组 OsKSL8 和 ObKSL8-a 表现出相同的体外功能。然而,我们的结果表明,Ob 通过 ObKSL8-a 产生正常-CDP 相关的二萜植物抗毒素,而 Os 通过 OsKSL8 产生 syn-CDP 相关的植物抗毒素 oryzalexin S。这种差异一定是由于每个物种中存在的 CPS 种类不同造成的;Os 有 OsCPS4 编码 syn-CPS,而 Ob 有 ObCPS_11g 编码 normal-CPS。因此,我们提出了 oryzalexin S 生物合成的进化历史:获得 syn-CPS 是允许 oryzalexin S 生物合成的关键事件。

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