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稻属中角鲨烯环化酶的功能多样性。

Functional diversity of oxidosqualene cyclases in genus Oryza.

机构信息

Key Laboratory of Plant Molecular Physiology, Institute of Botany, Chinese Academy of Sciences, Beijing, 100093, China.

State Key Laboratory of Rice Biology and Breeding, China National Center for Rice Improvement, China National Rice Research Institute, Hangzhou, 310006, China.

出版信息

New Phytol. 2024 Dec;244(6):2430-2441. doi: 10.1111/nph.20175. Epub 2024 Oct 14.

Abstract

Triterpene skeletons, catalyzing by 2,3-oxidosqualene cyclases (OSCs), are essential for synthesis of steroids and triterpenoids. In japonica rice cultivars Zhonghua11, a total of 12 OsOSCs have been found. While the catalytic functions of OsOSC1, 3, 4, 9, and 10 remain unclear, the functions of the other OsOSCs have been well studied. In this study, we conducted a comprehensive analysis of 12 OSC genes within genus Oryza with the aid of 63 genomes from cultivated and wild rice. We found that OSC genes are relatively conserved within genus Oryza with a few exceptions. Collinearity analysis further suggested that, throughout the evolutionary history of genus Oryza, the OSC genes have not undergone significant rearrangements or losses. Further functional analysis of 5 uncharacterized OSCs revealed that OsOSC10 was a friedelin synthase, which affected the development of rice grains. Additionally, the reconstructed ancestral sequences of Oryza OSC3 and Oryza OSC9 had lupeol synthase and poaceatapetol synthase activity, respectively. The discovery of friedelin synthase in rice unlocks a new catalytic path and biological function of OsOSC10. The pan-genome analysis of OSCs within genus Oryza gives insights into the evolutionary trajectory and products diversity of Oryza OSCs.

摘要

三萜骨架由 2,3-氧化鲨烯环化酶(OSC)催化,对于甾醇和三萜类化合物的合成至关重要。在粳稻品种 Zhonghua11 中,共发现了 12 个 OsOSC。虽然 OsOSC1、3、4、9 和 10 的催化功能仍不清楚,但其他 OsOSC 的功能已得到很好的研究。在这项研究中,我们借助 63 个栽培稻和野生稻的基因组,对属内的 12 个 OSC 基因进行了全面分析。我们发现 OSC 基因在属内相对保守,但也有一些例外。共线性分析进一步表明,在属的进化历史中,OSC 基因没有经历重大的重排或丢失。对 5 个未鉴定的 OSCs 的进一步功能分析表明,OsOSC10 是一种法呢烯合酶,它影响了水稻籽粒的发育。此外,Oryza OSC3 和 Oryza OSC9 的重建祖先序列分别具有羽扇豆醇合酶和波赛塔醇合酶活性。在水稻中发现法呢烯合酶为 OsOSC10 开辟了一条新的催化途径和生物学功能。属内 OSCs 的泛基因组分析为 Oryza OSCs 的进化轨迹和产物多样性提供了深入的了解。

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