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酶促转化在茄科植物中产生了立体发散性生物碱。

Enzymatic twists evolved stereo-divergent alkaloids in the Solanaceae family.

作者信息

Jozwiak Adam, Almaria Michaela, Cai Jianghua, Panda Sayantan, Price Hadas, Vunsh Ron, Pliner Margarita, Meir Sagit, Rogachev Ilana, Aharoni Asaph

机构信息

University of California, Riverside, CA, USA.

Weizmann Institute of Science, Rehovot, Israel.

出版信息

Nat Commun. 2025 Jun 18;16(1):5341. doi: 10.1038/s41467-025-59290-4.

Abstract

Steroidal alkaloids play a crucial role in plant defense and exhibit distinct stereochemistry at C25, forming either the tomato-type (25S) or eggplant-type (25R) isomers. Here, we uncover the molecular mechanisms shaping this stereochemical diversity. Phylogenetic analysis of GLYCOALKALOID METABOLISM 8 (GAME8) cytochrome P450 hydroxylases across the Solanaceae family revealed two distinct clades producing either 25S or 25R isomers. Ancestral GAME8 likely favored 25R, with gene duplications giving rise to 25S-producing enzymes in more recent Solanum species. In S. nigrum and S. dulcamara, multiple GAME8 copies generate mixed isomeric profiles. Notably, in wild S. cheesmaniae from the Galápagos, mutations in GAME8 have driven a shift from 25S back to the ancestral 25R, suggesting reverse evolution. Our findings highlight how GAME8 evolution has shaped alkaloid diversity in the genus Solanum, demonstrating a complex interplay between enzyme function, genetic variation, and evolutionary adaptation.

摘要

甾体生物碱在植物防御中起着关键作用,并且在C25处表现出独特的立体化学结构,形成番茄型(25S)或茄子型(25R)异构体。在此,我们揭示了形成这种立体化学多样性的分子机制。对茄科植物中糖生物碱代谢8(GAME8)细胞色素P450羟化酶的系统发育分析显示,有两个不同的进化枝分别产生25S或25R异构体。祖先的GAME8可能倾向于25R,基因复制在较新的茄属物种中产生了产生25S的酶。在龙葵和欧白英中,多个GAME8拷贝产生混合的异构体谱。值得注意的是,在来自加拉帕戈斯群岛的野生智利茄中,GAME8的突变导致从25S转变回祖先的25R,这表明了反向进化。我们的研究结果突出了GAME8的进化如何塑造了茄属植物中的生物碱多样性,展示了酶功能、遗传变异和进化适应之间的复杂相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8cd0/12177067/fda59141d112/41467_2025_59290_Fig1_HTML.jpg

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