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两种调节睡茄中睡茄内酯生物合成和防御的糖基转移酶的特性分析。

Characterization of two glycosyltransferases that modulate withanolide biosynthesis and defense in Withania somnifera.

作者信息

Anjali P, Narayanan Ananth Krishna, Parihar Durgesh, Patil Anusha, Nagegowda Dinesh A

机构信息

Molecular Plant Biology and Biotechnology Lab, CSIR-Central Institute of Medicinal and Aromatic Plants, Research Centre, Bengaluru, 560065, India.

Academy of Scientific and Innovative Research (AcSIR), Ghaziabad, 201002, India.

出版信息

Mol Biol Rep. 2025 Jul 5;52(1):675. doi: 10.1007/s11033-025-10743-5.

Abstract

BACKGROUND

The medicinal properties of Ashwagandha (Withania somnifera) are attributed to the presence of triterpenoid withanolides and their glycosylated forms, withanosides. Withanosides are proposed to be formed from withanolides by the action of glycosyltransferases (GTs).

METHODS AND RESULTS

Two genes encoding GTs (WsGT4 and WsGT6) from W. somnifera were identified and characterized using Escherichia coli expressed recombinant proteins and in-planta studies. Biochemical assays with recombinant proteins showed that WsGT4 catalyzed product formation using withanolide A, withanolide B, withanone, and 12-deoxywithastramonolide as substrates and UDP-glucose serving as the glucose donor. While, WsGT6 catalyzed the product formation only with withaferin A as a substrate employing either UDP-glucose or UDP-galactose as sugar donors. Quantitative real-time analysis showed that transcripts of WsGT4 and WsGT6 were induced in response to methyl jasmonate treatment and prominent in leaves as compared to other tissues. Modulating the expression of WsGT4 and WsGT6 by virus-induced gene silencing (VIGS) and transient overexpression significantly affected the levels of withanolides and withanosides in the leaves. Furthermore, silencing either WsGT4 or WsGT6 in W. somnifera reduced the tolerance to Pseudomonas syringae DC3000 growth, while their overexpression enhanced the tolerance to the bacterium.

CONCLUSIONS

Our results indicate the role of WsGT4 and WsGT6 in withanoside biosynthesis and in defense against a bacterial pathogen in W. somnifera. These GTs could be utilized for targeted modulation of withanolides in cell cultures or at the whole-plant level and for enhancing tolerance against bacterial pathogens and improving the yield of withanosides.

摘要

背景

南非醉茄(Withania somnifera)的药用特性归因于三萜类睡茄内酯及其糖基化形式——睡茄苷的存在。据推测,睡茄苷是由糖基转移酶(GTs)作用于睡茄内酯而形成的。

方法与结果

利用大肠杆菌表达的重组蛋白和植物体内研究,鉴定并表征了来自南非醉茄的两个编码GTs的基因(WsGT4和WsGT6)。对重组蛋白进行的生化分析表明,WsGT4以睡茄内酯A、睡茄内酯B、睡茄酮和12-脱氧睡茄内酯为底物,以UDP-葡萄糖作为葡萄糖供体催化产物形成。而WsGT6仅以沃替西汀A为底物,以UDP-葡萄糖或UDP-半乳糖作为糖供体催化产物形成。定量实时分析表明,WsGT4和WsGT6的转录本在茉莉酸甲酯处理后被诱导,与其他组织相比,在叶片中更为显著。通过病毒诱导基因沉默(VIGS)和瞬时过表达来调节WsGT4和WsGT6的表达,显著影响了叶片中睡茄内酯和睡茄苷的水平。此外,在南非醉茄中沉默WsGT4或WsGT6会降低对丁香假单胞菌DC3000生长的耐受性,而它们的过表达则增强了对该细菌的耐受性。

结论

我们的结果表明WsGT4和WsGT6在南非醉茄中睡茄苷生物合成以及抵御细菌病原体方面的作用。这些GTs可用于在细胞培养或全株水平上对睡茄内酯进行靶向调控,以及增强对细菌病原体的耐受性和提高睡茄苷的产量。

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