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整合的非靶向和靶向代谢组学分析揭示了纳米硒和香菇多糖联合应用抑制木质素形成和优化豌豆芽品质的机制。

Integrated non-targeted and targeted metabolomics analysis reveals the mechanism of inhibiting lignification and optimizing the quality of pea sprouts by combined application of nano-selenium and lentinans.

机构信息

Innovation Center of Pesticide Research, Department of Applied Chemistry, College of Science, China Agricultural University, Beijing, China.

Key Laboratory of Green Prevention and Control of Tropical Plant Diseases and Pests, Ministry of Education, College of Plant Protection, Hainan University, Haikou, China.

出版信息

J Sci Food Agric. 2023 Aug 15;103(10):5096-5107. doi: 10.1002/jsfa.12579. Epub 2023 May 5.

Abstract

BACKGROUND

Lignification causes a detrimental impact on the quality of edible sprouts. However, the mechanism of inhibition of lignification of edible sprouts by nano-selenium and lentinans remains unclear.

RESULTS

To reveal the mechanism of lignification regulation of sprouts by nano-selenium and lentinans, this study investigated the changes in antioxidant indicators, phytohormones, polyphenols, and metabolites in the lignin biosynthesis in pea sprouts following sprays of nano-selenium or/and lentinans twice. There was an overall increase in the aforementioned indices following treatment. In particular, the combined application of 5 mg L nano-selenium and 20 mg L lentinans was more effective than their individual applications in enhancing peroxidase, catalase, DPPH free-radical scavenging rate, luteolin, and sinapic acid, as well as inhibiting malondialdehyde generation and lignin accumulation. Combined with the results from correlation analysis, nano-selenium and lentinans may inhibit lignification by enhancing antioxidant systems, inducing phytohormone-mediated signaling, and enriching precursor metabolites (caffeyl alcohol, sinapyl alcohol, 4-coumaryl alcohol). In terms of the results of non-targeted metabolomics, the combined application of 5 mg L nano-selenium and 20 mg L lentinans mainly affected biosynthesis of plant secondary metabolites, biosynthesis of phenylpropanoids, phenylpropanoid biosynthesis, arginine and proline metabolism, and linoleic acid metabolism pathways, which supported and complemented results from targeted screenings.

CONCLUSION

Overall, the combined sprays of nano-selenium and lentinans showed synergistic effects in delaying lignification and optimizing the quality of pea sprouts. This study provides a novel and practicable technology for delaying lignification in the cultivation of edible sprouts. © 2023 Society of Chemical Industry.

摘要

背景

木质素的形成会对食用芽菜的品质造成不利影响。然而,纳米硒和香菇多糖抑制食用芽菜木质素形成的机制尚不清楚。

结果

为了揭示纳米硒和香菇多糖对芽菜木质素调控的机制,本研究通过对豌豆芽进行两次喷洒纳米硒和/或香菇多糖,研究了抗氧化指标、植物激素、多酚和木质素生物合成代谢物的变化。处理后,上述各项指标均整体升高。特别是,5mg/L 纳米硒和 20mg/L 香菇多糖的联合应用比单独应用更能有效提高过氧化物酶、过氧化氢酶、DPPH 自由基清除率、木樨草素和阿魏酸,并抑制丙二醛的产生和木质素的积累。结合相关分析结果,纳米硒和香菇多糖可能通过增强抗氧化系统、诱导植物激素介导的信号转导和丰富前体代谢物(咖啡醇、松柏醇、4-香豆醇)来抑制木质素的形成。从非靶向代谢组学的结果来看,5mg/L 纳米硒和 20mg/L 香菇多糖的联合应用主要影响植物次生代谢物的生物合成、苯丙素类生物合成、苯丙素类生物合成、精氨酸和脯氨酸代谢以及亚油酸代谢途径,这与靶向筛选的结果相支持和补充。

结论

总体而言,纳米硒和香菇多糖的联合喷雾在延缓木质素形成和优化豌豆芽品质方面表现出协同作用。本研究为食用芽菜的培育提供了一种新颖且实用的延缓木质素形成的技术。 © 2023 化学工业协会。

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