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代谢组学揭示六种粗粮的营养多样性以及谷物高粱和甜高粱的抗氧化活性分析

Metabolomics Reveals Nutritional Diversity among Six Coarse Cereals and Antioxidant Activity Analysis of Grain Sorghum and Sweet Sorghum.

作者信息

Zhao Yao, Zhai Guowei, Li Xuetong, Tao Han, Li Linying, He Yuqing, Zhang Xueying, Wang Fulin, Hong Gaojie, Zhu Ying

机构信息

State Key Laboratory for Managing Biotic and Chemical Treats to the Quality and Safety of Agro-Products, Institute of Virology and Biotechnology, Zhejiang Academy of Agricultural Sciences, Hangzhou 310021, China.

Key Laboratory of Biotechnology in Plant Protection of Ministry of Agriculture and Rural Affairs, Key Laboratory of Biotechnology in Plant Protection of Zhejiang Province, Hangzhou 310021, China.

出版信息

Antioxidants (Basel). 2022 Oct 5;11(10):1984. doi: 10.3390/antiox11101984.

Abstract

Coarse cereals are rich in dietary fiber, B vitamins, minerals, secondary metabolites, and other bioactive components, which exert numerous health benefits. To better understand the diversity of metabolites in different coarse cereals, we performed widely targeted metabolic profiling analyses of six popular coarse cereals, millet, coix, buckwheat, quinoa, oat, and grain sorghum, of which 768 metabolites are identified. Moreover, quinoa and buckwheat showed significantly different metabolomic profiles compared with other coarse cereals. Analysis of the accumulation patterns of common nutritional metabolites among six coarse cereals, we found that the accumulation of carbohydrates follows a conserved pattern in the six coarse cereals, while those of amino acids, vitamins, flavonoids, and lipids were complementary. Furthermore, the species-specific metabolites in each coarse cereal were identified, and the neighbor-joining tree for the six coarse cereals was constructed based on the metabolome data. Since sorghum contains more species-specific metabolites and occupies a unique position on the neighbor-joining tree, the metabolite differences between grain sorghum 654 and sweet sorghum LTR108 were finally compared specifically, revealing that LTR108 contained more flavonoids and had higher antioxidant activity than 654. Our work supports an overview understanding of nutrient value in different coarse cereals, which provides the metabolomic evidence for the healthy diet. Additionally, the superior antioxidant activity of sweet sorghum provides clues for its targeted uses.

摘要

粗粮富含膳食纤维、B族维生素、矿物质、次生代谢产物及其他生物活性成分,具有诸多健康益处。为了更好地了解不同粗粮中代谢物的多样性,我们对六种常见粗粮,即小米、薏苡仁、荞麦、藜麦、燕麦和高粱进行了广泛靶向代谢组分析,共鉴定出768种代谢物。此外,藜麦和荞麦与其他粗粮相比,代谢组学特征存在显著差异。通过分析六种粗粮中常见营养代谢物的积累模式,我们发现碳水化合物在六种粗粮中的积累遵循保守模式,而氨基酸、维生素、黄酮类化合物和脂质的积累则具有互补性。此外,还鉴定了每种粗粮中的物种特异性代谢物,并基于代谢组数据构建了六种粗粮的邻接树。由于高粱含有更多的物种特异性代谢物,且在邻接树上占据独特位置,最终专门比较了粒用高粱654和甜高粱LTR108之间的代谢物差异,结果表明LTR108比654含有更多的黄酮类化合物,且抗氧化活性更高。我们的工作有助于全面了解不同粗粮的营养价值,为健康饮食提供了代谢组学证据。此外,甜高粱优异的抗氧化活性为其靶向利用提供了线索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7fac/9598553/d471a43c6bd8/antioxidants-11-01984-g001.jpg

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