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综合评估不同豌豆品种中生物活性化合物的组成。

Comprehensive compositional assessment of bioactive compounds in diverse pea accessions.

机构信息

Aquatic and Crop Research Development, National Research Council of Canada, Saskatoon, Saskatchewan S7N 0W9, Canada.

Aquatic and Crop Research Development, National Research Council of Canada, Saskatoon, Saskatchewan S7N 0W9, Canada; Biological Engineering, University of Guelph, 50 Stone Road East, Guelph Ontario N1G 2W1, Canada.

出版信息

Food Res Int. 2023 Mar;165:112455. doi: 10.1016/j.foodres.2022.112455. Epub 2023 Jan 4.

Abstract

Pea (Pisum sativum L.) is an important legume crop providing a good source of protein, vitamins, minerals and bioactive compounds with health benefits for humans. In this study, an improved method for simultaneous analysis of multiple phytoestrogens among 100 pea accessions was developed. Ipriflavone, (a synthetic isoflavone), was used as an internal standard for the semiquantitative analysis of 17 phytoestrogens including isoflavone aglycones and conjugates, allowing direct analysis of isoflavones in their naturally occurring forms. This comprehensive dataset demonstrated that the isoflavones varied greatly and some accessions tended to have high levels of multiple phytoestrogens among the 100 accessions analyzed. Isoliquiritigenin followed by glycitein were the predominant compounds detected in the accessions and showed the highest correlation with the total phytoestrogens content. Secoisolariciresinol content was consistently higher in yellow cotyledon peas than in green cotyledon peas, whereas the contents of coumestrol, genestein and secoisolariciresinol were significantly correlated with seed coat color. The total phenolics and saponins showed a wide range of variability among the accessions with higher concentrations of total phenolics observed in seeds with pigmented seed coat or yellow cotyledon seeds, suggesting the synthesis of saponins and phenolics are significantly affected by metabolic pathway genes controlling cotyledon color or seed coat color. This study profiled the variability of bioactive compounds of pea seed quality traits in diverse pea accessions and provides an immense resource for continued research, breeding and selection of genotypes for a wide range of applications.

摘要

豌豆(Pisum sativum L.)是一种重要的豆类作物,为人类提供了丰富的蛋白质、维生素、矿物质和具有健康益处的生物活性化合物。本研究建立了一种同时分析 100 份豌豆材料中多种植物雌激素的改良方法。以白藜芦醇(一种合成异黄酮)作为 17 种植物雌激素(包括异黄酮苷元和轭合物)的内标,用于半定量分析,可直接分析异黄酮的天然形式。这一综合数据集表明,异黄酮的含量差异很大,在所分析的 100 份材料中,有些材料倾向于具有多种植物雌激素的高水平。异甘草素和大豆苷元是检测到的主要化合物,与总植物雌激素含量呈最高相关性。在黄子叶豌豆中,开环异落叶松脂醇的含量始终高于绿子叶豌豆,而香豆雌酚、染料木素和开环异落叶松脂醇的含量与种皮颜色显著相关。总酚和皂苷在不同的材料中表现出广泛的变异性,有色种皮或黄子叶种子中的总酚浓度较高,这表明皂苷和酚类的合成受到控制子叶颜色或种皮颜色的代谢途径基因的显著影响。本研究分析了不同豌豆材料中种子质量特性的生物活性化合物的变异性,为进一步研究、育种和选择具有广泛应用的基因型提供了丰富的资源。

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