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代谢组学作为研究未充分利用大豆部分的工具:寻找生物活性化合物。

Metabolomics as a Tool to Study Underused Soy Parts: In Search of Bioactive Compounds.

作者信息

Bragagnolo Felipe Sanchez, Funari Cristiano Soleo, Ibáñez Elena, Cifuentes Alejandro

机构信息

School of Agricultural Sciences, São Paulo State University (UNESP), Botucatu 18610-034, SP, Brazil.

Laboratory of Foodomics, Institute of Food Science Research (CIAL-CSIC), 28049 Madrid, Spain.

出版信息

Foods. 2021 Jun 7;10(6):1308. doi: 10.3390/foods10061308.

Abstract

The valorization of agri-food by-products is essential from both economic and sustainability perspectives. The large quantity of such materials causes problems for the environment; however, they can also generate new valuable ingredients and products which promote beneficial effects on human health. It is estimated that soybean production, the major oilseed crop worldwide, will leave about 597 million metric tons of branches, leaves, pods, and roots on the ground post-harvesting in 2020/21. An alternative for the use of soy-related by-products arises from the several bioactive compounds found in this plant. Metabolomics studies have already identified isoflavonoids, saponins, and organic and fatty acids, among other metabolites, in all soy organs. The present review aims to show the application of metabolomics for identifying high-added-value compounds in underused parts of the soy plant, listing the main bioactive metabolites identified up to now, as well as the factors affecting their production.

摘要

从经济和可持续发展的角度来看,农业食品副产品的增值至关重要。这类材料的大量存在给环境带来了问题;然而,它们也能产生新的有价值成分和产品,对人类健康产生有益影响。据估计,2020/21年度收获后,全球主要油料作物大豆的生产将在地面上留下约5.97亿吨的枝叶、豆荚和根。大豆相关副产品的一种利用途径源于该植物中发现的几种生物活性化合物。代谢组学研究已经在大豆的所有器官中鉴定出异黄酮、皂苷、有机和脂肪酸等多种代谢物。本综述旨在展示代谢组学在鉴定大豆植物未充分利用部分的高附加值化合物方面的应用,列出目前已鉴定的主要生物活性代谢物,以及影响其产生的因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c9f0/8230045/714eb4b8fe35/foods-10-01308-g001.jpg

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