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基于核磁共振的红甜菜根代谢组学:与发育时间和生产年份相关的植物化学特征

Red Beetroot's NMR-Based Metabolomics: Phytochemical Profile Related to Development Time and Production Year.

作者信息

Giampaoli Ottavia, Sciubba Fabio, Conta Giorgia, Capuani Giorgio, Tomassini Alberta, Giorgi Giorgio, Brasili Elisa, Aureli Walter, Miccheli Alfredo

机构信息

Department of Chemistry, Sapienza University of Rome, P.le Aldo Moro 5, 00185 Rome, Italy.

NMR-Based Metabolomics Laboratory (NMLab), Sapienza University of Rome, P.le Aldo Moro 5, 00185 Rome, Italy.

出版信息

Foods. 2021 Aug 15;10(8):1887. doi: 10.3390/foods10081887.

Abstract

Red beetroot (RB) is a well-known health-promoting food consumed worldwide. RB is commonly used in food processing and manufacturing thanks to the high content of components that can also be employed as natural coloring agents. These bioactive molecules vary their concentration depending on beetroot seasonality, harvest time and climate conditions. The first objective of this study was to evaluate the variation of the RB phytochemical profile related to the root development during three different harvest times, using an H-NMR-based metabolomic approach. Changes of carbohydrates and secondary metabolite concentrations were observed from July to September. Secondly, we compared the metabolic profiles of the final processed beet juices in three different production years to observe the effect of climate conditions on the RB's final product metabotype. A PCA analysis performed on juice extracts showed that production years 2016 and 2017 were characterized by a high content of choline and betaine, while 2018 by a high content of amino acids and dopamine and a low content of inorganic nitrates. This study suggests that the harvest time and roots growth conditions could be used to modulate the RB phytochemical profile, according to the final requirements of use, food or coloring agent source.

摘要

红甜菜根(RB)是一种在全球范围内广为人知的有益健康的食物。由于其富含可作为天然色素的成分,RB常用于食品加工和制造。这些生物活性分子的浓度会因甜菜根的季节性、收获时间和气候条件而有所不同。本研究的首要目标是使用基于氢核磁共振(H-NMR)的代谢组学方法,评估在三个不同收获时间与根部发育相关的RB植物化学特征的变化。从七月到九月观察到碳水化合物和次生代谢物浓度的变化。其次,我们比较了三个不同生产年份最终加工甜菜汁的代谢谱,以观察气候条件对RB最终产品代谢型的影响。对果汁提取物进行的主成分分析(PCA)表明,2016年和2017年生产的果汁中胆碱和甜菜碱含量较高,而2018年生产的果汁中氨基酸和多巴胺含量较高,无机硝酸盐含量较低。本研究表明,根据最终使用需求(食品或色素来源),收获时间和根部生长条件可用于调节RB的植物化学特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4a43/8393249/1ca82f127b43/foods-10-01887-g001.jpg

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