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快速分析新鲜番茄果实中的花色苷及其结构修饰。

Rapid analysis of anthocyanin and its structural modifications in fresh tomato fruit.

机构信息

Key Laboratory of Biology and Genetic Improvement of Horticultural Crops of the Ministry of Agriculture, Sino-Dutch Joint Laboratory of Horticultural Genomics, Institute of Vegetables and Flowers, Chinese Academy of Agricultural Sciences, Beijing 100081, China.

Key Laboratory of Biology and Genetic Improvement of Horticultural Crops of the Ministry of Agriculture, Sino-Dutch Joint Laboratory of Horticultural Genomics, Institute of Vegetables and Flowers, Chinese Academy of Agricultural Sciences, Beijing 100081, China.

出版信息

Food Chem. 2020 Dec 15;333:127439. doi: 10.1016/j.foodchem.2020.127439. Epub 2020 Jul 4.

Abstract

Anthocyanin is derived from a flavylium cation structure, and it promotes health in humans and functions in plants as protection against environmental stress. The rapid analysis of anthocyanin structure and content is a critical challenge for improving fruit quality. In this study, the tomato cultivar Indigo Rose, which is a popular purple cultivated tomato used for breeding, was taken as an example for anthocyanin analysis. A rapid analysis method was developed to minimize anthocyanin loss from the fresh fruit. Four new anthocyanins were discovered in the tomato, and the structures of a total of 12 anthocyanins were determined. Among these, petunidin-3-(trans-p-coumaroyl)-rutinoside-5-glucoside and malvidin-3-(trans-p-coumaroyl)-rutinoside-5-glucoside were the main anthocyanins in Indigo Rose. The structural modifications of these anthocyanins were mainly glycosylation and acylation, and there were also hydroxylation and methylation. Our findings provide new insight into the biosynthesis pathway in tomato fruit.

摘要

花色苷来源于黄烷酮阳离子结构,它促进人类健康,并在植物中发挥作用,以抵御环境胁迫。花色苷结构和含量的快速分析是提高水果品质的关键挑战。在这项研究中,以 Indigo Rose 番茄品种为例进行花色苷分析,该品种是一种用于培育的流行的紫色栽培番茄。开发了一种快速分析方法,以最大限度地减少新鲜水果中花色苷的损失。在番茄中发现了四种新的花色苷,总共确定了 12 种花色苷的结构。其中,矢车菊素-3-(反式-对香豆酰基)-芦丁糖苷-5-葡萄糖苷和飞燕草素-3-(反式-对香豆酰基)-芦丁糖苷-5-葡萄糖苷是 Indigo Rose 中的主要花色苷。这些花色苷的结构修饰主要是糖基化和酰化,还有羟基化和甲基化。我们的发现为番茄果实的生物合成途径提供了新的见解。

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