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发育中的阿萨伊(Euterpe oleracea Mart.)种子提取物中的酚类成分及抗氧化特性。

Phenolic Profile and Antioxidant Properties in Extracts of Developing Açaí ( Mart.) Seeds.

作者信息

Martins Gabriel R, Mattos Mariana M G, Nascimento Fabiane Marques, Brum Felipe L, Mohana-Borges Ronaldo, Figueiredo Natália Guimarães, Neto Domingos F M, Domont Gilberto Barbosa, Nogueira Fábio César Sousa, de Paiva Campos Francisco de Assis, Sant'Ana da Silva Ayla

机构信息

Laboratório de Biocatálise (LABIC), Instituto Nacional de Tecnologia, Av. Venezuela, 82, Room 302, Rio de Janeiro, Rio de Janeiro20081-312, Brazil.

Departamento de Bioquímica, Instituto de Química, Universidade Federal do Rio de Janeiro, Av. Athos da Silveira Ramos, 149, Bloco A, Rio de Janeiro, Rio de Janeiro21941-909, Brazil.

出版信息

J Agric Food Chem. 2022 Dec 28;70(51):16218-16228. doi: 10.1021/acs.jafc.2c07028. Epub 2022 Dec 18.

Abstract

We investigated changes in the phenolic profile and antioxidant properties in the extracts of developing seeds of açaí (). Four developmental stages were evaluated, with earlier stages displaying higher antioxidant activity and polyphenols content, while mass spectrometry analysis identified procyanidins (PCs) as the major components of the extracts in all stages. B-type PCs varied from dimers to decamers, with A-type linkages in a smaller number. Extracted PCs decreased in average length from 20.5 to 10.1 along seed development. PC composition indicated that (-)-epicatechin corresponded to over 95% of extension units in all stages, while (+)-catechin presence as the starter unit increased from 42 to 78.8% during seed development. This variation was correlated to the abundance of key enzymes for PC biosynthesis during seed development. This study is the first to report PC content and composition variations during açaí seed development, which can contribute to studies on the plant's physiology and biotechnological applications.

摘要

我们研究了阿萨伊(Euterpe oleracea Mart.)发育种子提取物中酚类成分和抗氧化特性的变化。评估了四个发育阶段,早期阶段显示出较高的抗氧化活性和多酚含量,而质谱分析确定原花青素(PCs)是所有阶段提取物的主要成分。B型原花青素从二聚体到十聚体不等,A型连接较少。随着种子发育,提取的原花青素平均长度从20.5降至10.1。原花青素组成表明,(-)-表儿茶素在所有阶段均占延伸单元的95%以上,而作为起始单元的(+)-儿茶素在种子发育过程中从42%增加到78.8%。这种变化与种子发育过程中原花青素生物合成关键酶的丰度相关。本研究首次报道了阿萨伊种子发育过程中原花青素含量和组成的变化,这有助于该植物生理学和生物技术应用的研究。

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