巴西巴伊亚瓜拉纳(Paullinia cupana)中甲基黄嘌呤和酚类化合物的综合评估:对品种选择和副产品利用的影响

Q2 Agricultural and Biological Sciences
Claudia Alexandra Melgaço Rocha, G. M. Santana, H. Santos, Raildo Mota de Jesus, I. Lôbo
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引用次数: 0

摘要

巴西巴伊亚州是全球瓜拉纳的主要产地,瓜拉纳因其种子富含咖啡因而闻名于世。本研究旨在确定从巴伊亚州各产地采集的瓜拉纳树叶、种子和果皮中甲基黄嘌呤(可可碱、咖啡因和茶碱)和酚类化合物(儿茶素和表儿茶素)的浓度。对数据集进行了高效液相色谱分析和主成分分析(PCA)评估。在所有叶片和果皮样本中都发现了可可碱和咖啡因,其中可可碱的定量含量较高。咖啡因是种子中的主要化合物,其次是表儿茶素和儿茶素。不同产地的样本中咖啡因的平均含量没有统计学差异。根据生物活性化合物含量进行的 PCA 分析表明,瓜拿纳样本没有明显的区别。这项研究对巴伊亚瓜拉纳种植的价值评估具有重要意义,它有助于确定生物活性化合物含量较高的种植品种,并对其进行选择性克隆,以满足消费市场的需求。此外,调查还揭示了叶片和果皮作为可可碱和咖啡因提取源的潜在用途,在制药业中的应用前景广阔。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comprehensive evaluation of methylxanthines and phenolic compounds in Bahia’s guarana (Paullinia cupana), Brazil: implications for variety selection and by-product utilization
The State of Bahia, Brazil, stands as the predominant global producer of guarana, which is recognized for its seeds’ caffeine-rich composition. This study aimed to determine the concentrations of methylxanthines (theobromine, caffeine, and theophylline) and phenolic compounds (catechin and epicatechin) in guarana leaves, seeds, and pericarps collected from various producing cities in Bahia. High-performance liquid chromatography analysis was conducted, and the data set was subjected to principal component analysis (PCA) for evaluation. Theobromine and caffeine were found in all leaves and pericarps samples, where higher contents were quantified for theobromine. Caffeine was the major compound in seeds, followed by epicatechin and catechin. No statistical difference was observed for the average contents of caffeine in samples from different producing cities. PCA showed no clear guarana sample discrimination based on bioactive compound contents. This study holds substantial relevance for the valorization of guarana cultivation in Bahia, enabling the identification of cultivars harboring elevated levels of bioactive compounds, which can be selectively cloned to meet the demands of the consumer market. Furthermore, the investigation unveils the potential utilization of leaves and pericarps as sources for the extraction of theobromine and caffeine, exhibiting promising applications in the pharmaceutical industry.
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来源期刊
Food Science and Technology
Food Science and Technology 农林科学-食品科技
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审稿时长
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