首页> 外文期刊>Frontiers in Chemistry >Antioxidant Phytochemicals in Fresh Produce: Exploitation of Genotype Variation and Advancements in Analytical Protocols
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Antioxidant Phytochemicals in Fresh Produce: Exploitation of Genotype Variation and Advancements in Analytical Protocols

机译:新鲜农产品中的抗氧化剂植物化学物质:基因型变异的开发和分析规程的进展

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Horticultural commodities (fruit and vegetables) are the major dietary source of several bioactive compounds of high nutraceutical value for humans, including polyphenols, carotenoids and vitamins. The aim of the current review was dual. Firstly, towards the eventual enhancement of horticultural crops with bio-functional compounds, the natural genetic variation in antioxidants found in different species and cultivar/genotypes is underlined. Notably, some landraces and/or traditional cultivars have been characterized by substantially higher phytochemical content, i.e. small tomato of Santorini island (cv. ‘Tomataki Santorinis’) possesses appreciably high amounts of ascorbic acid. The systematic screening of key bioactive compounds in a wide range of germplasm for the identification of promising genotypes and the restoration of key gene fractions from wild species and landraces may help in reducing the loss of agro-biodiversity, creating a healthier ‘gene pool’ as the basis of future adaptation. Towards this direction, large scale comparative studies in different cultivars/genotypes of a given species provide useful insights about the ones of higher nutritional value. Secondly, the advancements in the employment of analytical techniques to determine the antioxidant potential through a convenient, easy and fast way are outlined. Such analytical techniques include electron paramagnetic resonance (EPR) and infrared (IR) spectroscopy, electrochemical and chemometric methods, flow injection analysis (FIA), optical sensors and high resolution screening (HRS). Taking into consideration that fruits and vegetables are complex mixtures of water- and lipid-soluble antioxidants, the exploitation of chemometrics to develop “omics” platforms (i.e. metabolomics, foodomics) is a promising tool for researchers to decode and/or predict antioxidant activity of fresh produce. For industry, the use of cheap and rapid optical sensors and IR spectroscopy is recommended to estimate the antioxidant activity, hence legislation does not allow its correlation with health claims.
机译:园艺商品(水果和蔬菜)是几种对人类具有高营养价值的生物活性化合物(包括多酚,类胡萝卜素和维生素)的主要饮食来源。本次审查的目的是双重的。首先,为了最终使园艺作物具有生物功能化合物,强调了在不同物种和品种/基因型中发现的抗氧化剂的自然遗传变异。值得注意的是,某些地方品种和/或传统品种的植物化学成分含量高得多,即圣托里尼岛的小番茄(“ Tomataki Santorinis”)含有大量的抗坏血酸。系统地筛选各种种质中的关键生物活性化合物,以鉴定有前途的基因型,并从野生物种和地方品种中恢复关键基因部分,可能有助于减少农业生物多样性的丧失,从而创造一个更健康的“基因库”,未来适应的基础。朝着这个方向,对给定物种的不同品种/基因型的大规模比较研究为具有较高营养价值的物种提供了有用的见识。其次,概述了使用分析技术通过方便,便捷和快速的方法确定抗氧化剂潜力的进展。此类分析技术包括电子顺磁共振(EPR)和红外(IR)光谱,电化学和化学计量学方法,流动注射分析(FIA),光学传感器和高分辨率筛选(HRS)。考虑到水果和蔬菜是水溶性和脂溶性抗氧化剂的复杂混合物,利用化学计量学开发“组学”平台(即代谢组学,食品组学)对于研究人员解码和/或预测维生素的抗氧化活性是一种很有前途的工具。新鲜农产品。对于工业,建议使用廉价,快速的光学传感器和红外光谱来估计抗氧化剂的活性,因此法律不允许将其与健康声明相关联。

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