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Characterisation of the Polyphenol Content in the Kiwifruit (Actinidia deliciosa) Exocarp for the Calibration of a Fruit-sorting Optical Sensor

机译:猕猴桃(猕猴桃)外果皮中多酚含量的表征,用于水果分选光学传感器的校准

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摘要

Introduction: Kiwifruit contains high amounts of anti-oxidants beneficial to health. Its quality is influenced by ripening time, genotype, cultivation techniques, climate and storage conditions after harvest. Objective: The aim of the present study was to characterise the phenolic content by HPLC methods and to evaluate the performance of a portable optical sensor (Multiplex 3), for in vivo non-destructive phenolic compound assessment in kiwifruits. Methods: Kiwifruits peel extracts were characterised by reverse-phase (RP) HPLC with diode-array detector (DAD) and electrospray ionisation (ESI) with MS using the Zorbax SB-Aq. column from Agilent. The fluorimetric sensor method is based on the screening of fruit chlorophyll fluorescence excitation and allows the UV absorbance of intact fruit skin to be measured. The flavonol index, FLAV, was calculated as log(FRFR/FRFUV), where FRFR and FRFUV are the chlorophyll fluorescence excited with red and UV light. Results: Hydroxycinnamic acids, procyanidins, and quercetin glycosides were the main polyphenol classes detected by HPLC-DAD-ESI/MS in the kiwifruit skin. A good linear regression (R2=0.88) was found between the fluorimetric sensor FLAV index and flavonol chromatographic analysis of the fruits. The FLAV index was able to detect the higher content of flavonols in sun-exposed fruits with respect to mid-shaded and shaded ones in accordance with the destructive analysis. Conclusion: The fluorimetric sensor represents a rapid and non-invasive tool to: (i) monitor the flavonol accumulation in kiwifruit and to assess its quality concerning the healthy anti-oxidant properties; (ii) evaluate the effect of environmental and agronomical factors related to the fruit quality; and (iii) select fruits with the largest flavonol content, and consequently less susceptible to pathogen attack, in order to improve their storage durability.
机译:简介:奇异果含有大量对健康有益的抗氧化剂。其质量受成熟时间,基因型,栽培技术,收获后气候和储藏条件的影响。目的:本研究的目的是通过HPLC方法表征酚含量,并评估便携式光学传感器(Multiplex 3)的性能,以用于猕猴桃体内无损酚类化合物的评估。方法:采用Zorbax SB-Aq,采用二极管阵列检测器(DAD)进行反相(RP)HPLC和MS进行电喷雾电离(ESI),对猕猴桃果皮提取物进行表征。安捷伦色谱柱。荧光传感器方法基于对水果叶绿素荧光激发的筛选,可以测量完整果皮的紫外线吸收率。黄酮醇指数FLAV计算为log(FRFR / FRFUV),其中FRFR和FRFUV是用红色和紫外线激发的叶绿素荧光。结果:羟基肉桂酸,原花青素和槲皮素苷是通过HPLC-DAD-ESI / MS检测到的奇异果皮中的主要多酚类。在荧光传感器的FLAV指数和水果的黄酮醇色谱分析之间发现良好的线性回归(R2 = 0.88)。根据破坏性分析,相对于中间阴影和阴影阴影,FLAV指数能够检测到暴露于阳光的水果中较高的黄酮醇含量。结论:荧光传感器是一种快速,无创的​​工具,可以:(i)监测猕猴桃中的黄酮醇积累,并评估其与健康抗氧化特性有关的质量; (ii)评估环境和农学因素对果实品质的影响; (iii)选择黄酮醇含量最大,因此对病原体侵袭不那么敏感的水果,以提高其储存耐久性。

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