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Antioxidant Capacity and Phenolics Content of Apricot (Prunus armeniaca L.) Kernel as a Function of Genotype

机译:杏仁抗氧化能力和酚类含量与基因型的关系

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Fourteen apricot genotypes grown under similar cultural practices in Trans-Himalayan Ladakh region were studied to find out the influence of genotype on antioxidant capacity and total phenolic content (TPC) of apricot kernel. The kernels were found to be rich in TPC ranging from 92.2 to 162.1 mg gallic acid equivalent/100 g. The free radical-scavenging activity in terms of inhibitory concentration (IC50) ranged from 43.8 to 123.4 mg/ml and ferric reducing antioxidant potential (FRAP) from 154.1 to 243.6 FeSO4.7H2O μg/ml. A variation of 1–1.7 fold in total phenolic content, 1–2.8 fold in IC50 by 2,2-diphenyl-1-picrylhydrazyl (DPPH) assay and 1–1.6 fold in ferric reducing antioxidant potential among the examined kernels underlines the important role played by genetic background for determining the phenolic content and antioxidant potential of apricot kernel. A positive significant correlation between TPC and FRAP (r = 0.671) was found. No significant correlation was found between TPC and IC50; FRAP and IC50; TPC and physical properties of kernel. Principal component analysis demonstrated that genotypic effect is more pronounced towards TPC and total antioxidant capacity (TAC) content in apricot kernel while the contribution of seed and kernel physical properties are not highly significant.
机译:研究了跨喜马拉雅拉达克地区在相似的文化习俗下生长的14种杏基因型,以了解基因型对杏籽仁抗氧化能力和总酚含量(TPC)的影响。发现籽粒富含TPC,范围为92.2至162.1 mg没食子酸当量/ 100 g。 FeSO 4 的抑制性自由基清除活性(IC 50 )范围为43.8至123.4 mg / ml,铁还原抗氧化电位(FRAP)范围为154.1至243.6 > .7H 2 Oμg/ ml。 2,2-二苯基-1-吡啶甲基肼基(DPPH)测定的总酚含量变化为1-1.7倍,IC 50 的变化为1-2.8倍,三价铁还原性抗氧化电位的变化为1-1.6倍在被检查的谷粒中,强调了遗传背景对确定杏子仁中酚含量和抗氧化能力的重要作用。发现TPC与FRAP之间存在正相关(r = 0.671)。 TPC与IC 50 之间没有显着相关性; FRAP和IC 50 ; TPC和内核的物理属性。主成分分析表明,基因型效应对杏籽仁中的TPC和总抗氧化能力(TAC)含量更为明显,而种子和籽粒物理特性的贡献不是很高。

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