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首页> 外文期刊>The Journal of Horticultural Science & Biotechnology >Biochemical diversity in wild and cultivated pomegranate (Punica granatum L.) in Pakistan
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Biochemical diversity in wild and cultivated pomegranate (Punica granatum L.) in Pakistan

机译:巴基斯坦野生栽培石榴的生化多样性(Punica Granatum L.)

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摘要

The present study was conducted to screen out elite pomegranates through determination of biochemical diversity in wild and cultivated genotypes for a breeding program and for fresh/processed use in industry. The results showed high morphological diversity in accessions of wild pomegranate fruits as compared to cultivated genotypes. The first six principal components covered 80.75 and 75.49% diversity in 53 wild and 62 cultivated pomegranate genotypes, respectively. High values of the coefficient of variance (10.78-18.62%), and a high range of minimum to maximum values of total soluble solids, titratable acidity, ascorbic acid content, total soluble sugars, and total phenolic content (0.10-1.25, 5.88-29.96, 9.69-19.85 and 175.05-595.42), respectively, were recorded in the studied genotypes. Ascorbic acid content had a strong correlation with antioxidant activity (0.952%), super dismutase oxides (0.94%), catalase (0.921%), and titratable acidity (0.91%). Peroxides had a strong correlation (0.88%) with catalase, and 0.81% each with super dismutase oxides and antioxidant activity. Wild and cultivated pomegranates were clustered successfully in separate groups, based on biochemical traits. A variety improvement program and selection of high-quality pomegranate genotypes could help to reduce pomegranate-related malnutrition issues in the human diet.
机译:通过测定野生和培养基因型的生化多样性,进行本研究以筛选精英石榴,用于培育方案的培养基因型,并在工业中进行新鲜/加工使用。结果表明,与栽培基因型相比,野生石榴果实的脱盐性高的形态多样性。前六个主要成分分别涵盖了80.75和75.49%的多样性分别为53次野生和62种栽培的石榴基因型。差异系数的高值(10.78-18.62%),以及总可溶性固体的最大值,可滴定酸度,抗坏血酸含量,总可溶性糖和总酚类含量的最小值(0.10-1.25,5.88-分别在研究的基因型中记录29.96,9.69-19.85和175.05-595.42)。抗坏血酸含量与抗氧化活性(0.952%),超歧化酶氧化物(0.94%),过氧化氢酶(0.921%)和可滴定酸度(0.91%)具有强的相关性。过氧化物具有强的相关(0.88%)的过氧化氢酶,每种具有超级歧化酶氧化物和抗氧化活性的0.81%。基于生化性状,在单独的群体中成功聚集野生和栽培的石榴。各种改进计划和精选优质石榴基因型可以有助于减少人类饮食中的石榴相关的营养不良问题。

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