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Phenolic compounds and ascorbic acid in black currant (Ribes nigrum L.)

机译:黑加仑中的酚类化合物和抗坏血酸(Ribes nigrum L.)

摘要

Black currant is an edible soft fruit crop that is now attracting increased scientific attention due to its high content of potentially beneficial phenolic compounds and ascorbic acid. Using HPLC and spectrophotometry, this thesis examined the content of phenolic compounds in buds, leaves and fruits of black currant plants grown in southern and northern Sweden. In addition, the content of ascorbic acid, soluble solids, titratable acidity and total anthocyanins were studied in the fruits. Differences due to genotype, ontogenetic stage, harvest date and location were determined.ududThe genotypes 'Ben Finlay', 'Poesia' and 'JHI 8944-13' had the highest content of several compounds in both buds and fruits. Among the different bud ontogenetic stages, dormant buds had the highest content of total phenols. In the leaves, the content of phenolic compounds generally varied depending on the position of the leaf on the shoot and on harvest date. A higher content of total phenols was recorded late in the season, except in the basal leaves.ududBlack currant fruits grown in the south had higher contents of most phenolic compounds, ascorbic acid and soluble solids than those grown in northern Sweden. Buds picked from plants grown in the north had higher content of flavan-3-ols, phenolic acids and several flavonols than buds from the south.ududIn conclusion, proper selection of genotype and location for cultivation is essential for promoting the food and health attributes of black currant. Moreover, knowledge related to influence of ontogenetic stage and harvest time on content of specific bioactive compounds in black currant could help tailor functional foods or pharmaceutical products. Black currant production could thereby be carefully planned to enhance the content of specific compounds for product optimisation.
机译:黑加仑是一种可食用的软果作物,由于其潜在有益的酚类化合物和抗坏血酸的含量高,现在正引起越来越多的科学关注。本文采用高效液相色谱法和分光光度法,研究了瑞典南部和北部生长的黑加仑植物的芽,叶和果实中酚类化合物的含量。此外,还研究了水果中抗坏血酸的含量,可溶性固形物,可滴定的酸度和总花色苷。确定了由于基因型,个体发育阶段,收获日期和位置造成的差异。 ud ud基因型'Ben Finlay','Poesia'和'JHI 8944-13'在芽和果实中的几种化合物含量最高。在芽的不同发育阶段中,休眠芽中总酚含量最高。在叶片中,酚类化合物的含量通常根据叶片在枝条上的位置和收获日期而变化。除基叶外,本季节后期记录的总酚含量较高。南部生长的黑加仑子果实中大多数酚类化合物,抗坏血酸和可溶性固形物的含量均高于瑞典北部。从北部生长的植物中挑出的芽中的黄烷-3-醇,酚酸和几种黄酮醇的含量要比南部的芽高。 ud ud最后,正确选择基因型和种植位置对于促进食物和植物的生长至关重要。黑加仑的健康属性。此外,有关个体发育阶段和收获时间对黑加仑中特定生物活性化合物含量的影响的知识可能有助于定制功能性食品或药品。因此,可以仔细计划黑醋栗的生产,以提高用于产品优化的特定化合物的含量。

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  • 作者

    Vagiri Michael Rajeev;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 en
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