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Bioactive Compounds and Total Sugar Contents of Different Open-Pollinated Beetroot Genotypes Grown Organically

机译:生物活性化合物和不同开放授粉的甜菜根系的总糖含量有机种植

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摘要

The growing interest of consumers in healthy organic products has increased the attention to the organic production of beetroot. In this regard, six field experiments were conducted in 2017 and 2018 in three different locations under the specific conditions of organic agriculture, and fifteen beetroot genotypes, including one F1 hybrid as a commercial control and one breeding line, were compared regarding the content of the total dry matter, total soluble sugar, nitrate, betalain, and total phenolic compounds in order to investigate the genetic potential of new and existing open-pollinated genotypes of beetroot regarding the content of their bioactive compounds. The results of this study indicated a significant impact of genotype (p < 0.05) on all measured compounds. Furthermore, results revealed a significant influence of the interactions of location × year (p < 0.05) on the beetroot composition, and, thus, the role of environmental conditions for the formation of tested compounds. The total dry matter content (TDMC) of beetroots varied between 14.12% and 17.50%. The genotype ‘Nochowski’, which possessed the highest total soluble sugar content with 14.67 °Bx (Brix), was among the genotypes with the lowest nitrate content. On the contrary, the cylindrical-shaped genotype ‘Carillon RZ’ (Rijk Zwaan), indicated the lowest sugar content and the highest nitrate concentration. The amount of total phenolic compounds ranged between 352.46 ± 28.24 mg GAE 100 g−1 DW (milligrams of gallic acid equivalents per 100 g of dry weight) and 489.06 ± 28.24 mg GAE 100 g−1 DW for the red-colored genotypes which is correlated with the high antioxidant capacity of the investigated genotypes. Due to the specifics of the required content of bioactive compounds for various products, the selection of suitable genotypes should be aligned with the intended final utilization.
机译:消费者在健康的有机产品中越来越令人兴趣增加了对甜菜根的有机生产的关注。在这方面,在2017年和2018年,在有机农业的特定条件下进行了六种场实验,并将15个甜菜根基因型,其中包括一个F1杂交物作为商业对照和一种繁殖线进行比较。总干物质,总可溶性糖,硝酸盐,β1和总酚类化合物,以研究关于其生物活性化合物含量的甜菜根的新的和现有的开放授粉基因型的遗传潜力。该研究的结果表明基因型(P <0.05)对所有测量的化合物产生重大影响。此外,结果表明位置×年(P <0.05)对甜菜根组合物的相互作用的显着影响,因此,环境条件对形成测试化合物的作用。甜菜根的干物质含量(TDMC)在14.12%和17.50%之间变化。具有14.67°BX(BRIX)的基因型'Nochowski',其具有最高的含有14.67°BX(BRIX)的基因型,是硝酸含量最低的基因型。相反,圆柱形基因型'Carillon Rz'(RIJK Zwaan),表明糖含量最低和最高的硝酸盐浓度。总酚类化合物的量范围为352.46±28.24mg gae 100g-1 dw(每100克干重的小酸酸等当量)和用于红色基因型的489.06±28.24 mg gae 100 g-1 dw与研究基因型的高抗氧化能力相关联。由于各种产品所需的生物活性化合物所需含量的细节,应与预期的最终利用率对齐选择合适的基因型。

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