Genotype Variation of Polyphenol Content and Antioxidant Activity of Artemisia balchanorum Krasch. × Artemisia taurica Willd

O. Vergun, L. Svydenko, O. Grygorieva, P. Hauptvogel, J. Brindza
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Abstract

Abstract The results of seasonal variation of total polyphenols (TPC), flavonoids (TFC) and phenolic acid (TPAC) accumulation and antioxidant activity of Artemisia balchanorum Krasch. × Artemisia taurica Willd. genotypes from the Kherson Oblast of Ukraine represented in this study. The total polyphenol content was identified by the Folin-Ciocalteu method and ranged from 20.51 to 132.52 mg GAE/g (gallic acid equivalent). The flavonoid content conducted with aluminum chloride reagent ranged from 8.16 to 70.77 mg QE/g (quercetin equivalent) and phenolic acid content determined with Arnova reagent ranged from 6.26 to 38.67 mg CAE/g (caffeic acid equivalent) depending on genotype and stage of growth. The antioxidant activity of investigated genotypes determined by the DPPH (2.2-diphenyl-1-picrylhydrazyl) method (FRSA) varied from 4.68 to 10.38 mg TE/g (Trolox equivalent), molybdenum-reducing power of extracts detected by the phosphomolybdenum method (MRP) and was from 41.43 to 209.93 mg TE/g depending on genotype. The total polyphenol content, flavonoids and antioxidant activity by the phosphomolybdenum method increased from spring vegetation to flowering. The accumulation of phenolic acids and antioxidant activity by the DPPH method was uneven and depended on genotype and stage of growth. It was found a weak correlation between FRSA and TPC (r = 0.189), TFC (r = 0.211), and TPAC (r = 0.111) for genotypes. A strong correlation was found between MRP and TPC (r = 0.703), and TFC (r = 0.657). A moderate correlation was detected between MRP and TPAC (r = 0.481) for genotypes. The obtained data can be used for further breeding work to get genotypes with high antioxidant activity.
巴尔昌蒿(Artemisia balchanorum Krasch)×金牛蒿(Artemisia taurica Willd.× 金牛蒿
摘要 本研究以乌克兰赫尔松州的茵陈蒿(Artemisia balchanorum Krasch.×金牛蒿 Willd.的基因型。用 Folin-Ciocalteu 方法鉴定了总多酚含量,其范围为 20.51 至 132.52 毫克 GAE/克(没食子酸当量)。根据基因型和生长阶段的不同,用氯化铝试剂测定的黄酮含量为 8.16 至 70.77 毫克 QE/克(槲皮素当量),用阿诺瓦试剂测定的酚酸含量为 6.26 至 38.67 毫克 CAE/克(咖啡酸当量)。用 DPPH(2.2-二苯基-1-苦基肼)法(FRSA)测定的所调查基因型的抗氧化活性为 4.68 至 10.38 毫克 TE/克(三环氧化酶当量),用磷钼法测定的提取物钼还原力为 41.43 至 209.93 毫克 TE/克(取决于基因型)。用磷钼法检测的总多酚含量、黄酮类化合物和抗氧化活性从春季植被到开花期都在增加。用 DPPH 法检测酚酸的积累和抗氧化活性则不均衡,取决于基因型和生长阶段。研究发现,基因型的 FRSA 与 TPC(r = 0.189)、TFC(r = 0.211)和 TPAC(r = 0.111)之间的相关性较弱。在 MRP 与 TPC(r = 0.703)和 TFC(r = 0.657)之间发现了较强的相关性。基因型的 MRP 与 TPAC(r = 0.481)之间存在中度相关性。所获得的数据可用于进一步的育种工作,以获得具有高抗氧化活性的基因型。
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