Urbonaviciene Dalia, Bobinaite Ramune, Viskelis Pranas, Bobinas Ceslovas, Petruskevicius Aistis, Klavins Linards, Viskelis Jonas
Lithuanian Research Centre for Agriculture and Forestry, Institute of Horticulture, 54333 Babtai, Lithuania.
Department of Environmental Science, University of Latvia, 1004 Riga, Latvia.
Antioxidants (Basel). 2022 Mar 19;11(3):588. doi: 10.3390/antiox11030588.
The aim of this study was to characterize the variation in biologically active compounds, antioxidant activity and physico-chemical properties in naturally grown bilberries gathered from different sites in Northern Europe. The variability in the biologically active compounds, antioxidant capacity and physico-chemical properties, as well as the development of tools for the authenticity and quality control of wild bilberries ( L.) in different geographical locations was evaluated. The berries of bilberries were handpicked during the summers of 2019 and 2020 during the time periods when they are typically harvested for commercial purposes in Northern Europe (Norway (NOR), Finland (FIN), Latvia (LVA) and Lithuania (LTU)). Berries from locations in NOR were distinguished by their higher mean TPC (791 mg/100 g FW, average), whereas the mean TPC of samples from the most southern country, LTU, was the lowest (587 mg/100 g FW). The TPC of bilberries ranged from 452 to 902 mg/100 g FW. The TAC values of investigated bilberry samples varied from 233 to 476 mg/100 g FW. A high positive correlation was found between TPC and antioxidant activity of the bilberry samples (R = 0.88 and 0.91 (FRAP and ABTS assays, respectively)), whereas the correlation between TAC and antioxidant activity was lower (R = 0.65 and 0.60). There were variations in the TPC and TAC values of investigated berries, suggesting that genotype also affects the TPC and TAC in berries. In 2020, the pH values and TSS contents of berries were significantly lower than in 2019. To the best of our knowledge, this is the first comprehensive reported evaluation of the biologically active compounds in wild bilberries from different Northern European countries using one laboratory-validated method.
本研究的目的是表征从北欧不同地点采集的自然生长的越橘中生物活性化合物、抗氧化活性和理化性质的变化。评估了生物活性化合物、抗氧化能力和理化性质的变异性,以及不同地理位置野生越橘(Vaccinium myrtillus L.)真伪和质量控制工具的开发情况。在2019年和2020年夏季,当北欧(挪威(NOR)、芬兰(FIN)、拉脱维亚(LVA)和立陶宛(LTU))通常为商业目的采摘越橘时,手工采摘越橘果实。来自挪威各地的越橘果实平均总酚含量(TPC)较高(平均为791毫克/100克鲜重),而最南部国家立陶宛的样品平均TPC最低(587毫克/100克鲜重)。越橘的TPC范围为452至902毫克/100克鲜重。所研究的越橘样品的总抗氧化能力(TAC)值在233至476毫克/100克鲜重之间变化。越橘样品的TPC与抗氧化活性之间存在高度正相关(分别为R = 0.88和0.91(FRAP和ABTS测定法)),而TAC与抗氧化活性之间的相关性较低(R = 0.65和0.60)。所研究的越橘果实的TPC和TAC值存在差异,这表明基因型也会影响越橘果实中的TPC和TAC。2020年,越橘果实的pH值和总可溶性固形物(TSS)含量显著低于2019年。据我们所知,这是首次使用一种经过实验室验证的方法对来自北欧不同国家的野生越橘中的生物活性化合物进行全面报道的评估。