Vilkickyte Gabriele, Raudone Lina
Laboratory of Biopharmaceutical Research, Institute of Pharmaceutical Technologies, Lithuanian University of Health Sciences, Sukileliu Avenue 13, LT-50162 Kaunas, Lithuania.
Department of Pharmacognosy, Lithuanian University of Health Sciences, Sukileliu Avenue 13, LT-50162 Kaunas, Lithuania.
Foods. 2021 Sep 22;10(10):2243. doi: 10.3390/foods10102243.
L. (lingonberry) fruits are promising sources of bioactive components with high potential in biomedical applications. Selection in plant breeding, determination of perspective wild clones with optimal growing conditions, and appropriate harvesting time leading to standardized extracts are key factors for achieving phytochemical quality to meet consumer's needs. In the present study, lingonberry fruits collected along different phenological stages and from different geographical locations were analyzed for the composition of 56 constituents using validated chromatographic techniques. Early stages of lingonberries vegetation were determined as the best stages for obtaining high levels of most phenolics and triterpenoids, while the end of berry vegetation could be chosen as the optimal harvesting time in terms of anthocyanins. Furthermore, intensified continuous biosynthesis of triterpenoids and phenolic acids precursors after vegetation season in the winter sample was observed. Chemodiversity of lingonberries was affected by geographical factors as well as climatic and edaphic conditions, indicating different favorable growing conditions for the accumulation of particular compounds. Present findings could serve for breeders to obtain the highest yields of desirable lingonberry constituents, relevant in food and pharmaceutical industries.
越橘果实是生物活性成分的理想来源,在生物医学应用方面具有很高潜力。植物育种中的选择、确定具有最佳生长条件的潜在野生克隆以及能获得标准化提取物的合适采收时间,是实现植物化学品质以满足消费者需求的关键因素。在本研究中,使用经过验证的色谱技术,对在不同物候阶段和不同地理位置采集的越橘果实进行了56种成分的组成分析。越橘营养生长的早期阶段被确定为获得高水平大多数酚类和三萜类化合物的最佳阶段,而就花青素而言,果实营养生长末期可被选为最佳采收时间。此外,在冬季样本中观察到了植被季节后三萜类化合物和酚酸前体的强化持续生物合成。越橘的化学多样性受地理因素以及气候和土壤条件的影响,这表明特定化合物积累的有利生长条件各不相同。目前的研究结果可为育种者提供帮助,以获得食品和制药行业所需的越橘成分的最高产量。