Negri Stefano, Gambini Sofia, Ceoldo Stefania, Avesani Linda, Commisso Mauro, Guzzo Flavia
Department of Biotechnology, University of Verona, Strada Le Grazie, 15, 37134 Verona, Italy.
Plants (Basel). 2021 Nov 18;10(11):2499. doi: 10.3390/plants10112499.
Land plants produce a vast arsenal of specialized metabolites and many of them display interesting bioactivities in humans. Recently, flavonol quercetin gained great attention in the light of the COVID-19 pandemic because, in addition to the anti-inflammatory, antiviral and anti-cancer activity already described, it emerged as possible inhibitor of 3CLpro, the major protease of SARS-CoV-2 virus. Plant cell and tissue culture (PCTC) is an attractive platform for the biotechnological production of plant metabolites. This technology allows a large amount of water and agricultural land to be saved and, being free of contaminants in the process, it is suitable for scaling up the production in bioreactors. In a project aimed to generate and screen in vitro plant cells for the production of valuable specialized metabolites for commercial production, we generated various cell lines from (kiwi fruit tree) and (gold kiwi fruit tree), that were able to produce relevant amounts of quercetin derivatives, mainly quercetin glycosides. Three cell lines from were characterized by targeted and untargeted metabolomics. In standard growing conditions, they produce and accumulate up to 13.26 mg/100 g fresh weight (419.76 mg/100 g dry weight) of quercetin derivatives. To address future industrial applications, these cell lines should be entered into an acceleration program to further increase the amount of these metabolites by optimizing the culture conditions and elicitation.
陆生植物产生了大量的特殊代谢产物,其中许多在人类身上表现出有趣的生物活性。最近,鉴于新冠疫情,黄酮醇槲皮素受到了极大关注,因为除了已被描述的抗炎、抗病毒和抗癌活性外,它还被发现可能是严重急性呼吸综合征冠状病毒2(SARS-CoV-2)病毒主要蛋白酶3CLpro的抑制剂。植物细胞和组织培养(PCTC)是植物代谢产物生物技术生产的一个有吸引力的平台。这项技术可以节省大量的水和农业用地,并且在生产过程中没有污染物,适合在生物反应器中扩大生产规模。在一个旨在生成和筛选用于商业生产有价值特殊代谢产物的体外植物细胞的项目中,我们从(猕猴桃树)和(金猕猴桃树)中生成了各种细胞系,这些细胞系能够产生相当数量的槲皮素衍生物,主要是槲皮素糖苷。对来自的三个细胞系进行了靶向和非靶向代谢组学分析。在标准生长条件下,它们产生并积累高达13.26毫克/100克鲜重(419.76毫克/100克干重)的槲皮素衍生物。为了满足未来的工业应用需求,这些细胞系应进入加速计划,通过优化培养条件和诱导来进一步增加这些代谢产物的产量。