Yakoviichuk Aleksandr, Krivova Zinaida, Maltseva Svetlana, Kochubey Angelica, Kulikovskiy Maxim, Maltsev Yevhen
Faculty of Natural Sciences, A. Makarenko Melitopol State University, Melitopol 72312.
Laboratory of Molecular Systematics of Aquatic Plants, K.A. Timiryazev Institute of Plant Physiology RAS, IPP RAS, Moscow 127276, Russia.
Antioxidants (Basel). 2023 Mar 6;12(3):654. doi: 10.3390/antiox12030654.
The functional state of enrichment cultures of the Eustigmatophycean strains MZ-E3 and MZ-E4 after 25-day cultivation in the BBM medium was studied. The concentrations of chlorophyll , total carotenoids, protein, vitamins A and E, fatty acid peroxidation product content, an antioxidant enzyme, and succinate dehydrogenase activity were measured. MZ-E3 succinate dehydrogenase activity was significantly higher by 2.21 times; the MZ-E4 strain had 2.94 times higher glutathione peroxidase activity. The MZ-E3 antioxidant activity index and the MZ-E3 unsaturation of fatty acids were 1.3 and 1.25 times higher than the MZ-E4. The retinol and α-tocopherol content of the MZ-E3 was 28.6% and 38.76% higher than MZ-E4. The main fatty acid profile differences were the 3.46-fold and 3.92-fold higher stearic and eicosapentaenoic acid content in the MZ-E4 biomass. MZ-E3 had higher antioxidant, energy, and metabolic and photosynthetic status than MZ-E4. The antioxidant status of the studied strains showed the dependence of the adaptive mechanisms of each, associated with differences in the ecological conditions of the biotopes from which they were isolated. These strains are promising for producing α-tocopherol and biomass enriched with omega-3 and omega-6 fatty acids.
研究了在BBM培养基中培养25天后,真眼点藻纲菌株MZ-E3和MZ-E4富集培养物的功能状态。测量了叶绿素、总类胡萝卜素、蛋白质、维生素A和E的浓度、脂肪酸过氧化产物含量、一种抗氧化酶以及琥珀酸脱氢酶活性。MZ-E3的琥珀酸脱氢酶活性显著高出2.21倍;MZ-E4菌株的谷胱甘肽过氧化物酶活性高出2.94倍。MZ-E3的抗氧化活性指数和脂肪酸不饱和度分别比MZ-E4高1.3倍和1.25倍。MZ-E3中的视黄醇和α-生育酚含量分别比MZ-E4高28.6%和38.76%。主要脂肪酸谱的差异在于MZ-E4生物量中硬脂酸和二十碳五烯酸的含量分别高出3.46倍和3.92倍。MZ-E3的抗氧化、能量、代谢和光合状态均高于MZ-E4。所研究菌株的抗氧化状态表明,各自的适应机制存在依赖性,这与它们所分离的生物栖息地生态条件的差异有关。这些菌株有望用于生产α-生育酚以及富含ω-3和ω-6脂肪酸的生物质。