Abidizadegan Maryam, Blomster Jaanika, Peltomaa Elina
Ecosystem and Environment Research Program, Faculty of Biological and Environmental Sciences, University of Helsinki, Lahti, Finland.
Ecosystem and Environment Research Program, Faculty of Biological and Environmental Sciences, University of Helsinki, Helsinki, Finland.
Front Plant Sci. 2023 Jul 27;14:1208724. doi: 10.3389/fpls.2023.1208724. eCollection 2023.
Iron is one of the important micronutrients affecting algal growth due to its fundamental role in the physiological processes, including photosynthetic electron transport, respiration, and nitrogen fixation. In this study, the effect of different iron levels on growth and the production of bioactive compounds (phycoerythrin (PE), extracellular polymeric substances (EPS), and phenolic compounds (PCs)) of five cryptophyte strains were investigated. Also, the antioxidant capacity of the bioactive compounds was explored. The results showed species-specific responses to the impact of iron on growth of cryptophytes and accumulation of bioactive compounds. The growth rates of and sp. varied significantly at different iron levels, and a reduction in the PE content was observed for several cryptophytes cultured at the highest iron level. However, no significant differences were detected in EPS content at different iron levels. Differences in PC contents of and sp. at medium iron level were statistically significant compared with the other two treatments. The results also revealed species-specific differences in antioxidant activity at different iron levels; each studied strain followed its own pattern in response to change in iron level, and each bioactive compound had a different antioxidant activity. Overall, however, PCs demonstrated higher antioxidant activity than PE and EPS. In summary, iron has an impact on growth, bioactive compound accumulation, and antioxidant activity. However, the species-specific responses to changes in iron level should not be ignored when modifying culture conditions for optimal harvest of bioactive compounds.
铁是影响藻类生长的重要微量营养素之一,因为它在包括光合电子传递、呼吸作用和固氮作用等生理过程中发挥着重要作用。在本研究中,研究了不同铁水平对五种隐藻菌株生长以及生物活性化合物(藻红蛋白(PE)、胞外聚合物(EPS)和酚类化合物(PCs))产量的影响。此外,还探究了生物活性化合物的抗氧化能力。结果表明,隐藻对铁影响其生长和生物活性化合物积累的反应具有物种特异性。在不同铁水平下, 和 sp. 的生长速率差异显著,并且在最高铁水平下培养的几种隐藻中观察到PE含量降低。然而,在不同铁水平下EPS含量未检测到显著差异。与其他两种处理相比,中等铁水平下 和 sp. 的PC含量差异具有统计学意义。结果还揭示了不同铁水平下抗氧化活性的物种特异性差异;每个研究菌株对铁水平变化的反应都遵循其自身模式,并且每种生物活性化合物具有不同的抗氧化活性。然而,总体而言,PCs表现出比PE和EPS更高的抗氧化活性。总之,铁对生长、生物活性化合物积累和抗氧化活性有影响。然而,在调整培养条件以实现生物活性化合物的最佳收获时,不应忽视对铁水平变化的物种特异性反应。