University of Belgrade-Institute for Multidisciplinary Research, Life Sciences Department, Belgrade, Serbia.
Innovative Centre of the Faculty of Chemistry, University of Belgrade, Belgrade, Serbia.
Commun Biol. 2024 Jul 6;7(1):821. doi: 10.1038/s42003-024-06526-6.
Algal biomass is a viable source of chemicals and metabolites for various energy, nutritional, medicinal and agricultural uses. While stresses have commonly been used to induce metabolite accumulation in microalgae in attempts to enhance high-value product yields, this is often very detrimental to growth. Therefore, understanding how to modify metabolism without deleterious consequences is highly beneficial. We demonstrate that low-doses (1-5 Gy) of ionizing radiation in the X-ray range induces a non-toxic, hormetic response in microalgae to promote metabolic activation. We identify specific radiation exposure parameters that give reproducible metabolic responses in Chlorella sorokiniana caused by transcriptional changes. This includes up-regulation of >30 lipid metabolism genes, such as genes encoding an acetyl-CoA carboxylase subunit, phosphatidic acid phosphatase, lysophosphatidic acid acyltransferase, and diacylglycerol acyltransferase. The outcome is an increased lipid yield in stationary phase cultures by 25% in just 24 hours, without any negative effects on cell viability or biomass.
藻类生物质是各种能源、营养、医药和农业用途的化学品和代谢物的可行来源。虽然压力通常被用于诱导微藻中的代谢物积累,以试图提高高价值产品的产量,但这通常对生长非常不利。因此,了解如何在没有不良后果的情况下改变代谢是非常有益的。我们证明,X 射线范围内的低剂量(1-5Gy)电离辐射会在微藻中诱导非毒性、有益的反应,以促进代谢激活。我们确定了特定的辐射暴露参数,这些参数通过转录变化在集胞藻中产生可重复的代谢反应。这包括上调 >30 个脂质代谢基因,如编码乙酰辅酶 A 羧化酶亚基、磷酸脂酶、溶血磷脂酸酰基转移酶和二酰基甘油酰基转移酶的基因。其结果是在 24 小时内,静止期培养物的脂质产量增加了 25%,而对细胞活力或生物量没有任何负面影响。