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Bicarbonate supplementation enhances growth and biochemical composition of Dunaliella salina V-101 by reducing oxidative stress induced during macronutrient deficit conditions

机译:碳酸氢盐的补充通过减少大量营养缺乏条件下诱导的氧化应激而增强了杜氏盐藻V-101的生长和生化组成。

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摘要

The unicellular marine alga Dunaliella salina is a most interesting green cell factory for the production of carotenes and lipids under extreme environment conditions. However, the culture conditions and their productivity are the major challenges faced by researchers which still need to be addressed. In this study, we investigated the effect of bicarbonate amendment on biomass, photosynthetic activity, biochemical constituents, nutrient uptake and antioxidant response of D. salina during macronutrient deficit conditions (N, P and S). Under nutrient deficit conditions, addition of sodium bicarbonate (100 mM) significantly increased the biomass, carotenoids including β-carotene and lutein, lipid, and fatty acid content with concurrent enhancement of the activities of nutrient assimilatory and carbonic anhydrase enzymes. Maximum accumulation of carotenoid especially β-carotene (192.8 ± 2.11 µg/100 mg) and lipids (53.9%) was observed on addition of bicarbonate during nitrate deficiency compared to phosphate and sulphate deficiency. Supplementation of bicarbonate reduced the oxidative stress caused by ROS, lowered lipid peroxidation damage and improved the activities of antioxidant enzymes (SOD, CAT and APX) in D. salina cultures under nutrient stress.
机译:单细胞海藻杜氏盐藻是最有趣的绿细胞工厂,用于在极端环境条件下生产胡萝卜素和脂质。然而,培养条件及其生产力是研究人员面临的主要挑战,仍然需要解决。在这项研究中,我们研究了碳酸氢盐改良剂对大量营养缺乏条件下盐藻(D -,P -)的生物量,光合活性,生化成分,养分吸收和抗氧化反应的影响。 / sup>和S -)。在营养缺乏的条件下,添加碳酸氢钠(100μmM)可以显着增加生物量,包括β-胡萝卜素和叶黄素在内的类胡萝卜素,脂质和脂肪酸的含量,同时增强营养同化酶和碳酸酐酶的活性。与硝酸盐和磷酸盐不足相比,硝酸盐缺乏时添加碳酸氢盐时,类胡萝卜素尤其是β-胡萝卜素(192.8±2.11μg/100μmg)和脂质(53.9%)的最大积累。在营养胁迫下,碳酸氢盐的添加减少了由ROS引起的氧化应激,降低了脂质过氧化损伤,并提高了盐藻中D. salina培养物中抗氧化酶(SOD,CAT和APX)的活性。

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