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Improvement in biochemical parameters and changes in lipid profile of Scenedesmus obliquus by plant growth regulators under mixotrophic condition

机译:植物生长调节剂在混合营养条件下植物生长调节器的生化参数和脂质谱的改善

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In this study, we investigated the improvement in biochemical parameters by adding gibberellic acid (GA_3) and salicylic acid to mixotrophy medium. Fresh weight of the cultures treated with 100 mM SA and GA_3 was approximately 30% higher than that of control cultures. Both GA_3 and SA induced chlorophyll, carotenoid, and astaxanthin accumulation in Scenedesmus. SA increased carotenoid and astaxanthin content 2 and 2.6 times more than GA_3 respectively. Protein content decreased in microalgae treated by GA_3 and SA. 100 mM concentration of GA_3 and SA caused a significant increase in lipid levels (42.6% and 41%, respectively). Compared with the controls, lower proportions of unsaturated fatty acids (USFAs) were detected in the GA_3-and SA-treated biomass. In the microalgae treated by GA_3, an insignificant decrease was detected in saturated fatty acids (SFA) and USFAs in comparison to the controls. New fatty acids, SFA C16:0 (2.5%), and USFA C22:6 (n3) (docosahexaenoic (DHA) (2.1%) were added to the fatty acid profile. Adding SA to the microalgal cultures significantly increased the amount of SFAs and reduced the amount of USFAs compared to the controls. 21.2% C8:0 and 29.4% EPA had the highest content in SFAs and USFAs, respectively. Our results showed that GA_3 and SA (especially SA) can be good candidates for improving carotenoid and astaxanthine under mixotrophy conditions and changing the amount of special fatty acids.
机译:在这项研究中,我们通过将甲虫酸(Ga_3)和水杨酸加入混纺培养基来研究生化参数的改善。用100mM SA和GA_3处理的培养物的鲜重比对照培养物高约30%。 Ga_3和SA诱导叶绿素,类胡萝卜素和Scenedesmus中的虾青素积累。 SA分别增加类胡萝卜素和虾青剂含量2和2.6倍。通过Ga_3和Sa处理的微藻蛋白含量降低。 100mm浓度的Ga_3和SA导致脂质水平的显着增加(分别为42.6%和41%)。与对照相比,在GA_3和SA处理的生物质中检测不饱和脂肪酸(USFAs)的降低比例。在通过Ga_3处理的微藻中,与对照相比,在饱和脂肪酸(SFA)和USFA中检测微不足道的减少。新的脂肪酸,SFA C16:0(2.5%)和USFA C22:6(N 3)(DOCOSahexenoic(DHA)(DHA)(2.1%)加入到脂肪酸谱中。向微藻培养添加SA显着增加了SFA的量与对照相比,减少了USFA的量。21.2%C8:0和29.4%的EPA分别在SFAS和USFA中具有最高的含量。我们的结果表明GA_3和SA(特别是SA)可以是改善类胡萝卜素的良好候选者虾青霉素在混纺术条件下,改变特殊脂肪酸的量。

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