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Isolation and Fatty Acid Profile of Selected Microalgae Strains from the Red Sea for Biofuel Production

机译:红海中用于生产生物燃料的精选微藻菌株的分离和脂肪酸谱

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The isolation of lipid-rich autochthonous strains of microalgae is a crucial stage for the development of a microalgae-based biofuel production plant, as these microalgae already have the necessary adaptations to withstand competition, predation and the temperatures observed at each production site. This is particularly important in extreme climates such as in Saudi Arabia. Resorting to fluorescence activated cell sorting (FACS) we screened for and isolated several microalgal strains from samples collected from the Red Sea. Relying on the fluorescence of BODIPY 505/515 (4,4-difluoro-1,3,5,7-tetramethyl-4-bora-3a,4a-diazasindacene) and growth performance, four promising candidates were identified and the total lipid content and fatty acid profile was assessed for biofuels production. Selected isolates were classified as chlorophytes, belonging to three different genera: Picochlorum, Nannochloris and Desmochloris. The lipid contents were assessed microscopically by means of BODIPY 505/515-associated fluorescence to detect intracellular lipid bodies, which revealed several lipid drops in all selected strains. This result was confirmed by lipid gravimetric determination, which demonstrated that all strains under study presented inner cell lipid contents ranging from 20% to 25% of the biomass dry weight. Furthermore, the fatty acid methyl esters profile of all strains seems ideal for biodiesel production due to a low degree of polyunsaturated fatty acid methyl esters and high amount of palmitic and oleic acids.
机译:分离富含脂质的自生微藻是开发基于微藻的生物燃料生产工厂的关键阶段,因为这些微藻已经具有必要的适应性,可以抵抗竞争,捕食和在每个生产地点观察到的温度。这在沙特阿拉伯等极端气候下尤其重要。借助于荧光激活细胞分选(FACS),我们从红海收集的样品中筛选并分离出了几种微藻菌株。依靠BODIPY 505/515(4,4-二氟-1,3,5,7-四甲基-4-硼3a-3a,4a-二氮杂双并四烯)的荧光和生长性能,鉴定了四个有希望的候选物并确定了总脂质含量评估了脂肪酸谱以生产生物燃料。选定的分离物被归类为绿藻类,属于三个不同的属:麦草绿,七草绿藻和去毒绿藻。通过BODIPY 505/515相关的荧光显微镜下评估脂质含量,以检测细胞内脂质体,这揭示了所有选定菌株中的数个脂质滴。脂质重量测定法证实了该结果,该结果表明所研究的所有菌株均表现出内部细胞脂质含量为生物质干重的20%至25%。此外,由于低度多不饱和脂肪酸甲酯和大量的棕榈酸和油酸,所有菌株的脂肪酸甲酯分布图似乎都是生物柴油生产的理想选择。

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