首页> 外文期刊>Environmental Science and Pollution Research >Effect of salinity stress on growth, lipid productivity, fatty acid composition, and biodiesel properties in Acutodesmus obliquus and Chlorella vulgaris
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Effect of salinity stress on growth, lipid productivity, fatty acid composition, and biodiesel properties in Acutodesmus obliquus and Chlorella vulgaris

机译:盐度胁迫对Acutodesmus倾斜和小球藻的生长,脂质生产率,脂肪酸组成和生物柴油特性的影响

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摘要

Two microalgae strains including Chlorella vulgaris and Acutodesmus obliquus were grown on BG11 medium with salinity stress ranging from 0.06 to 0.4 M NaCl. Highest lipid content in C. vulgaris and A. obliquus was 49 and 43% in BG11 amended with 0.4 M NaCl. The microalgal strains C. vulgaris and A. obliquus grow better at 0.06M NaCl concentration than control condition. At 0.06M NaCl, improved dry biomass content in C. vulgaris and A. obliquus was 0.92 and 0.68 gL(-1), respectively. Stress bio-markers like reactive oxygen species, antioxidant enzyme catalase, and ascorbate peroxidase were also lowest at 0.06 M NaCl concentration revealing that both the microalgal strains are well acclimatized at 0.06M NaCl concentration. The fatty acid composition of the investigated microalgal strains was also improved by increased NaCl concentration. At 0.4 M NaCl, palmitic acid (37%), oleic acid (15.5%), and linoleic acid (20%) were the dominant fatty acids in C. vulgaris while palmitic acid (54%) and stearic acid (26.6%) were major fatty acids found in A. obliquus. Fatty acid profiling of C. vulgaris and A. obliquus significantly varied with salinity concentration. Therefore, the study showed that salt stress is an effective stress that could increase not only the lipid content but also improved the fatty acid composition which could make C. vulgaris and A. obliquus potential strains for biodiesel production.
机译:在BG11培养基上生长了两种微藻菌株,包括小球藻和AcucteSmus倾斜度,盐度应力范围为0.06至0.4M NaCl。 C.Vulgaris和A.斜肌中的最高脂质含量为49和43%,BG11含有0.4M NaCl。微藻菌株C.Vulgaris和A.倾斜度以0.06M NaCl浓度更好地生长而不是对照条件。在0.06M NaCl下,C.Vulgaris和A.倾斜的改善的干生物质含量分别为0.92和0.68G1(-1)。应力生物标记如反应性氧,抗氧化酶过氧化酶和抗坏血酸过氧化物酶,其在0.06M NaCl浓度下也是最低的,显示微藻菌株在0.06M NaCl浓度下良好地均匀化。通过增加的NaCl浓度还提高了所研究的微藻菌株的脂肪酸组成。在0.4M NaCl,棕榈酸(37%),油酸(15.5%)和亚油酸(20%)是C.Vulgaris中的显性脂肪酸,而棕榈酸(54%)和硬脂酸(26.6%)是在A.斜肌中发现的主要脂肪酸。 V语文和A.倾斜度的脂肪酸分析显着变化了盐度浓度。因此,该研究表明,盐应激是一种有效应激,不仅可以增加脂质含量,而且还可以改善可以使脂肪酸组合物改善,该组合物可以使紫外线和A.倾斜潜在菌株用于生物柴油生产。

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