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Effect of salinity on growth, biochemical composition, and lipid productivity of Nannochloropsis oculata CS 179

机译:盐度对拟南芥CS 179生长,生化组成和脂质生产力的影响

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摘要

Effect of salinity (15, 25, 35, 45, and 55per thousand) on growth, biochemical composition, and lipid productivity of Nannochloropsis oculata CS 179 was investigated under controlled cultivation in a 19-day study. The results demonstrate that the drybiomass of N. oculata was the highest at a salinity of 25 per thousand among the treatments in the first 10-day cultivation (P<0.05). During days 14-19 (stage III), the dry biomass productivity was the highest at a salinity of 35per thousand (P<0.05). The algae had the highest chlorophyll a content (26.47 mg g~(-1)) at 25per thousand in stage I, and it decreased continuously at stage III. Protein content (as% of dry biomass) of algae reached the highest value of 42.25 ± 2.10% at 15%o, and the lipid content was the highest of 32.11 ± 1.30% of dry biomass at 25%o. However, the lipid productivity of these algae was the highest at 35%o (64.71 mg L~(-1) d~(-1); p<0.001). C16 series content was the highest among the total fatty acid methyl esters (FAME), and eicosapentaenoic acid C20:5n-3 (EPA) content was high at the low salinity. Fatty acid profiles of N. oculata varied significantly under different salinities.
机译:在为期19天的研究中,研究了盐度(15、25、35、45和55千分之一)对拟南芥CS 179的生长,生化组成和脂质生产力的影响。结果表明,在开始的第10天种植中,在处理中,N。oculata的干生物量最高,盐度为25 /千(P <0.05)。在第14-19天(第III阶段)中,干生物量生产力最高,盐度为35 /千(P <0.05)。在第I阶段,藻类的叶绿素a含量最高(26.47 mg g〜(-1)),为25 /千,而在第III阶段则持续下降。藻类的蛋白质含量(以干生物量的百分比表示)在15%o时达到最高值42.25±2.10%,脂质含量在25%o时以干生物量的最高值32.11±1.30%。然而,这些藻类的脂质生产率最高为35%(64.71 mg L〜(-1)d〜(-1); p <0.001)。在总脂肪酸甲酯(FAME)中,C16系列含量最高,而二十碳五烯酸C20:5n-3(EPA)含量在低盐度时较高。在不同盐度下,N。oculata的脂肪酸分布差异很大。

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