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Enhancement of polyunsaturated fatty acid production under low-temperature stress in Cylindrotheca closterium

机译:圆柱细胞低温胁迫下多不饱和脂肪酸产量的增强

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摘要

Marine microalgae synthetize great amounts of essential metabolites such as fatty acids and amino acids. In addition, their exposure to stress factors can induce the overproduction of these desirable metabolites. Thus, in this work, we assessed the effect of low-temperature stress on lipid production and composition of the diatom Cylindrotheca closterium, in order to evaluate its potential as an alternative feedstock of essential polyunsaturated fatty acids (PUFAs). The alga was first cultured in a photobioreactor at 20 degrees C (control), and stressed by suddenly lowering the culture temperature, from 20 degrees C to 11 degrees C, at the exponential (LTEP) or stationary (LTSP) growth phases. Neutral lipids (NLs) were the main lipid fraction of all conditions assayed, and their production was maximal at LTSP. Fatty acid analysis also showed that the greatest production of PUFAs was observed in the NL fraction at LTSP condition. In terms of essential fatty acids, the production of the omega-3 fatty acids eicosapentaenoic acid and docosahexaenoic acid was similar in both treatments. The production of omega-6 fatty acids was significantly higher in the LTSP condition due to an increase in arachidonic acid content. Sterols increased under both stress conditions, with a predominance of cholesterol. Considering that the LTSP condition elicited the best PUFA production, the amino acid composition was determined. The 46.81% of total amino acids were essential components for aquatic animals. These findings provide evidence of the potential of C. closterium as an alternative, sustainable source of sterols, essential fatty acids, and amino acids.
机译:海洋微藻综合大量的基本代谢产物,如脂肪酸和氨基酸。此外,它们对应力因子的暴露可以诱导这些所需代谢物的过度生产。因此,在这项工作中,我们评估了低温胁迫对硅藻土脂质生产和组成的影响,以便评估其作为必需多不饱和脂肪酸(PUFA)的替代原料的潜力。首先在20℃(对照)的光生物反应器中培养藻类,并通过突然将培养温度降低20℃至11摄氏度,在指数(LTEP)或静止(LTSP)生长相中胁迫。中性脂质(NLS)是测定所有条件的主要脂质分数,它们的生产在LTSP上最大。脂肪酸分析还表明,在LTSP条件下的NL分数中观察到最大的PUFA生产。就必需脂肪酸而言,两种治疗中,ω-3脂肪酸氧化苯甲酸和二十二碳六烯酸的生产相似。由于花生酸含量的增加,LTSP条件下的ω-6脂肪酸的产生显着高。甾醇在两个压力条件下都会增加,胆固醇的主要含量。考虑到LTSP条件引发了最佳PUFA生产,测定了氨基酸组成。总氨基酸的46.81%是水生动物的必需组分。这些调查结果提供了C. Coulterium的潜力的证据,作为甾醇,必需脂肪酸和氨基酸的替代,可持续的来源。

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