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首页> 外文期刊>Journal of Applied Phycology >Effect of alkaline pH and nitrogen starvation on the triacylglycerol (TAG) content, growth, biochemical composition, and fatty acid profile of Auxenochlorella protothecoides KP7
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Effect of alkaline pH and nitrogen starvation on the triacylglycerol (TAG) content, growth, biochemical composition, and fatty acid profile of Auxenochlorella protothecoides KP7

机译:碱性pH与氮饥饿对三酰基甘油(标签)含量,生长,生化组合物和辅助生殖的脂肪酸谱的影响

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Microalgae can accumulate substantial amounts of triacylglycerol, the primary feedstock for biodiesel production, under different stress conditions. In this study, exposure to alkaline pH (pH 10) using carbonate-bicarbonate buffer, nitrogen starvation, and both were applied to induce triacylglycerol accumulation in Auxenochlorella protothecoides KP7. In addition to triacylglycerol accumulation, growth, biochemical composition, and fatty acid profiles were examined in detail and compared. Our results illustrated that the combination of nitrogen starvation and alkaline pH led to significant increases in triacylglycerol and starch contents and drastic decreases in chlorophyll and protein contents compared with their control levels. Triacylglycerol levels, the triacylglycerol/total lipid ratio, and lipid productivities were significantly increased after 7 days of cultivation under the combined stress compared with the effects of nitrogen starvation alone. After prolonged cultivation under the combined stress, triacylglycerol content reached up to 25.01% of the dry cell weight and constituted up to 81.25% of total lipids. Under the combined stress, the major fatty acids in the total lipid of A. protothecoides KP7 were C18:1 (57.5%), C18:2 (19.5%), C16:0 (12.5%), and C18:3 (5.6%), and the percentages of saturated fatty acids, monounsaturated fatty acids, and polyunsaturated fatty acids represented 16.3, 58.4, and 25.1% of the total fatty acids, respectively. Furthermore, the combined stress was associated with the lowest iodine value (97.64 g I-2 (100 g)(-1)), highest oxidative stability (7.29 h), and highest cetane number (55.26) among the examined conditions. The use of nitrogen-free medium containing carbonate-bicarbonate buffer for cultivation appears promising for enhancing triacylglycerol production in A. protothecoides.
机译:在不同的胁迫条件下,微藻可以积累大量的三酰甘油,这是生产生物柴油的主要原料。在这项研究中,使用碳酸盐碳酸氢盐缓冲液暴露于碱性pH(pH 10),氮饥饿,以及两者都被用于诱导原鞘小球藻KP7中的三酰甘油积累。除了三酰甘油的积累外,还对生长、生化成分和脂肪酸的分布进行了详细的检查和比较。我们的结果表明,与对照水平相比,氮饥饿和碱性pH的结合导致三酰甘油和淀粉含量显著增加,叶绿素和蛋白质含量急剧下降。与单独氮饥饿相比,在复合胁迫下培养7天后,三酰甘油水平、三酰甘油/总脂比和脂质生产力显著增加。在复合胁迫下长时间培养后,三酰甘油含量达到干细胞重量的25.01%,占总脂质的81.25%。在复合胁迫下,类原甲藻KP7总脂肪中的主要脂肪酸为C18:1(57.5%)、C18:2(19.5%)、C16:0(12.5%)和C18:3(5.6%),饱和脂肪酸、单不饱和脂肪酸和多不饱和脂肪酸分别占总脂肪酸的16.3%、58.4%和25.1%。此外,在所研究的条件中,复合应激与最低碘值(97.64 g I-2(100 g)-1))、最高氧化稳定性(7.29 h)和最高十六烷值(55.26)有关。使用含有碳酸氢盐缓冲液的无氮培养基进行培养,似乎有希望提高原鞘菌的三酰甘油产量。

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