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Central composite design (CCD) optimization of phytohormones supplementation for enhanced cyanobacterial biodiesel production

机译:中央复合设计(CCD)优化植物激素补充剂,以增强蓝细菌生物柴油的生产

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Based on our previous findings, two potent cyanobacterial strains namely, Anabaena sphaerica MBDU 105 and Nostoc calcicola MBDU 602 showed suitability for biodiesel production were chosen in this study to enhance biomass and lipid accumulation. The present study investigated the effect of nutrient supplementation with different carbons sources, chemical modulators and nutrient starvation on lipid accumulation. Nutrient supplementation with organic carbon sources yielded higher biomass (5.38-7.96 fold) and lipid productivity (2.81-2.19 fold) rather than lipid content. For chemical modulators, indole-3-carboxaldehyde (13C) and kinetin (KT) increased lipid accumulation by 22 +/- 1.9 and 34 +/- 1 (% dwt), respectively. Therefore, central composite design was performed to assess the interactive effect of 13C and KT on lipid content, biomass and lipid productivity, fatty acid composition and their fuel properties. To the best of our knowledge, this is the first report demonstrating that DC promote the biomass and lipid productivity of tested heterocystous cyanobacterial strains. (C) 2018 Elsevier Ltd. All rights reserved.
机译:根据我们以前的发现,在本研究中选择了两种有效的蓝细菌菌株,即球形鱼腥藻MBDU 105和Nostoc calcicola MBDU 602,它们显示出适合生物柴油生产的能力,以增强生物量和脂质积累。本研究调查了不同碳源,化学调节剂和营养饥饿对营养补充对脂质积累的影响。用有机碳源补充营养可产生更高的生物量(5.38-7.96倍)和脂质生产率(2.81-2.19倍),而不是脂质含量。对于化学调节剂,吲哚-3-羧甲醛(13C)和激动素(KT)分别使脂质蓄积增加22 +/- 1.9和34 +/- 1(%dwt)。因此,进行了中央复合设计以评估13 C和KT对脂质​​含量,生物量和脂质生产率,脂肪酸组成及其燃料性质的相互作用。据我们所知,这是第一份证明DC可以促进测试的异囊蓝藻菌株的生物量和脂质生产率的报告。 (C)2018 Elsevier Ltd.保留所有权利。

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