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Optimization of macroelement concentrations, pH and osmolarity for triacylglycerol accumulation in Rhodococcus opacus strain PD630

机译:优化不透明红球菌PD630菌株中三酰基甘油积累的宏观元素浓度,pH和渗透压

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The refinement of biodiesel or renewable diesel from bacterial lipids has a great potential to make a contribution for energy production in the future. This study provides new data concerning suitable nutrient concentrations for cultivation of the Gram-positive Rhodococcus opacus PD630, which is able to accumulate large amounts of lipids during nitrogen limitation. Enhanced concentrations of magnesium have been shown to increase the final optical density and the lipid content of the cells. Elevated phosphate concentrations slowed down the onset of the accumulation phase, without a clear effect on the final optical density and the cell’s lipid content. A robust growth of R. opacus was possible in the presence of ammonium concentrations of up to 1.4?g?l-1 and sucrose concentrations of up to 240?g?l-1, with an optimum regarding growth and lipid storage observed in the range of 0.2 to 0.4?g?l-1 ammonium and 20 to 40?g?l-1 sucrose, respectively. Moreover, R. opacus showed tolerance to high salt concentrations.
机译:从细菌脂质中提炼生物柴油或可再生柴油具有巨大的潜力,可以为将来的能源生产做出贡献。这项研究提供了有关培养革兰氏阳性不透明红球菌PD630的合适营养素浓度的新数据,该营养素能够在氮限制期间积累大量脂质。镁的增加浓度已经显示出可以增加细胞的最终光密度和脂质含量。磷酸盐浓度升高会减慢积累阶段的开始,但对最终的光密度和细胞脂质含量没有明显影响。在存在高达1.4?g?l-1的铵盐浓度和高达240?g?l-1的蔗糖的情况下,可能会导致浓密的不透明芽孢杆菌稳健地生长,并在其中观察到了最佳的生长和脂质存储。范围分别为0.2至0.4?g?l-1铵和20至40?g?l-1蔗糖。此外,不透明芽孢杆菌显示出对高盐浓度的耐受性。

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