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Development of a simple intensified fermentation strategy for growth of Magnetospirillum gryphiswaldense MSR-1: Physiological responses to changing environmental conditions

机译:开发一种简单的加强发酵策略,用于增长 MSR-1:改变环境条件的生理反应

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摘要

The development of a simple pH-stat fed-batch fermentation strategy for the production ofMagnetospirillum gryphiswaldenseMSR-1 and magnetosomes (nanoscale magnetic organelles with biotechnological applications) is described. Flow cytometry was exploited as a powerful analytical tool for process development, enabling rapid monitoring of cell morphology, physiology and polyhydroxyalkanoate production. The pH-stat fed-batch growth strategy was developed by varying the concentrations of the carbon source (lactic acid) and the alternative electron acceptor (sodium nitrate) in the feed. Growth conditions were optimized on the basis of biomass concentration, cellular magnetism (indicative of magnetosome production), and intracellular iron concentration. The highest biomass concentration and cellular iron content achieved were an optical density at 565?nm of 15.5 (equivalent to 4.2?g DCW·L?1) and 33.1?mg iron·g?1DCW, respectively. This study demonstrates the importance of analyzing bacterial physiology during fermentation development and will potentially aid the industrial production of magnetosomes, which can be used in a wide range of biotechnology and healthcare applications.
机译:描述了用于生产MagnetospirlululululdensemsR-1和磁体的简单pH-STAT的膳食批量发酵策略(具有生物技术应用的纳米级磁通细胞器)。流式细胞术被利用为工艺开发的强大分析工具,从而能够快速监测细胞形态,生理学和多羟基烷烃生产。通过改变碳源(乳酸)和进料中替代电子受体(硝酸钠)的浓度来开发pH-STAT美联储批量生长策略。基于生物质浓度,细胞磁性(指示磁体生产)和细胞内铁浓度来优化生长条件。获得的最高生物质浓度和蜂窝含铁含量在565Ω·nm的光密度下为15.5(相当于4.2Ω·g dc·l≤1)和33.1×mg铁·g?1dcw。本研究表明,在发酵发育期间分析细菌生理学的重要性,并潜在援助磁性体的工业生产,可用于各种生物技术和医疗保健应用。

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