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Bioreactor performance parameters for an industrially-promising methanotroph Methylomicrobium buryatense 5GB1

机译:工业上有前景的甲烷氧化菌甲基微藻5GB1的生物反应器性能参数

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Methane is a feedstock of interest for the future, both from natural gas and from renewable biogas sources. Methanotrophic bacteria have the potential to enable commercial methane bioconversion to value-added products such as fuels and chemicals. A strain of interest for such applications is Methylomicrobium buryatense 5GB1, due to its robust growth characteristics. However, to take advantage of the potential of this methanotroph, it is important to generate comprehensive bioreactor-based datasets for different growth conditions to compare bioprocess parameters. Datasets of growth parameters, gas utilization rates, and products (total biomass, extracted fatty acids, glycogen, excreted acids) were obtained for cultures of M. buryatense 5GB1 grown in continuous culture under methane limitation and O2 limitation conditions. Additionally, experiments were performed involving unrestricted batch growth conditions with both methane and methanol as substrate. All four growth conditions show significant differences. The most notable changes are the high glycogen content and high formate excretion for cells grown on methanol (batch), and high O2:CH4 utilization ratio for cells grown under methane limitation. The results presented here represent the most comprehensive published bioreactor datasets for a gamma-proteobacterial methanotroph. This information shows that metabolism by M. buryatense 5GB1 differs significantly for each of the four conditions tested. O2 limitation resulted in the lowest relative O2 demand and fed-batch growth on methane the highest. Future studies are needed to understand the metabolic basis of these differences. However, these results suggest that both batch and continuous culture conditions have specific advantages, depending on the product of interest.
机译:甲烷是天然气和可再生沼气来源都对未来感兴趣的原料。甲烷营养细菌具有实现商业甲烷生物转化为增值产品(例如燃料和化学药品)的潜力。由于其强劲的生长特性,此类应用中感兴趣的菌株是甲基微霉buryatense 5GB1。但是,要利用这种甲烷营养菌的潜力,重要的是为不同的生长条件生成基于生物反应器的综合数据集,以比较生物过程参数。获得了在甲烷限制和O2限制条件下连续培养的伯氏疟原虫5GB1培养物的生长参数,气体利用率和产物(总生物量,提取的脂肪酸,糖原,排泄的酸)的数据集。此外,还进行了涉及不受限制的以甲烷和甲醇为底物的分批生长条件的实验。所有四个生长条件均显示出显着差异。最显着的变化是在甲醇(批处理)上生长的细胞的糖原含量高,甲酸排泄量高,而在甲烷限制下生长的细胞的O2:CH4利用率高。这里介绍的结果代表了最全面的已公开的生物反应器数据集,用于γ-蛋白细菌甲烷营养菌。该信息表明,对于四种测试条件中的每一种,伯氏甲烷八叠球菌5GB1的新陈代谢都存在显着差异。氧气限制导致相对氧气需求最低,甲烷的补料分批增长最高。需要进一步的研究来了解这些差异的代谢基础。但是,这些结果表明,分批培养和连续培养条件均具有特定的优势,具体取决于目标产品。

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