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Complete genome sequence metabolic model construction and phenotypic characterization of Geobacillus LC300 an extremely thermophilic fast growing xylose-utilizing bacterium

机译:嗜热快速生长利用木糖的细菌Geobacillus LC300的完整基因组序列代谢模型构建和表型表征

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摘要

We have isolated a new extremely thermophilic fast-growing Geobacillus strain that can efficiently utilize xylose, glucose, mannose and galactose for cell growth. When grown aerobically at 72 °C, Geobacillus LC300 has a growth rate of 2.15 h−1 on glucose and 1.52 h−1 on xylose (doubling time less than 30 minutes). The corresponding specific glucose and xylose utilization rates are 5.55 g/g/h and 5.24 g/g/h, respectively. As such, Geobacillus LC300 grows 3-times faster than E. coli on glucose and xylose, and has a specific xylose utilization rate that is 3-times higher than the best metabolically engineered organism to date. To gain more insight into the metabolism of Geobacillus LC300 its genome was sequenced using PacBio’s RS II single-molecule real-time (SMRT) sequencing platform and annotated using the RAST server. Based on the genome annotation and the measured biomass composition a core metabolic network model was constructed. To further demonstrate the biotechnological potential of this organism, Geobacillus LC300 was grown to high cell-densities in a fed-batch culture, where cells maintained a high xylose utilization rate under low dissolved oxygen concentrations. All of these characteristics make Geobacillus LC300 an attractive host for future metabolic engineering and biotechnology applications.
机译:我们已经分离出一种新的极热的快速生长的地芽孢杆菌菌株,该菌株可以有效利用木糖,葡萄糖,甘露糖和半乳糖促进细胞生长。当在72°C有氧条件下生长时,Geobacillus LC300在葡萄糖上的生长速率为2.15 h -1 ,在木糖上的生长速率为1.52 h -1 (倍增时间少于30分钟) 。相应的比葡萄糖和木糖利用率分别为5.55 g / g / h和5.24 g / g / h。因此,Geobacillus LC300在葡萄糖和木糖上的生长速度比大肠杆菌快3倍,并且木糖的特定利用率比迄今为止最好的代谢工程生物高3倍。为了更深入地了解Geobacillus LC300的代谢,其基因组使用PacBio的RS II单分子实时(SMRT)测序平台进行了测序,并使用RAST服务器进行了注释。基于基因组注释和测得的生物量组成,构建了核心代谢网络模型。为了进一步证明这种生物的生物技术潜力,在补料分批培养中将Geobacillus LC300培养到高细胞密度,在这种培养条件下,细胞在低溶解氧浓度下仍保持较高的木糖利用率。所有这些特性使Geobacillus LC300成为未来代谢工程和生物技术应用的诱人主机。

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