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A global analysis of gene expression in Fibrobacter succinogenes S85 grown on cellulose and soluble sugars at different growth rates

机译:在不同生长速率下在纤维素和可溶性糖上生长的琥珀酸纤维杆菌S85基因表达的全局分析

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摘要

BackgroundCellulose is the most abundant biological polymer on earth, making it an attractive substrate for the production of next-generation biofuels and commodity chemicals. However, the economics of cellulose utilization are currently unfavorable due to a lack of efficient methods for its hydrolysis. Fibrobacter succinogenes strain S85, originally isolated from the bovine rumen, is among the most actively cellulolytic mesophilic bacteria known, producing succinate as its major fermentation product. In this study, we examined the transcriptome of F. succinogenes S85 grown in continuous culture at several dilution rates on cellulose, cellobiose, or glucose to gain a system-level understanding of cellulose degradation by this bacterium.
机译:背景纤维素是地球上最丰富的生物聚合物,使其成为生产下一代生物燃料和日用化学品的有吸引力的基质。然而,由于缺乏有效的水解方法,目前纤维素利用的经济性是不利的。最初从牛瘤胃中分离出来的琥珀酸纤维杆菌菌株S85是已知最活跃的纤维素分解中温细菌之一,产生琥珀酸作为其主要发酵产物。在这项研究中,我们检查了以连续稀释度在纤维素,纤维二糖或葡萄糖上以几种稀释率连续培养的丁二酸短杆菌基因S85的转录组,以了解该细菌对纤维素降解的系统水平。

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