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Correlation of Genomic and Physiological Traits of Thermoanaerobacter Species with Biofuel Yields

机译:热厌氧菌物种的基因组和生理特性与生物燃料产量的相关性

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Thermophilic anaerobic noncellulolytic Thermoanaerobacter species are of great biotechnological importance in cellulosic ethanol production due to their ability to produce high ethanol yields by simultaneous fermentation of hexose and pentose. Understanding the genome structure of these species is critical to improving and implementing these bacteria for possible biotechnological use in consolidated bioprocessing schemes (CBP) for cellulosic ethanol production. Here we describe a comparative genome analysis of two ethanologenic bacteria, Thermoanaerobacter sp. X514 and Thermoanaerobacter pseudethanolicus 39E. Compared to 39E, X514 has several unique key characteristics important to cellulosic biotechnology, including additional alcohol dehydrogenases and xylose transporters, modifications to pentose metabolism, and a complete vitamin B_(12) biosynthesis pathway. Experimental results from growth, metabolic flux, and microarray gene expression analyses support genome sequencing-based predictions which help to explain the distinct differences in ethanol production between these strains. The availability of whole-genome sequence and comparative genomic analyses will aid in engineering and optimizing Thermoanaerobacter strains for viable CBP strategies.
机译:嗜热厌氧非纤维素性厌氧厌氧细菌物种在纤维素乙醇生产中具有重要的生物技术意义,因为它们具有通过同时发酵己糖和戊糖产生高乙醇产量的能力。了解这些物种的基因组结构对于改进和实施这些细菌,以用于纤维素乙醇生产的合并生物处理方案(CBP)中可能的生物技术用途至关重要。在这里,我们描述了两种产乙醇细菌,嗜热厌氧菌sp。的比较基因组分析。 X514和伪乙醇热厌氧菌39E。与39E相比,X514具有对纤维素生物技术重要的几个独特关键特性,包括其他醇脱氢酶和木糖转运蛋白,戊糖代谢的修饰以及完整的维生素B_(12)生物合成途径。生长,代谢通量和微阵列基因表达分析的实验结果支持基于基因组测序的预测,这有助于解释这些菌株之间乙醇生产的明显差异。全基因组序列和比较基因组分析的可用性将有助于为可行的CBP策略工程化和优化嗜热厌氧菌菌株。

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