Abstract
BackgroundClostridium beijerinckii is a prominent solvent-producing microbe that has great potential for biofuel and chemical industries. Although transcriptional analysis is essential to understand gene functions and regulation and thus elucidate proper strategies for further strain improvement, limited information is available on the genome-wide transcriptional analysis for C. beijerinckii.ResultsThe genome-wide transcriptional dynamics of C. beijerinckii NCIMB 8052 over a batch fermentation process was investigated using high-throughput RNA-Seq technology. The gene expression profiles indicated that the glycolysis genes were highly expressed throughout the fermentation, with comparatively more active expression during acidogenesis phase. The expression of acid formation genes was down-regulated at the onset of solvent formation, in accordance with the metabolic pathway shift from acidogenesis to solventogenesis. The acetone formation gene (adc), as a part of the sol operon, exhibited highly-coordinated expression with the other sol genes. Out of the > 20 genes encoding alcohol dehydrogenase in C. beijerinckii, Cbei_1722 and Cbei_2181 were highly up-regulated at the onset of solventogenesis, corresponding to their key roles in primary alcohol production. Most sporulation genes in C. beijerinckii 8052 demonstrated similar temporal expression patterns to those observed in B. subtilis and C. acetobutylicum, while sporulation sigma factor genes sigE and sigG exhibited accelerated and stronger expression in C. beijerinckii 8052, which is consistent with the more rapid forespore and endspore development in this strain. Global expression patterns for specific gene functional classes were examined using self-organizing map analysis. The genes associated with specific functional classes demonstrated global expression profiles corresponding to the cell physiological variation and metabolic pathway switch.ConclusionsThe results from this work provided insights for further C. beijerinckii strain improvement employing system biology-based strategies and metabolic engineering approaches.
Highlights
Clostridium beijerinckii is a prominent solvent-producing microbe that has great potential for biofuel and chemical industries
While global gene expression patterns for C. acetobutylicum have been studied extensively [3,4,5,6,7,8,9], limited information is available on the genome-wide transcriptional analysis for C. beijerinckii [10]
By employing single-base resolution RNA-Seq technology, the genome-wide transcriptional dynamics of C. beijerinckii 8052 throughout the course of a batch fermentation was revealed in great depth
Summary
Clostridium beijerinckii is a prominent solvent-producing microbe that has great potential for biofuel and chemical industries. Transcriptional analysis is essential to understand gene functions and regulation and elucidate proper strategies for further strain improvement, limited information is available on the genome-wide transcriptional analysis for C. beijerinckii. Solvents such as acetone, butanol and ethanol (ABE) produced through microbial fermentation represent important potential renewable fuels and chemicals [1]. While global gene expression patterns for C. acetobutylicum have been studied extensively [3,4,5,6,7,8,9], limited information is available on the genome-wide transcriptional analysis for C. beijerinckii [10]. This work is an essential methodology reference for conducting transcriptional analysis employing next-generation sequencing technology
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