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Titlebook: Corynebacterium glutamicum; Biology and Biotechn Hideaki Yukawa,Masayuki Inui Book 20131st edition Springer-Verlag Berlin Heidelberg 2013 A

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The Biotechnological Potential of ,, from , to ,,that can now be biomanufactured mediates a transformational change in the deployment of this microorganism, from . applications, referring to food enhancers, to . applications, referring to chemical commodity products. The deep fundamental knowledge of the corynebacterial physiology, the experience
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Amino Acid Production by ,,dustry. Due to its importance as an amino acid producer, . is also one of the best-investigated microorganisms, evidenced by the extensive body of relevant literature and patents. In the past quarter century, various genetic engineering tools and global analysis techniques for this bacterium have be
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Biorefinery Applications of ,,om biomass-based feedstock. The current interest in implementing a biorefinery industry is largely derived by a combination of rising petroleum prices as well as the need to reduce greenhouse gas emissions and atmospheric CO. levels to mitigate global warming. To date, .-based technology has not bee
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Transcriptome/Proteome Analysis of ,,niques have become available. This chapter describes how DNA microarray-based transcriptome analyses as well as cytosolic and membrane proteomics have expedited the knowledge about the physiology and metabolic regulation of . with respect to fundamental and applied research. Recent examples of emplo
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Pathways at Work: Metabolic Flux Analysis of the Industrial Cell Factory ,,oduction of various products, including 2.5 million t/a glutamate and 1.5 million t/a lysine for the food and feed industry. From early on, the industrial demand for these amino acids strongly stimulated the creation of efficient production strains, including development of progressive techniques th
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