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Titlebook: Metabolic Engineering; Jens Nielsen,L. Eggeling,W. H. Zyl Book 2001 Springer-Verlag Berlin Heidelberg 2001 Amino acid.Biochemical Engineer

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Metabolic Engineering of , for Xylose Utilization,e transport, initial xylose metabolism, selection of host strains, transformation and classical breeding techniques applied to industrial polyploid strains as well as modeling of xylose metabolism are discussed. The production and composition of the substrates — lignocellulosic hydrolysates — is bri
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Metabolic Engineering of the Morphology of , ,process productivity. The relationship between process parameters and morphology is complex: the interactions between process variables, productivity, rheology, and macro- and micro-morphology create difficulties in defining and separating cause and effect. Additionally, organism physiology contribu
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Process Development and Metabolic Engineering for the Overproduction of Natural and Unnatural Polykmentation strains and processes for polyketide production. Classical strain improvement procedures, process development methods, and metabolic engineering approaches are described. The elucidation of molecular mechanisms that underlie polyketide biosynthesis has played an important role in each of these areas over the past few years.
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Book 2001.Advances in . .Biochemical Engineering/Biotechnology., developments in different areas of metabolic engineering are reviewed. The contributions discuss the application of metabolic engineering in the improvement of yield and productivity - illustrated by amino acid production and the production of
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0724-6145 are required from chemistry, biochemistry, microbiology, genMetabolic engineering is a rapidly evolving field that is being applied for the optimization of many different industrial processes. In this issue of .Advances in . .Biochemical Engineering/Biotechnology., developments in different areas of
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