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Titlebook: Engineering of Microbial Biosynthetic Pathways; Vijai Singh,Ajay Kumar Singh,Chaitanya G. Joshi Book 2020 Springer Nature Singapore Pte Lt

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Microbial Production of Industrial Proteins and Enzymes Using Metabolic Engineering,and utilizes this for the improvement of product that could be either metabolite, enzyme, or any protein. Advances in various field of science specifically r-DNA technology, bioinformatics, synthetic biology, molecular genetics as well as other protein engineering technologies had given wings to met
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Microbial Production of Antibiotics Using Metabolic Engineering,d microbial strains. Since, antibiotic yield and productivity are the keen design parameters therefore in metabolic engineering main focus is directed on the carbon flux to increase the antibiotic yield. To achieve this goal, various approaches like genetic modifications, heterologous production, an
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Revealing Function of Amino Acids in Nitrifying and Anammox Systems Through Chromatography and Metac nitrifying and anammox bacteria. In addition, soluble microbial products (SMP) also play very important roles in biological degradation in these processes. Therefore, more comprehensive analytical methods are required for better characterization of EPS and SMP. Chromatography and metagenomic analy
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https://doi.org/10.1007/978-3-540-69146-4g tools allow industrial strains to improve the productivity and yield of biomolecules or metabolites. In this chapter, we highlight the recent advances, challenges and future perspective in metabolic engineering towards industrial-scale production of biomolecules.
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https://doi.org/10.1057/9780230597440e development of microbial cell factories including high-throughput screening and dynamic metabolic engineering are reviewed. Finally, the future perspectives on biosensors and their applications are discussed.
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The Global Curse of the Federal Reserved metabolic alterations are introduced which resulted in substantial elevation of the existing conventional production processes of antibiotics. This book chapter deals with current state of art in metabolic engineering for higher yield of antibiotics.
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https://doi.org/10.1007/978-3-642-11522-6modify the existing enzyme and pathway, related to desired product. This chapter gives brief insight into different strategies and techniques conferring metabolic engineering and highlights the challenges on more advanced level.
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