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Titlebook: Corynebacterium glutamicum; Biology and Biotechn Masayuki Inui,Koichi Toyoda Book 2020Latest edition Springer Nature Switzerland AG 2020 Co

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发表于 2025-3-21 17:43:20 | 显示全部楼层 |阅读模式
书目名称Corynebacterium glutamicum
副标题Biology and Biotechn
编辑Masayuki Inui,Koichi Toyoda
视频video
概述Highlights new techniques that will benefit biotechnologists and manufacturers alike.Updates readers on the cell physiology of, and gene regulation in, C. glutamicum.Covers even more production opport
丛书名称Microbiology Monographs
图书封面Titlebook: Corynebacterium glutamicum; Biology and Biotechn Masayuki Inui,Koichi Toyoda Book 2020Latest edition Springer Nature Switzerland AG 2020 Co
描述.This updated second edition covers the molecular biology, genome engineering tools and comprehensive analysis techniques for .Corynebacterium glutamicum.. Aside from modern omics-based approaches, the authors also focus on cell physiology, including cell division, central carbon metabolic pathways, and the respiratory chain. Readers will learn how primary mechanisms like energy metabolism can be applied in processes like biorefinery. Newly added topics include cell envelope structures and aromatic compound metabolism in C. glutamicum.. .These chapters will be particularly useful for those interested in the microbial production of commodity chemicals, fuels, and proteins. ..Corynebacteriacea are already some of the most important industrial microorganisms. Understanding the cell physiology of .C. glutamicum. will help manufacturers to increase their product range and productivity through efficient metabolic engineering..
出版日期Book 2020Latest edition
关键词Corynebacterium glutamicum; Transcriptional Regulation; Post-translational Regulation; Metabolome; Metab
版次2
doihttps://doi.org/10.1007/978-3-030-39267-3
isbn_softcover978-3-030-39269-7
isbn_ebook978-3-030-39267-3Series ISSN 1862-5576 Series E-ISSN 1862-5584
issn_series 1862-5576
copyrightSpringer Nature Switzerland AG 2020
The information of publication is updating

书目名称Corynebacterium glutamicum影响因子(影响力)




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书目名称Corynebacterium glutamicum网络公开度学科排名




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书目名称Corynebacterium glutamicum被引频次学科排名




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书目名称Corynebacterium glutamicum读者反馈学科排名




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Respiratory Chain and Energy Metabolism of ,ia represented by .. . is a Gram-positive facultative aerobe with a thick cell wall comprising, besides the peptidoglycan layer, a layer of mycolic acid and arabinogalactan. Industrially, glutamic acid production is induced by various stresses such as biotin limitation or the addition of surfactants
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Sigma Factors of RNA Polymerase in , a model organism for corynebacteria in respect of studies of regulatory networks controlled by sigma factors of RNA polymerase, because its sigma factors represent a common subset, which was found in most . species. The . genome encodes seven σ factors: A primary σ., a primary-like σ. and five σ fa
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Global Transcriptional Regulators Involved in Carbon, Nitrogen, Phosphorus, and Sulfur Metabolisms it enzyme activity levels and at mRNA levels, scarcity in preferred nutrients causes transcriptional induction of genes for alternative nutrient source utilization. Transcriptional regulatory systems controlling metabolisms of carbon, nitrogen, phosphate, and sulfur in . have been extensively studied
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Recent Advances in Amino Acid Productionhis giant market has been underpinned largely by amino acid fermentation technologies in which . has played a leading role. Various genetic engineering tools and global analysis techniques for this bacterium have been developed and successfully applied with a great impact on the amino acid industry.
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Pathways at Work: Metabolic Flux Analysis of the Industrial Cell Factory ,oximately 6 million tons of the amino acids .-glutamate and .-lysine. In addition to these well-known traditional fermentation products, the portfolio of . has impressively expanded over the past years and meanwhile comprises more than 70 natural and non-natural chemicals, materials, fuels, and heal
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Metabolic Engineering in ,. In the last more than five decades, . strains have been selected and screened after undirected mutagenesis. This approach yielded industrially relevant strains, however, it was limited by the little insight that could be gained hampering transfer to related processes. Genetic engineering, the comp
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