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Titlebook: Bacterial Chromatin; Remus T. Dame (Faculty of Mathematics and Natural Book 2010 Springer Science+Business Media B.V. 2010 Archaea.DNA.DN

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期刊全称Bacterial Chromatin
影响因子2023Remus T. Dame (Faculty of Mathematics and Natural
视频videohttp://file.papertrans.cn/181/180265/180265.mp4
发行地址Provides an up to date review on bacterial chromatin.Covers the molecular and cellular level across disciplinary boundaries.Addresses cross-kingdom differences and similarities.Outstanding quality of
图书封面Titlebook: Bacterial Chromatin;  Remus T. Dame (Faculty of Mathematics and Natural  Book 2010 Springer Science+Business Media B.V. 2010 Archaea.DNA.DN
影响因子The birth and the development of molecular biology and, subsequently, of genetic engineering and biotechnology cannot be separated from the advancements in our knowledge of the genetics, biochemistry and physiology of bacteria and bacter- phages. Also most of the tools employed nowadays by biotechnologists are of bacterial (or bacteriophage) origin and the playground for most of the DNA manipulations still remains within bacteria. The relative simplicity of the bacterial cell, the short gene- tion times, the well defined and inexpensive culturing conditions which characterize bacteria and the auto-catalytic process whereby a wealth of in-depth information has been accumulated throughout the years have significantly contributed to generate a large number of knowledge-based, reliable and exploitable biological systems. The subtle relationships between phages and their hosts have produced a large amount of information and allowed the identification and characterization of a number of components which play essential roles in fundamental biological p- cesses such as DNA duplication, recombination, transcription and translation. For instance, to remain within the topic of this book, two
Pindex Book 2010
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Ultrastructure and Organization of Bacterial Chromosomes
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Molecular Structure and Dynamics of Bacterial Nucleoids
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Nucleoid-Associated Proteins: Structural Properties
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FIS and Nucleoid Dynamics upon Exit from Lag Phase
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