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Titlebook: Gene Function; E. coli and its heri Robert E. Glass Book 1982 Robert E. Glass 1982 DNA.Escherichia coli.RNA.Termination.biology.enzymes.gen

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书目名称Gene Function
副标题E. coli and its heri
编辑Robert E. Glass
视频video
图书封面Titlebook: Gene Function; E. coli and its heri Robert E. Glass Book 1982 Robert E. Glass 1982 DNA.Escherichia coli.RNA.Termination.biology.enzymes.gen
描述My aim in writing Gene Function has been to present an up-to-date picture ofthe molecular biology of Escherichia coli. I have not attempted a chronological description, believing that a mechanistic account is more useful for such a highly developed field. I have divided the book into four parts. Part I is a general introduction to bacterial systems, their genetic material, structure, composition and growth. It has seemed desirable to include herein a brief preview of the remaining text, to introduce the nomenclature and to help place subsequent chapters in perspective. The expression of genetic material and its perturbation through mutation is considered in Part II. Part III discusses how the transfer of prokaryotic genetic material can be mediated by plasmids and bacteriophages. It describes the DNA transactions involved (replication, recombination and repair) and ends with a description of the genetic and biochemical techniques employed in the study of gene organisation. Finally, Part IV considers the control of expression of bacterial, plasmid and phage genes. Key reviews are listed at the end of each chapter.
出版日期Book 1982
关键词DNA; Escherichia coli; RNA; Termination; biology; enzymes; gene expression; genes; growth; metabolism; molecul
版次1
doihttps://doi.org/10.1007/978-1-4684-6689-8
isbn_softcover978-0-7099-0082-5
isbn_ebook978-1-4684-6689-8
copyrightRobert E. Glass 1982
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Bacteriophagesply within the susceptible host, giving rise to progeny phage upon cell lysis and death; and . phages which can either enter this ., or . the cell, undergoing controlled replication within the cell without lysis.
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Reactions of DNAc material — the breaking and making of internucleotide bonds or the modification of DNA nucleotides — and not the passive use of DNA as a template, as in transcription (Chapter 2). These processes, DNA replication, recombination and repair (mutation has been discussed in Chapter 3), have many gene
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Mutationdifferent . of that gene; these homologues may differ in one or more nucleotide pairs. The selective advantage that any one allele imparts to the mutant strain allows its preferential survival. Non-lethal chromosomal lesions (see below) are the source of genetic variation and, thus, provide the basis for evolution.
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Control of Extrachromosomal Genetic Elementsir replication. Although multiplication is usually catalysed by mainly host-coded functions, genetic elements that replicate in . generally contain a definite origin site as well as supplying specific replication proteins.
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