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Functional microbial genomics [electronic resource] / edited by Brendan Wren and Nick Dorrell.

Contributor(s): Wren, Brendan [editor.] | Dorrell, Nick [editor.]Material type: TextTextSeries: Methods in microbiology ; v. 33.Publication details: Amsterdam ; Boston : Academic Press, c2002. Description: 1 online resource (xiv, 414 pages)Content type: text Media type: computer Carrier type: online resourceISBN: 0125215339 (electronic bk.); 9780125215336 (electronic bk.)Subject(s): Microbial genetics | Gene mapping | Genomics | Genetics, Microbial -- methods | Computational Biology -- methods | Genomics | Proteomics | Sequence Analysis -- methods | Cartes chromosomiques | G�enomique | G�en�etique microbienne | Genomica | Micro-organismen | Genanalyse | Labortechnik | Mikroorganismus | Gene mapping | Genomics | Microbial geneticsGenre/Form: Electronic books.Additional physical formats: Print version:: Functional microbial genomics (print)DDC classification: 576.139 LOC classification: QH434 | .F85 2002NLM classification: W1 | QW 51Other classification: 42.30 Online resources: ScienceDirect | Click here to access online Summary: Functional Microbial Genomics, edited by two leading experts in the field, provides the researcher with an up-to-date collection of articles on post-genome technologies central to studying the function of microorganisms. Since the release of the first complete genome sequence of a free-living organism in 1995, over 100 microbial genomes have been completely sequenced. The advent of new technologies for post-genomic analyses has allowed the rapid exploitation of this genome sequence information, heralding a golden era in microbial research. Functional Microbial Genomics provides in-depth accounts from scientists working with these new technologies explaining both the techniques and the ways in which they have been applied to the study of gene function in different microbial species. Methods in Microbiology is the most prestigious series devoted to techniques and methodology in the field. Established for over 30 years, Methods in Microbiology will continue to provide you with tried and tested, cutting edge protocols to directly benefit your research. * Bioinformatic approaches to genome sequence analysis * Details the design, construction and applications of DNA microarrays * Covers advances in bacterial proteome and metagenome analysis * Describes functional genomic approaches for novel antibiotic target and vaccine candidate discovery * Presents case studies where functional genomic analyses have revolutionized our understanding of model species.
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Made available through: Science Direct.

Includes bibliographical references and index.

Functional Microbial Genomics, edited by two leading experts in the field, provides the researcher with an up-to-date collection of articles on post-genome technologies central to studying the function of microorganisms. Since the release of the first complete genome sequence of a free-living organism in 1995, over 100 microbial genomes have been completely sequenced. The advent of new technologies for post-genomic analyses has allowed the rapid exploitation of this genome sequence information, heralding a golden era in microbial research. Functional Microbial Genomics provides in-depth accounts from scientists working with these new technologies explaining both the techniques and the ways in which they have been applied to the study of gene function in different microbial species. Methods in Microbiology is the most prestigious series devoted to techniques and methodology in the field. Established for over 30 years, Methods in Microbiology will continue to provide you with tried and tested, cutting edge protocols to directly benefit your research. * Bioinformatic approaches to genome sequence analysis * Details the design, construction and applications of DNA microarrays * Covers advances in bacterial proteome and metagenome analysis * Describes functional genomic approaches for novel antibiotic target and vaccine candidate discovery * Presents case studies where functional genomic analyses have revolutionized our understanding of model species.

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