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|a 9781908818201
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|a 1908818204
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|a QH506
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1 |
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|a Shimizu, Kazuyuki
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|a Bacterial cellular metabolic systems
|b metabolic regulation of a cell system with 13C-metabolic flux analysis
|c Kazuyuki Shimizu
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260 |
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|a Oxford
|b Woodhead Pub.
|c 2013
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300 |
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|a xxvi, 470 pages
|b illustrations
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505 |
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|a Includes bibliographical references and index
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505 |
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|a 1. Main metabolism -- 2. Brief overview of metabolic regulation of a bacterial cell -- 3. Metabolic regulation by global regulators in response to culture environment -- 4. Conventional flux balance analysis and its applications -- 5. 13C-metabolic flux analysis and its applications -- 6. Effect of a specific-gene knockout on metabolism
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653 |
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|a Bacteria / cytology
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653 |
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|a Microbial metabolism / fast
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653 |
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|a Biological systems / http://id.loc.gov/authorities/subjects/sh85014196
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653 |
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|a Bacterial genetics / http://id.loc.gov/authorities/subjects/sh85010849
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653 |
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|a Bacteria / metabolism
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653 |
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|a Metabolic Networks and Pathways
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653 |
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|a Cellules / Interaction
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|a SCIENCE / Life Sciences / Biochemistry / bisacsh
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|a Systèmes biologiques
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|a Génétique bactérienne
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653 |
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|a Cell interaction / http://id.loc.gov/authorities/subjects/sh85021649
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653 |
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|a Metabolism / Regulation / fast
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653 |
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|a Biological systems / fast
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653 |
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|a Métabolisme / Régulation
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653 |
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|a Cell Communication
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653 |
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|a Metabolism / Regulation / http://id.loc.gov/authorities/subjects/sh85084016
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653 |
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|a Cell interaction / fast
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653 |
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|a Bactéries / Métabolisme
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653 |
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|a Microbial metabolism / http://id.loc.gov/authorities/subjects/sh85084763
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653 |
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|a Bacterial genetics / fast
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041 |
0 |
7 |
|a eng
|2 ISO 639-2
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989 |
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|b OREILLY
|a O'Reilly
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|a Woodhead Publishing series in biomedicine
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776 |
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|z 1907568018
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776 |
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|z 9781908818201
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776 |
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|z 1908818204
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|z 9781907568015
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856 |
4 |
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|u https://learning.oreilly.com/library/view/~/9781907568015/?ar
|x Verlag
|3 Volltext
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|a 384
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|a 331
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|a 500
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|a 572.4
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|a This volume focuses on the highly topical subject of metabolic regulation to culture environments. Detailed analysis is provided from the gene level to metabolic level regulation. Importantly, the most recent modelling approaches are described
|