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Bacterial Circadian Programs

E-BookPDF1 - PDF WatermarkE-Book
333 Seiten
Englisch
Springer Berlin Heidelbergerschienen am01.02.20092009
Since the discovery of circadian rhythms in cyanobacteria in the late 1980s, the field has exploded with new information. The cyanobacterial model system for studying circadian rhythms, 'Synechococcus elongatus', has allowed a detailed genetic dissection of the bacterial clock due to the methods currently available in molecular, structural, and evolutionary biology.

This book addresses multiple aspects of bacterial circadian programs: the history and background of the cyanobacteria and circadian rhythms in microorganisms, the molecular basis, structure, and evolution of the circadian clock, entrainment of the oscillator with the environment and the control of downstream processes by the clock, the demonstration of adaptive significance and the prokaryotic clock's remarkable stability, and mathematical and synthetic oscillator models for clock function.

Experts in the field provide a timely and comprehensive review and a stepping-stone for future work on this amazing group of microorganisms and timing.
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Produkt

KlappentextSince the discovery of circadian rhythms in cyanobacteria in the late 1980s, the field has exploded with new information. The cyanobacterial model system for studying circadian rhythms, 'Synechococcus elongatus', has allowed a detailed genetic dissection of the bacterial clock due to the methods currently available in molecular, structural, and evolutionary biology.

This book addresses multiple aspects of bacterial circadian programs: the history and background of the cyanobacteria and circadian rhythms in microorganisms, the molecular basis, structure, and evolution of the circadian clock, entrainment of the oscillator with the environment and the control of downstream processes by the clock, the demonstration of adaptive significance and the prokaryotic clock's remarkable stability, and mathematical and synthetic oscillator models for clock function.

Experts in the field provide a timely and comprehensive review and a stepping-stone for future work on this amazing group of microorganisms and timing.
Details
Weitere ISBN/GTIN9783540884316
ProduktartE-Book
EinbandartE-Book
FormatPDF
Format Hinweis1 - PDF Watermark
FormatE107
Erscheinungsjahr2009
Erscheinungsdatum01.02.2009
Auflage2009
Seiten333 Seiten
SpracheEnglisch
IllustrationenXI, 333 p.
Artikel-Nr.1443542
Rubriken
Genre9200

Inhalt/Kritik

Inhaltsverzeichnis
1;Preface;5
2;Contents;7
3;Contributors;9
4;Classic Circadian Characteristics: Historical Perspective and Properties Relative to the Synechococcus elongatus PCC 7942 Model;12
5;Speculation and Hoopla: Is Diversity Expected in Cyanobacterial Circadian Timing Systems?;29
6;Circadian Rhythm of Cyanothece RF-1 (Synechococcus RF-1);48
7;The Decade of Discovery: How Synechococcus elongatus Became a Model Circadian System 1990-2000;71
8;The Kai Oscillator;95
9;NMR Studies of a Timekeeping System;110
10;Structural Aspects of the Cyanobacterial KaiABC Circadian Clock;128
11;Mechanisms for Entraining the Cyanobacterial Circadian Clock System with the Environment;148
12;Factors Involved in Transcriptional Output from the Kai- Protein- Based Circadian Oscillator;164
13;Chromosome Compaction: Output and Phase;176
14;Cell Division Cycles and Circadian Rhythms;190
15;The Adaptive Value of the Circadian Clock System in Cyanobacteria;212
16;Stability and Noise in the Cyanobacterial Circadian Clock;229
17;The Circadian Clock Gear in Cyanobacteria: Assembled by Evolution;246
18;Circadian Clocks of Synechocystis sp. Strain PCC 6803, Thermosynechococcus elongatus, Prochlorococcus spp., Trichodesmium spp. and Other Species;264
19;Mathematical Modeling of the In Vitro Cyanobacterial Circadian Oscillator;288
20;A Synthetic Biology Approach to Understanding Biological Oscillations: Developing a Genetic Oscillator for Escherichia coli;306
21;Index;335
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