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|a UAMI
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245 |
0 |
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|a Cell division :
|b theory, variants, and degradation /
|c Yuri N. Golitsin and Mikhail C. Krylov, editors.
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264 |
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|a New York :
|b Nova Science Publishers,
|c [2010]
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300 |
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|a Cell biology research progress series
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|a Includes bibliographical references and index.
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|a Description based on print version record and CIP data provided by publisher.
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|a CELL DIVISION: THEORY, VARIANTS AND DEGRADATION ; CELL DIVISION: THEORY, VARIANTS AND DEGRADATION ; CONTENTS ; PREFACE ; Chapter 1 DIRECT AND REVERSE GENETICS FOR CYANOBACTERIAL CELL DIVISION STUDIES IN GENOMIC AND PROTEOMIC ERA ; ABSTRACT ; INTRODUCTION ; GENETICAL APPROACHES TO STUDY CYANOBACTERIAL CELL DIVISION ; GENOMIC AND PROTEOMIC STUDIES OF CYANOBACTERIAL CELL DIVISION GENES ; CONCLUSION ; ACKNOWLEDGEMENTS ; REFERENCES ; Chapter 2 MICROALGAE CELL AND POPULATION PERFORMANCE UNDER POLLUTION IMPACT ; ABSTRACT ; INTRODUCTION ; MATERIALS AND METHODS ; 1. Experimental Organisms
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505 |
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|a 2. Toxicity Tests 3. Chromium Contamination Effect (Dose-Response Relationships) ; 4. The Photosynthetic Characteristics of Algal Cell ; 5. Fluctuation Test: Analysis of Transformation from Chromium Sensitivity to Chromium Resistance ; RESULTS AND DISCUSSION ; 1. Intrapopulational Changes of Algae under Toxic Exposure ; 1.1. Size-age distribution, coenobial composition and functional characteristics of S. quadricauda control culture. ; 1.2. Effect of toxicants at low concentrations ; 1.3. Effect of toxicants at moderate concentrations ; 1.4. Effect of toxicants at sublethal concentrations
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505 |
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|a 1.5. Effect of toxicants at lethal concentrations 1.6. S. quadricauda cell cycle changes after the toxic treatment ; 2. Structural Changes and Adaptation of Algal Population under Different Regimens of Toxic Exposure.; 2.1. Chromium contamination effect investigation. ; 2.2. The number of the toxicant-resistant cells within S. quadricauda population ; 2.3. Analysis of transformation from chromium sensitivity to chromium resistance. Mutation rate evaluation; 3. Algostatic Effect of Silver; CONCLUSION ; REFERENCES
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505 |
8 |
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|a Chapter 3 CELL DIVISION AND CELL ELONGATION OF CORYNEBACTERIUM GLUTAMICUM, A ROD-SHAPED BACTERIUM THAT LACKS ACTIN-LIKE HOMOLOGUES ABSTRACT ; INTRODUCTION ; MORPHOLOGICAL ECCENTRICITIES OF CORYNEBACTERIA: CLUB SHAPE, OUTER MEMBRANE, PLEOMORPHISM, AND SNAPPING DIVISION ; CELL ELONGATION AT THE CELL POLES ; PENICILLIN-BINDING PROTEINS ; GENES INVOLVED IN CORYNEBACTERIAL CELL DIVISION AND ITS REGULATION ; CONCLUSION ; ACKNOWLEDGMENTS ; REFERENCES ; Chapter 4 THE IMPACT OF CELL CYCLE REGULATION ON THE TUMORIGENESIS PROCESS ; ABSTRACT ; CELL DIVISION: LIFE GUARDIAN OR DEATH PROMOTER
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505 |
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|a THE CELL PROLIFERATION STIMULI THE ROLE OF CELL CYCLE CONTROL IN ONCOGENESIS ; REFERENCES ; Chapter 5 ONE RING TO BIND THEM ALL AT THE CENTRE OF THE CELL ; ABSTRACT; INTRODUCTION ; 1. Cell Division Site Determination ; (a) Positive signals at the centre of the cell ; (b) Negative signals from the cell ends ; 2. Novel Regulators Defining the Site for CAR Formation ; (a) Cdr2, a novel regulator of cell division site specification ; (b) Kin1, a regulator of internal cellular organization, interacts with Pom1 ; 3. Assembly of the CAR at the Cell Equator ; (a) The cortical node model
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546 |
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|a English.
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590 |
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|a eBooks on EBSCOhost
|b EBSCO eBook Subscription Academic Collection - Worldwide
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650 |
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|a Cell division.
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|x Division.
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|a Golitsin, Yuri N.
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|a Krylov, Mikhail C.
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776 |
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|i Print version:
|t Cell division
|d New York : Nova Science Publishers, c2010.
|z 9781608769865 (hc)
|w (DLC) 2009051574
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|a Cell biology research progress.
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