de
en
Schliessen
Detailsuche
Bibliotheken
Projekt
Impressum
Datenschutz
zum Inhalt
Detailsuche
Schnellsuche:
OK
Ergebnisliste
Titel
Titel
Inhalt
Inhalt
Seite
Seite
Im Dokument suchen
Pobigaylo, Nataliya: Identification of genes in Sinorhizobium meliloti relevant to symbiosis and competitiveness using signature tagged transposons. 2006
Inhalt
B.1 NITROGEN FIXATION
B.2 SYMBIOSIS BETWEEN RHIZOBIA AND THE LEGUMINOUS PLANTS
B.2.1 Determinate and indeterminate nodules
B.2.2 Formation of indeterminate nodules
B.2.3 Structure of mature indeterminate nodules
B.2.4 Bacterial genes involved in competitiveness, efficient nodule formation and nitrogen fixation
B.2.4.1 Genes important for survival and competitiveness in the rhizosphere
B.2.4.2. Genes important for the formation of nodules and infection
B.2.4.3. Genes important for the efficient nitrogen fixation
B.3 SYSTEMATIC APPROACHES TO STUDY THE GENES IMPORTANT FOR THE SYMBIOSIS AND COMPETITIVENESS
B.3.1 Proteomics
B.3.2 DNA macro- and microarrays in the analysis of gene expression
B.3.3 Metabolomics
B.3.4 Promoter-reporter gene fusion mutant libraries and in vivo expression technology
B.3.5 Signature-tagged mutagenesis
B.4 OBJECTIVES OF THIS WORK
B.5 PRESENTATIONS
B.5.1 Publications
B.5.2 Conference posters
C.1 CONSTRUCTION OF THE mTn5-STM TRANSPOSON AND THE CARRIER PLASMID pG18-STM
C.2 CLONING OF TAGS INTO THE mTn5-STM TRANSPOSON
C.3 TRANSPOSON MUTAGENESIS OF S. MELILOTI
C.4 MAPPING OF THE TRANSPOSON INSERTION SITES
C.5 STATISTICAL ANALYSIS OF THE MUTANT LIBRARY
C.6 CREATION OF TWO SETS OF MUTANTS FOR THE SUBSEQUENT EXPERIMENTS.
C.7 PILOT COMPETITION EXPERIMENTS IN FREE-LIVING CONDITIONS
C.8 TWO-CHANNEL TAG MICROARRAY FOR THE DETECTION OF THE TAGS
C.9 ANALYSIS OF TAG-MICROARRAY DATA
C.9.1 Normalization and filtering
C.9.2 Clustering
C.9.3 Confirmation of biological significance of the applied statistical analysis
C.10 STUDY OF SURVIVAL AND COMPETITIVENESS OF MUTANTS IN PLANTA
C.10.1 Screening procedure
C.10.2 Determination of quantity of mutants in single nodules
C.10.3 Phenotype confirmation for attenuated mutants
C.10.4 Symbiotic phenotypes other than reduced symbiotis competitiveness
C.10.4.1 Kinetics of nodule formation
C.10.4.2 Acetylene reduction assay
C.10.4.3 Histochemical GUS staining
D.1 SIGNATURE TAGGED TRANSPOSON MUTAGENESIS IS AN EFFICIENT APPROACH TO STUDY GENES INVOLVED IN SURVIVAL OF RHIZOBIA IN SYMBIOTIC AND FREE-LIVING CONDITIONS
D.2 S. MELILOTI MUTANTS, KNOWN TO BE IMPAIRED IN SYMBIOSIS, WERE DETECTED AS ATTENUATED IN STM EXPERIMENT
D.3 INDIVIDUAL COMPETITIVENESS TEST CONFIRMED THE STM EXPERIMENT RESULTS FOR THE MOST OF CHECKED MUTANTS.
D.4 FOUR MUTANTS, IMPAIRED IN SYMBIOTIC COMPETITIVENESS, EXHIBIT ALSO OTHER SYMBIOTIC PHENOTYPES
D.5 CONCLUSIONS AND OUTLOOK
E.1 MATERIALS
E.1.1 Sources for chemicals and kits
E.1.2 Bacterial strains and plasmids
E.1.3 Plant material
E.1.4 Primers and other oligonucleotides
E.1.5 Growth media and supplements
E.1.5.1 Media
E.1.5.2 Supplements
E.1.6 Buffers and solutions
E.1.6.1 DNA- and enzyme buffers
E.1.6.2 DNA electrophoresis buffers
E.1.6.3 Solutions for microarray-hybridizations
E.1.6.4 Buffer for the preparation of competent E. coli cells
E.1.6.5 GUS staining buffer
E.1.7 Software and databases
E.1.8 Contents and layout of the tag microarray
E.2 METHODS
E.2.1. Cultivation of bacteria
E.2.1.1 Growth conditions
E.2.1.2 Determination of bacterial cell number
E.2.1.3 Storage of bacterial strains
E.2.2 Cultivation of plants and harvesting of nodules
E.2.2.1 Sterilization of M. sativa seeds
E.2.2.2 Cultivation of plants on Petri dishes and inoculation by S. meliloti
E.2.2.3 Cultivation of plants in aeroponic system
E.2.2.4 Harvesting and sterilization of nodules from the agar plates
E.2.2.5 Harvesting and sterilization of nodules from the aeroponic tank
E.2.2.6 Exogenous climatic factors for plant growth
E.2.3 DNA transfer
E.2.3.1. Transformation of E. coli
E.2.3.2 Conjugation
E.2.4. Isolation and purification of DNA
E.2.4.1. Isolation of plasmid DNA from bacteria (E. coli)
E.2.4.2 Isolation of genomic DNA from bacteria (S. meliloti)
E.2.4.3. Isolation of pure DNA from M. sativa nodules
E.2.4.4. Isolation of DNA from M. sativa nodules by boiling
E.2.4.5. Purification of PCR products
E.2.5 Visualization and quantification of DNA
E.2.5.1 Agarose gel electrophoresis
E.2.5.2 Checking fluorescently labeled targets on agarose gels prior to microarray hybridizations
E.2.5.3 Quantification of DNA
E.2.6 Polymerase chain reaction (PCR)
E.2.7 Cloning
E.2.7.1 DNA digestion using restriction enzymes
E.2.7.2 DNA annealing
E.2.7.3 DNA ligation
E.2.7.4 Blunting of overhangs with Klenow fragment
E.2.7.5 Dephosphorylation of DNA 5´-termini
E.2.8 Large scale methods (96-well plate format)
E.2.8.1 Annealing of tags
E.2.8.2 DNA digestion with KpnI restriction enzyme
E.2.8.3 Ligation
E.2.8.4 Transformation of E. coli
E.2.8.5 Conjugation
E.2.9 Growth conditions for bacteria in competition experiments in free-living conditions
E.2.10 Acetylene reduction assay
E.2.11 Histochemical GUS staining
E.2.12 Microarray hybridization
E.2.13 Tag-microarray data analysis
E.2.13.1 Pre-processing
E.2.13.2 Normalization and filtering
E.2.13.3 Cluster analysis
TABLE G.1. CLONED SIGNATURE TAGS
TABLE G.2. CHARACTERISTICS OF ALL MUTANTS IN THE EXPERIMENTAL SET 1 IN FREE-LIVING CONDITIONS
TABLE G.3. RESULTS OF IN PLANTA STM EXPERIMENT FOR SET 1
TABLE G.4. RESULTS OF IN PLANTA STM EXPERIMENT FOR SET 2
G.5 LIST OF ABBREVIATIONS
G.6 LIST OF FIGURES
G.7 LIST OF TABLES
G.8 ACKNOWLEDGEMENTS