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Team:Alberta/ProtocolsTeam:Alberta/References/AuthorTeam:Alberta/References/Keyword
Team:Alberta/References/Publications/A family of LIC vectors for high through-put cloning and purification of proteinsTeam:Alberta/References/Publications/A microfluidic mammalian cell sorter based onfluorescence detectionTeam:Alberta/References/Publications/Accurate multiplex gene synthesisfrom programmable DNA microchips
Team:Alberta/References/Publications/An improved method for deleting large regions of Escherichia coli K-12 chromosome using a combination of Cre/loxP and lambda redTeam:Alberta/References/Publications/An inexpensive and portable microchip-based platform for integratedRT–PCR and capillary electrophoresisTeam:Alberta/References/Publications/An integrated microfluidic biochemical detection system forprotein analysis with magnetic bead-based samplingcapabilities
Team:Alberta/References/Publications/Binding of biotinylated DNA to streptavidin-coated polystyrene latex: effects of chain length and particle sizeTeam:Alberta/References/Publications/BioWarehouse: a bioinformatics database warehouse toolkitTeam:Alberta/References/Publications/Biochemistry of homologous recombination in Escherichia coli
Team:Alberta/References/Publications/Cell size and nucleoid organization of engineered Escherichia coli cells with a reduced genomeTeam:Alberta/References/Publications/Chromosomal Locations of the Genes for rRNA in Escherichia coli K-12tTeam:Alberta/References/Publications/Cloning and stable maintenance of 300-kilobase-pair fragments of human DNA in Escherichia coli using an F-factor-based vector
Team:Alberta/References/Publications/Coding-sequence determinants of gene expression in Escherichia coliTeam:Alberta/References/Publications/Compilation and analysis of Escherichia coli promoter DNA sequencesTeam:Alberta/References/Publications/Complete chemical synthesis, assembly, and cloning of a Mycoplasma genitalium
Team:Alberta/References/Publications/Complete set of ORF clones of Escherichia coli ASKA library (a complete set of Escherichia coli K-12 ORF archive): unique resources for biological researchTeam:Alberta/References/Publications/Conditional-Replication, Integration, Excision, and Retrieval Plasmid-Host Systems for Gene Structure-Function Studies of BacteriaTeam:Alberta/References/Publications/Construction of Escherichia coli K-12 in-frame, single gene knockout mutants: the Keio collection
Team:Alberta/References/Publications/Construction of consecutive deletions of the Escherichia coli chromosomeTeam:Alberta/References/Publications/Construction of long chromosomal deletion mutants of Escherichia coli and minimization of the genomeTeam:Alberta/References/Publications/DNA Replication
Team:Alberta/References/Publications/DNA cloning by homologous recombination in Escherichia coliTeam:Alberta/References/Publications/DNA polymerase III holoenzyme: structure and function of a chromosomal replicating machineTeam:Alberta/References/Publications/Determination of the core of a minimal bacterial gene set
Team:Alberta/References/Publications/Development of a microfluidic biosensor module for pathogen detectionTeam:Alberta/References/Publications/Dynamic strength of molecular adhesion bondsTeam:Alberta/References/Publications/Effect of dna Mutations on the Replication of Plasmid pSC101 in Escherichia coli K-12
Team:Alberta/References/Publications/Electroporation of cells in microfluidic devices: a reviewTeam:Alberta/References/Publications/Emergent properties of reduced genome Escherichia coliTeam:Alberta/References/Publications/Engineering BioBrick vectors from BioBrick parts
Team:Alberta/References/Publications/Engineering a reduced Escherichia coli genomeTeam:Alberta/References/Publications/Engineering of bacterial ribosomes: Replacement of all seven Escherichia coli rRNA operons by a single plasmid-encoded operonTeam:Alberta/References/Publications/Enzymatic assembly of DNA molecules up to several hundred kilobases
Team:Alberta/References/Publications/Escherichia coli physiology in Luria-Bertani brothTeam:Alberta/References/Publications/Experimental determination and systems level analysis of essential genes in Escherichia coli MG1665Team:Alberta/References/Publications/Fermentation pathways of Escherichia coli, The
Team:Alberta/References/Publications/Folding and unfolding single RNA molecules under tensionTeam:Alberta/References/Publications/Gene replacement without selection: regulated suppression of amber mutations in Escherichia coliTeam:Alberta/References/Publications/Gene splicing and mutagenesis by PCR driven overlap extension
Team:Alberta/References/Publications/Genome-wide expression profiling in Escherichia coli K-12Team:Alberta/References/Publications/Global analysis of mRNA decay and abundance in Escherichia coli at single-gene resolution using two-color fluorescent DNA microarraysTeam:Alberta/References/Publications/Highly accurate genome sequences of Escherichia coli K-12 strains MG1655 and W3110
Team:Alberta/References/Publications/Idempotent Vector Design for Standard Assembly of BiobricksTeam:Alberta/References/Publications/Identification of spacer tRNA genes in individual ribosomal RNA transcription units of Escherichia coliTeam:Alberta/References/Publications/Identification of the mob Genes of Plasmid pSC101 and Characterization of a Hybrid pSC101-R1162 System for Conjugal Mobilization
Team:Alberta/References/Publications/In vivo transposition of mariner based elements in enteric bacteria and mycobacteriaTeam:Alberta/References/Publications/Lab-on-a-chip: applications in proteomicsTeam:Alberta/References/Publications/Magnetic bead handling on-chip: new opportunities for analytical applications
Team:Alberta/References/Publications/Markerless gene replacement in Escherichia coli stimulated by double strand break in the chromosomeTeam:Alberta/References/Publications/Microelectromagnet for magnetic manipulation in lab-on-a-chip systemsTeam:Alberta/References/Publications/Microfabricated Device for DNA and RNA Amplification by Continuous-Flow Polymerase Chain Reaction and Reverse Transcription-Polymerase Chain Reaction with Cycle Number Selection
Team:Alberta/References/Publications/Microfluidic PicoArray synthesis ofoligodeoxynucleotides and simultaneous assembling of multiple DNA sequencesTeam:Alberta/References/Publications/Microfluidic chip: Next generation platform for systems biologyTeam:Alberta/References/Publications/Microfluidic devices fabricated inpoly(dimethylsiloxane) for biological studies
Team:Alberta/References/Publications/Monolithic MicrofabricatedValves and Pumps by MultilayerSoft LithographyTeam:Alberta/References/Publications/Nucleic acid purification using microfabricated silicon structuresTeam:Alberta/References/Publications/On-chip magnetic bead microarray using hydrodynamic focusing in apassive magnetic separator
Team:Alberta/References/Publications/On-chip oligonucleotide ligation assay using one-dimensional microfluidic beads array for the detection of low-abundant DNA point mutationsTeam:Alberta/References/Publications/On-chip transformation of bacteriaTeam:Alberta/References/Publications/One-step inactivation of chromosomal genes in Escherichia coli K-12 using PCR products
Team:Alberta/References/Publications/Operon Structure of dnaT and dnaC Genes Essential for Normal and Stable DNA Replication of Escherichia coli ChromosomeTeam:Alberta/References/Publications/PCR microfluidic devices for DNA amplificationTeam:Alberta/References/Publications/Phage integrases: biology and applications
Team:Alberta/References/Publications/Primary structure of the essential replicon of the plasmid pSC101Team:Alberta/References/Publications/Programming gene expression with combinatorial promotersTeam:Alberta/References/Publications/Rapid and efficient construction of markerless deletions in the Escherichia coli genome
Team:Alberta/References/Publications/Rebuilding microbial genomesTeam:Alberta/References/Publications/Recombineering with tolC as a selectable/counter-selectable marker: remodeling the rRNA operons in Escherichia coliTeam:Alberta/References/Publications/Refactoring bacteriophage T7
Team:Alberta/References/Publications/Refinement and standardization of synthetic biological parts and devicesTeam:Alberta/References/Publications/Replication of plasmid pSC101Team:Alberta/References/Publications/Scarless engineering of the Escherichia coli genome
Team:Alberta/References/Publications/Setting the standard in synthetic biologyTeam:Alberta/References/Publications/Shear-induced degradation of plasmid DNATeam:Alberta/References/Publications/Shear breakage of DNA
Team:Alberta/References/Publications/Shear degradation of DNATeam:Alberta/References/Publications/Shear induced assembly of lambda phage DNATeam:Alberta/References/Publications/Shear unzipping of DNA
Team:Alberta/References/Publications/Simple and highly efficient BAC recombineering using galK selectionTeam:Alberta/References/Publications/Site-directed Mutational Analysis for the ATP Binding of DnaA ProteinTeam:Alberta/References/Publications/Small volume PCR in PDMS biochips with integrated fluidcontrol and vapour barrier
Team:Alberta/References/Publications/Stochastic simulations of DNA in flow: dynamics and the effects of hydrodynamic interactionsTeam:Alberta/References/Publications/Structural basis for uracil recognition by archaeal family B DNA polymerasesTeam:Alberta/References/Publications/Techniques: recombinogenic engineering - new options for cloning and manipulating DNA
Team:Alberta/References/Publications/The Digital Revolution: A New Paradigm forMicrofluidicsTeam:Alberta/References/Publications/The Heat-Shock-Regulated grpE Gene of Escherichia coli Is Required for Bacterial Growth at All Temperatures but Is Dispensable in Certain Mutant BackgroundsTeam:Alberta/References/Publications/The adjacent dnaZ and dnaX genes of Escherichia coli are contained within one continuous open reading frame
Team:Alberta/References/Publications/The effect of hydrodynamic shear of DNA from T2 and T4 bacteriophagesTeam:Alberta/References/Publications/The replication-related organization of bacterial genomesTeam:Alberta/References/Publications/Transformation of Escherichia coli with large DNA molecules by electroporation
Team:Alberta/References/Publications/Triad pattern algorithms for predicting strong promoter candidates in bacterial genomesTeam:Alberta/References/Publications/USERTM friendly DNA engineering and cloning method by uracil excisionTeam:Alberta/References/Publications/Vector NTI, a balanced all-in-one sequence analysis suite
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Team:ArtScienceBangalore/Notebook/Bacterial Transformation : The ProcessTeam:ArtScienceBangalore/Notebook/Confocal microscopeTeam:ArtScienceBangalore/Notebook/Design&Technology
Team:ArtScienceBangalore/Notebook/Discussion over LunchTeam:ArtScienceBangalore/Notebook/EthicsTeam:ArtScienceBangalore/Notebook/Gel Electrophorosis
Team:ArtScienceBangalore/Notebook/General Design LinksTeam:ArtScienceBangalore/Notebook/Ideas for BacteriaTeam:ArtScienceBangalore/Notebook/Imaging
Team:ArtScienceBangalore/Notebook/Mukund's Brief Overview on Synthetic Biology BasicsTeam:ArtScienceBangalore/Notebook/Read hereTeam:ArtScienceBangalore/Notebook/Step 1 - Taking dry DNA from wells
Team:ArtScienceBangalore/Notebook/Step 2 - Transforming competent cellsTeam:ArtScienceBangalore/Notebook/Streaking and Spreading to obtain bacterial coloniesTeam:ArtScienceBangalore/Notebook/Synthetic Biology
Team:ArtScienceBangalore/Notebook/The Bacterial Transformation GalleryTeam:ArtScienceBangalore/Notebook/The May 17th NotebookTeam:ArtScienceBangalore/Notebook/Transmission Electron Microscope
Team:ArtScienceBangalore/Notebook/UpasanaTeam:ArtScienceBangalore/Notebook/Week FourTeam:ArtScienceBangalore/Notebook/Week One
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