Intact Genomics ig® 10B chemically competent cells (E. coli) are suitable for high-efficiency transformation in a wide variety of applications such as cloning and sub-cloning. This derivative of DH10B provides the highest efficiency in the industry.
Specifications
Competent cell type: Chemically competentDerivative of: DH10BSpecies: E. coliFormat: TubesTransformation efficiency: ≥1.0 x 1010 cfu/µg pUC19 DNABlue/white screening: YesShipping condition: Dry ice
Reagents Needed for One Reaction
ig® 10B chemically competent cells: 50 µlDNA (or pUC19 Control, 10 pg/µl): 1 µlRecovery medium: 1 ml
Product Includes & Storage
Genomic Features
ig® 10B (DH10B derivative) chemically competent cells have the following features:
Genotype
F – mcrA ∆(mrr-hsdRMS-mcrBC) endA1 recA1 φ80dlacZ∆M15 ∆lacX74 araD139 ∆(ara, leu)7697 galU galK rpsL (StrR) nupG λ-
Quality Control
Transformation efficiency is tested by using the pUC19 control DNA supplied with the kit and the high efficiency transformation protocol listed below. Transformation efficiency should be ≥1 x 1010 CFU/µg pUC19 DNA.
Untransformed cells are tested for appropriate antibiotic sensitivity.
General Guidelines
Follow these guidelines when using ig® 10B chemically competent E. coli.
Calculation of Transformation EfficiencyTransformation Efficiency (TE) is defined as the number of colony forming units (cfu) produced by transforming 1µg of plasmid into a given volume of competent cells.
TE = Colonies/µg/Dilution
Transform 1 µl of (10 pg/µl) pUC19 control plasmid into 50 µl of cells, add 950 µl of Recovery Medium. Dilute 10 µl of this in 990 µl of Recovery Medium and plate 50 µl. Count the colonies on the plate the next day. If you count 100 colonies, the TE is calculated as follows:
Colonies = 100µg of DNA = 0.00001Dilution = 50/1000 x 10/1000 = 0.0005TE = 100/.00001/.0005 = 2.0×10101011-06 1011-12 1011-24 1012-12 1012-24 1012-48 1014-24 1014-48 1018-96
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