GeneArt Gibson Assembly HiFi Master Mix enables DNA assembly and cloning via a technique that allows multiple overlapping DNA fragments to be seamlessly linked in a one-step, 15–60 minute isothermal reaction.
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Optimize cloning with this double-stranded closed circular high copy plasmid DNA, 2686 base pairs with a molecular weight of 1.74 x 106 Da isolated from E.coli.
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GeneArt Gibson Assembly EX Master Mix enables DNA assembly via a technique that allows multiple overlapping DNA fragments to be seamlessly linked in a single-tube, two-step optimized reaction.
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A versatile and efficient tool for introducing point mutations, insertions, or deletions into any type of plasmid DNA. With this kit the entire plasmid is amplified using phosphorylated primers that introduce the desired changes.
Fisher Scientific Edge Order before 2 pm dispatch today Order after 2 pm dispatch tomorrow Learn More
Optimize cloning with this double-stranded closed circular high copy plasmid DNA, 2686 base pairs with a molecular weight of 1.74 x 106 Da isolated from E.coli.
The GeneArt Gibson Assembly HiFi Cloning Kit enables DNA assembly and cloning via a technique that allows multiple overlapping DNA fragments to be seamlessly linked in a one-step, 15–60 minute isothermal reaction.
The Invitrogen TrueTag Donor DNA Kit, YFP, provides a rapid solution to drive high-efficiency gene tagging (up to 100% edited cells) with transfection-ready donor DNA for genome editing experiments.
The Invitrogen TrueTag Donor DNA Kit, RFP Stem, provides a rapid solution to drive high-efficiency tagging (up to 100% edited cells) of silent or differentially expressed genes with transfection-ready donor DNA.
The Invitrogen TrueTag Donor DNA Kit, HA, provides a rapid solution to drive high-efficiency gene tagging (up to 100% edited cells) with transfection-ready donor DNA for genome editing experiments.
Perform DNA cloning, dideoxy DNA sequencing, in vitro mutagenesis, and in vitro transcription in one system with this double-stranded closed circular high copy phagemid DNA.