You searched for: Nucleic Acid Reagents
Nucleic acid reagents form the foundation of genetic analysis and molecular biology, playing a pivotal role from cloning to gene expression studies. Delve into our collection featuring high-fidelity enzymes for end-point PCR, advanced reagents for isothermal amplification, and comprehensive kits for nucleic acid purification. For precision in quantitative assays, explore our selection of qPCR and RT-qPCR kits, primed for unparalleled accuracy. Our portfolio also includes next-generation sequencing reagents, offering cutting-edge solutions for genomic sequencing and personalized medicine advancements.
Flow Cell Priming Kit
Supplier: Oxford Nanopore Technologies
Additional flow cell priming reagents to enable additional loading of more library during a sequencing run.
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sparQ PureMag beads
Supplier: Quantabio
sparQ PureMag beads is a fast and reliable nucleic acid purification system for reaction cleanup and size selection in Next Generation Sequencing (NGS) workflows. Based on the reversible nucleic acid-binding properties of magnetic beads; this product can be used to quickly remove primers, primer-dimers, unincorporated nucleotides, salts, adapters and adapter-dimers from NGS library prep reactions to improve downstream sequencing performance. sparQ PureMag beads allows excellent recovery of fragments greater than 100 bp without centrifugation or filtration. Consistent and reliable size selection can be achieved by simply adjusting the beads to sample ratio. This product is designed for both manual and automated processing, allowing seamless integration into existing workflows.
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PCR barcoding expansion
Supplier: Oxford Nanopore Technologies
PCR Barcoding Expansion packs enable multiple nanopore sequencing libraries to be pooled and run on a single MinION Flow Cell.
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cDNA-PCR Sequencing Kits
Supplier: Oxford Nanopore Technologies
The cDNA-PCR Sequencing Kits enable the identification and quantification of full-length transcripts with highest output using nanopore sequencing.
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16S Barcoding Kits
Supplier: Oxford Nanopore Technologies
The 16S Barcoding Kit delivers rapid, genus-level bacteria identification using nanopore sequencing.
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COVID-19 Sequencing Kit
Supplier: Oxford Nanopore Technologies
A simple, scalable and rapid method for sequencing up to 576 SARS-CoV-2 samples. Contains all Oxford Nanopore sequencing reagents for rapid whole-genome sequencing of SARS-CoV-2.
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Control Expansion
Supplier: Oxford Nanopore Technologies
DNA or RNA for sequencing control experiments.
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Rapid sequencing kits
Supplier: Oxford Nanopore Technologies
Rapid Sequencing Kits offer a simple and rapid library preparation method for genomic DNA sequencing on MinION™ devices.
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Accessories for Ultra-Long DNA Sequencing Kit
Supplier: Oxford Nanopore Technologies
Additional extraction EB (EEB)
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Direct RNA sequencing kit
Supplier: Oxford Nanopore Technologies
A sequencing kit optimised for sequencing native RNA with improved output and accuracy.
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Midnight RT PCR Expansion
Supplier: Oxford Nanopore Technologies
An expansion kit containing all the required reagents and primers to generate reverse-transcribed and PCR-amplified material from SARS-CoV-2 RNA samples.
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Ultra-Long DNA Sequencing Kit
Supplier: Oxford Nanopore Technologies
An overnight method to prepare ultra-high molecular weight DNA for sequencing ultra-long reads (N50 >50 kb).
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Next generation dsDNA quantification kits, AccuBlue®
Supplier: BIOTIUM
The AccuBlue® NextGen dsDNA Quantitation Kit offers unprecedented level of sensitivity in dsDNA detection. It is a sensitive and accurate DNA quantitation method for ultra-low amounts of DNA with a detection limit as low as one pg DNA in a 96-well plate reader assay.
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Short Fragment Eliminator Expansion
Supplier: Oxford Nanopore Technologies
An expansion pack designed for size selection of high molecular weight DNA samples to progressively deplete short fragments of <25 kb.
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Sequencing auxiliary vials
Supplier: Oxford Nanopore Technologies
Additional sequencing buffer, elution buffer, and loading beads.
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Native barcoding auxiliary kit v14, Oxford Nanopore Technologies
Supplier: Oxford Nanopore Technologies
This expansion is recommended for users who want to make use of unused barcodes to maximise the use of their Native Barcoding Kits.
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Transformation kit, EZ-Yeast™, MP Biomedicals
Supplier: MP BIOMEDICALS
The EZ-Yeast™ Transformation Kit is designed for high throughput transformation with efficiencies up to 10³ transformants per μg plasmid DNA. It is ideal for cases where a large number of transformations must be performed, but only a few transformants are needed. Perfect for a quick analysis of potentially positive two-hybrid colonies, it does not require fully competent cells prior to transformation.
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Yeast transformation kit, Alkali-Cation™, MP Biomedicals
Supplier: MP BIOMEDICALS
Alkali-Cation™ Yeast Transformation Kit provides an efficient method for yeast transformation and has been successfully used to transform linear DNA into Pichia pastoris for protein expression studies.
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PCR cloning kit, CloneJET
Supplier: Thermo Fisher Scientific
The CloneJET PCR cloning kit contains a ready-to-use positive selection cloning vector pJET1.2/blunt. The vector contains a lethal restriction enzyme gene that is disrupted by ligation of a DNA insert into the cloning site. As a result, only bacterial cells with recombinant plasmids are able to form colonies. Recircularised pJET1.2/blunt vector molecules lacking an insert express a lethal restriction enzyme, which kills the host E. coli cell after transformation. This positive selection drastically accelerates the process of colony screening and eliminates additional costs required for blue/white selection.
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MagaDye™ 561 ddATP
Supplier: AAT BIOQUEST
Sanger sequencing, also known as the chain termination method, is a technique for DNA sequencing based upon the selective incorporation of chain-terminating dideoxynucleotides (ddNTPs) by DNA polymerase.
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ddCTP [2',3'-Dideoxycytidine-5'-triphosphate] *10 mM in ddH₂O* (1 µmole)
Supplier: AAT BIOQUEST
Sanger sequencing, also known as the chain termination method, is a technique for DNA sequencing based upon the selective incorporation of chain-terminating dideoxynucleotides (ddNTPs) by DNA polymerase.
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MagaDye™ 535 ddGTP
Supplier: AAT BIOQUEST
Sanger sequencing, also known as the chain termination method, is a technique for DNA sequencing based upon the selective incorporation of chain-terminating dideoxynucleotides (ddNTPs) by DNA polymerase.
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ddTTP [2',3'-Dideoxythymidine-5'-triphosphate] *10 mM in ddH₂O* (1 µmole)
Supplier: AAT BIOQUEST
Sanger sequencing, also known as the chain termination method, is a technique for DNA sequencing based upon the selective incorporation of chain-terminating dideoxynucleotides (ddNTPs) by DNA polymerase.
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2-Aminoethoxypropargyl ddCTP (1 µmole)
Supplier: AAT BIOQUEST
Sanger method is one of the most reliable and earliest DNA sequencing methods.
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MagaDye™ 613 ddCTP
Supplier: AAT BIOQUEST
Sanger sequencing, also known as the chain termination method, is a technique for DNA sequencing based upon the selective incorporation of chain-terminating dideoxynucleotides (ddNTPs) by DNA polymerase.
Expand 2 Items
ddGTP [2',3'-Dideoxyguanosine-5'-triphosphate] *10 mM in ddH₂O* (1 µmole)
Supplier: AAT BIOQUEST
Sanger sequencing, also known as the chain termination method, is a technique for DNA sequencing based upon the selective incorporation of chain-terminating dideoxynucleotides (ddNTPs) by DNA polymerase.
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ddATP [2',3'-Dideoxyadenosine-5'-triphosphate] *10 mM in ddH₂O* (1 µmole)
Supplier: AAT BIOQUEST
Sanger sequencing, also known as the chain termination method, is a technique for DNA sequencing based upon the selective incorporation of chain-terminating dideoxynucleotides (ddNTPs) by DNA polymerase.
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2-Aminoethoxypropargyl ddTTP (1 µmole)
Supplier: AAT BIOQUEST
Sanger method is one of the most reliable and earliest DNA sequencing methods.
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2-Aminoethoxypropargyl ddATP (1 µmole)
Supplier: AAT BIOQUEST
Sanger method is one of the most reliable and earliest DNA sequencing methods.
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MagaDye™ 588 ddTTP
Supplier: AAT BIOQUEST
Sanger sequencing, also known as the chain termination method, is a technique for DNA sequencing based upon the selective incorporation of chain-terminating dideoxynucleotides (ddNTPs) by DNA polymerase.