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  2. Amplified fragment length polymorphism - Wikipedia

    en.wikipedia.org/wiki/Amplified_fragment_length...

    Amplified fragment length polymorphism (AFLP-PCR or AFLP) is a PCR-based tool used in genetics research, DNA fingerprinting, and in the practice of genetic engineering. Developed in the early 1990s by Pieter Vos, [ 1 ] AFLP uses restriction enzymes to digest genomic DNA , followed by ligation of adaptors to the sticky ends of the restriction ...

  3. Polymerase chain reaction - Wikipedia

    en.wikipedia.org/wiki/Polymerase_chain_reaction

    A strip of eight PCR tubes, each containing a 100 μL reaction mixture Placing a strip of eight PCR tubes into a thermal cycler. The polymerase chain reaction (PCR) is a method widely used to make millions to billions of copies of a specific DNA sample rapidly, allowing scientists to amplify a very small sample of DNA (or a part of it) sufficiently to enable detailed study.

  4. Multiplex polymerase chain reaction - Wikipedia

    en.wikipedia.org/wiki/Multiplex_polymerase_chain...

    Multiplex-PCR consists of multiple primer sets within a single PCR mixture to produce amplicons of varying sizes that are specific to different DNA sequences. By targeting multiple sequences at once, additional information may be gained from a single test run that otherwise would require several times the reagents and more time to perform.

  5. BEAMing - Wikipedia

    en.wikipedia.org/wiki/Draft:BEAMing

    Target regions of the purified DNA undergo a pre-amplification step with conventional PCR utilizing primers of known sequences to amplify the genetic regions of interest. The amplified DNA templates are then introduced to primers that are covalently bound to magnetic beads via streptavidin - biotin interactions and are compartmentalized into ...

  6. Polymerase chain reaction optimization - Wikipedia

    en.wikipedia.org/wiki/Polymerase_chain_reaction...

    Chimeric polymerases overcome many limitations of native enzymes and are used in direct PCR amplification from cell cultures and even food samples, thus by-passing laborious DNA isolation steps. A robust strand-displacement activity of the hybrid TopoTaq polymerase helps solve PCR problems that can be caused by hairpins and G-loaded double ...

  7. Overlap extension polymerase chain reaction - Wikipedia

    en.wikipedia.org/wiki/Overlap_extension...

    First, individual DNA sequences are amplified by PCR from different templates and flanked with the required complementary overhangs. Second, the formerly obtained PCR products are combined together into the overlap extension PCR reaction, where the complementary overhangs bind pair-wise allowing the polymerase to extend the DNA strand.

  8. Thermostable DNA polymerase - Wikipedia

    en.wikipedia.org/wiki/Thermostable_DNA_Polymerase

    Several DNA polymerases have been described with distinct properties that define their specific utilisation in a PCR, in real-time PCR or in an isothermal amplification. Being DNA polymerases, the thermostable DNA polymerases all have a 5'→3' polymerase activity, and either a 5'→3' or a 3'→5' exonuclease activity.

  9. Digital polymerase chain reaction - Wikipedia

    en.wikipedia.org/wiki/Digital_polymerase_chain...

    Conventional PCR is based on the theory that amplification is exponential. Therefore, nucleic acids may be quantified by comparing the number of amplification cycles and amount of PCR end-product to those of a reference sample. [3] However, many factors complicate this calculation, creating uncertainties and inaccuracies.

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