Restriction enzymes are widely used for molecular cloning, but their use as molecular tools extends to other common applications in molecular biology. Two important applications are DNA fingerprint recognition and methylation analysis, which are methods for mapping sequences and analyzing epigenetic patterns in the genome. Creative Enzymes provides you with a variety of restriction enzyme mapping service to meet your scientific research needs.
AFLP is another genetic mapping technique that relies on RFLP followed by selective PCR to generate amplified fragments from the genomic DNA of any organism without prior knowledge of the genomic sequence. In addition, AFLP analysis requires only a small amount of starting template (usually at the nanogram level).
AFLP is now used for a variety of applications, such as
AFLP procedures include digestion of genomic DNA to produce a large number of restriction fragments, ligation of primer site junctions, amplification by PCR, separation of fragments by electrophoresis, and finally observation of PCR amplicons by radiolucent autoradiography or fluorescence
DNA fingerprinting or profiling is a means of gene identification based on the unique pattern of DNA fragment sizes produced by an individual's genome. the widespread use of DNA fingerprinting has led to the development of many DNA fingerprinting methods, the choice of which depends largely on the experimental objectives and the organism under study.
Creative Enzymes is a professional restriction enzyme mapping service provider, supporting a variety of enzyme-related services. We are able to perform individual tests at the most precise level, as well as design and complete a suite of services as a solution to the subject project. Creative Enzymes has accumulated years of quintessence in the field of restriction enzyme mapping service, helping our clients accelerate drug discovery and development and improve the overall success rate of their projects. If you would like to know more about this service, please feel free to contact us.
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