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Titlebook: DNA Profiling and DNA Fingerprinting; Jörg T. Epplen,Thomas Lubjuhn Book 1999 Springer Basel AG 1999 Chromosom.DNA.PCR.Single Nucleotide P

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https://doi.org/10.1007/978-3-662-02772-1c. This is largely a result of publicity surrounding a small number of high-profile criminal or litiginous cases. What is perhaps less well known is that the technology can also be applied to the study of prokaryotic organisms, where it has many uses. These uses may be either simple or complex, and
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Theoretische Rahmung und Forschungsstand,osis of genetic diseases and for the sexing of animals. The recent development of medium-density genetic linkage maps permits even initial mapping projects in domestic animal flocks (for a review see [1]). In horses, as well as other farm animals, selective breeding (e.g. for speed or jumping abilit
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https://doi.org/10.1007/978-1-349-07239-2followed by probing with suitable probes is now an obsolete methodology. This is because such procedures are laborious, require much technical skill, depend on high molecular weight DNA to start with and do not easily lend themselves to automation and electronic data storage. Multilocus DNA fingerpr
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Arrow’s Vision of the Economic Process Such conspicuous blocks are known to be widely interspersed throughout eukaryotic genomes and in a number of prokaryotic chromosomes (see the chapter of van Helden, this volume). On the population level, longer simple repeat blocks tend to vary in the numbers of tandem repeat units, generating an e
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Information, Welfare, and Product Diversity relics of an α-proteobacterium that integrated into a thus far poorly understood host cell to constitute a primordial, complex eukaryotic cell ([1] and references therein). The endosymbiosis was followed by a considerable transfer of genetic material from the eubacterium to the host cell, resulting
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