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Titlebook: Genetic Engineering; Principles and Metho Jane K. Setlow,Alexander Hollaender Book 1981 Springer Science+Business Media New York 1981 gene

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Evolution of the Insertion Element IS1 that Causes Genetic Engineering of Bacterial Genomes in Vivobacterial cells at high frequency. Recent research on a class of . recombination events, called illegitimate recombination, including deletions, transpositions and inversions of DNA segments on a genome, and fusion (or cointegration) of two different genomes, has shown that most of these events are
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Applications of Molecular Cloning to Saccharomyces,hniques to . has burgeoned into a large and complex enterprise which already has made major contributions to our understanding of eukaryotic cells. To some extent, of course, this phenomenon simply reflects the astonishing growth of recombinant DNA methodology, a development that has affected the st
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Repeated DNA Sequences in Drosophila,pecies within this genus, most of our review will be focused on the structure of its genome. The chromosomal DNA of . can be broadly separated into three components by reassociation kinetics. Approximately two-thirds of this DNA, about 110,000 kilobases, is nonrepetitious; the remainder is reiterate
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Mutants and Variants of the Alcohol Dehydrogenase-1 Gene in Maize,l as molecular biology. Alcohol dehydrogenase-1 . ADH enzyme, E.C. 1.1.1.1.) of maize is one such gene. There are at least four reasons why maize . relates to the general subject of how to go about “engineering” novel higher organisms. These reasons are summarized below and discussed with citations
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Computer Assisted Methods for Nucleic Acid Sequencing,tches of nucleic acids. The use of computers at that time to assist in the collection and analysis of these sequences would have seemed unnecessary. However, the development of more productive and technically simpler methods for DNA sequencing has caused a dramatic increase in the total volume of nu
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