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Titlebook: Chromosomal Mutagenesis; Shondra M. Pruett-Miller Book 2015Latest edition Springer Science+Business Media New York 2015 Genome editing too

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Money and Payments: From Beads to Bits,e designed to produce highly specific double-strand breaks in chromosomal DNA. These breaks are processed by cellular DNA repair machinery leading to localized mutations and to intentional sequence replacements. Because these repair processes are common to essentially all organisms, the targetable n
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Ruth Wandhöfer,Hazem Danny Nakibst. In this approach, a genome-wide mutant library is first generated and then screened for a phenotype of interest. Subsequently, genes responsible for the phenotype are identified. There have been a number of successful screens in yeasts, . and .. These model organisms all allow loss-of-function m
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Redefining A Philosophy for World GovernanceC31 integrase performs efficient recombination between its . site and either its own placed . site or a partially mismatched genomic pseudo . site. Bxb1 integrase, another large serine recombinase, has a similar level of recombinational activity, but recognizes only its own . and . sites. Previously
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Key Concepts in Chinese Thought and Cultureacellular homologous recombination affords the safety and efficacy profile suitable for such settings. Recombinagenic donor DNA and mutagenic triplex-forming molecules co-opt this natural recombination phenomenon to enable the specific, heritable editing and targeting of the genome. Editing the geno
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Christopher S. Collins,Deane E. Neubauers, e.g. using the . nuclease domain, provides a potent tool to induce DNA double strand breaks at user-defined genomic loci. In this regard, TAL (transcription activator-like) effector proteins, secreted by bacteria of the Xanthomonas family, provide the highest degree of modularity in their DNA bin
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