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Titlebook: Genetic Engineering; Principles and Metho Jane K. Setlow,Alexander Hollaender Book 1979 Plenum Press, New York 1979 DNA.biology.cloning.evo

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楼主: 削木头
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The Chloroplast, Its Genome and Possibilities for Genetically Manipulating Plants,xpression by manipulating regulatory DNA sequences. Exercise of either of these two genetic engineering approaches will reveal important biological principles and may well lead to important applications.
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Mitochondrial DNA of Higher Plants and Genetic Engineering,ion of this technology to the broad area of higher plant improvement. Central to the development of this technology is the acquisition of a suitable vector or vehicle molecule which could be used to transfer desirable genetic information into plant cells. Prominent potential vehicles include the Ti-
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Host-Vector Systems for Genetic Engineering of Higher Plant Cells, be able to cause genetic transformation. Earlier reports of successful incorporation of exogenously applied DNA and bacteriophages to intact plants were later shown to be the result of artifacts or the experiments remained irreproducible (1–4). Nevertheless, such reports have stimulated other worke
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Genetic Engineering978-1-4615-7072-1Series ISSN 0196-3716
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https://doi.org/10.1007/978-3-658-15943-6technological developments prepared in 1937 by the best talent presumed to be available in the United States (1). The report concluded, for example, that any further changes in commercial aviation would be in the direction of improved safety and comfort, although the possibility was entertained that
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https://doi.org/10.1007/978-3-663-12006-3expression of only a portion of the genetic information. It seems that a fundamental part of this process in eukaryotes (as in prokaryotes) is regulation at the level of transscription, although control mechanisms could operate at any step in the flow of genetic information.
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