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Titlebook: Genetic Engineering; Principles and Metho Jane K. Setlow Book 1991 Springer Science+Business Media New York 1991 genetic engineering.Tree B

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楼主: Amalgam
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Employment of Fibroblasts for Gene Transfer: Applications for Grafting into the Central Nervous Sysed eukaryotic cells. With these molecular genetic tools, enzymatic and protein deficiencies can be corrected through the introduction of normal and functioning genes via retroviral-mediated gene transfer into mutant or dysfunctional cells in culture (1–4). It has been proposed (5,6) that corrections
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Molecular Biology of Mating-Type Determination in ,, by the finding that fungi and higher cells share many analogous and homologous molecules, pathways and mechanisms (2). These commonalities extend to the basic mechanisms by which fungi and higher cells regulate the expression of their genetic information during development (3–6).
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https://doi.org/10.1007/978-3-322-98743-3to perturb the host’s genetic interactions. When transformed animal cells are incorporated in the germline, the role of the introduced gene in live animals can be evaluated (1–7). The regenerative potential of somatic plant cells allows similar experiments to be done in whole plants (8,9).
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Genetic Manipulation of , Insecticidal Crystal Protein Genes in Bacteria,rulation. The protein(s) which comprise the inclusions, sometimes referred to as delta-endotoxin(s), are toxic when ingested by susceptible insects. During commercial production, a mixture of BT spores and crystals are concentrated following fermentation and then formulated for spray-on application according to conventional agricultural practices.
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Functions of Intracellular Protein Degradation in Yeast,ide bonds…are rapidly and continuously opened and closed in the proteins of normal animals” (1). This idea, which now strikes us as quaint, reflects the fact that Schoenheimer’s pioneering work preceded, by well over a decade, the discovery of ribosomal protein synthesis.
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https://doi.org/10.1007/978-3-662-06456-6 six subcompartments (outer membrane, intermembrane space, inner membrane, stroma, thylakoid membrane and thylakoid lumen) in chloroplasts. Each of these subcompartments contains a unique set of proteins indicating that the translocation of proteins across one, two or (in chloroplasts) three membranes in succession is a highly selective process.
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