Luria dulbecco (3 Ergebnisse)

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    Pamphlet. Zustand: Collectible; Very Good. Prompt Shipment, shipped in Boxes, Tracking PROVIDEDSome light soil, spine slant, few bottom tips nibbled, else very good. * Included are: Symposium on Radiation Microbiology and Biochemisty (1949); Symposium on Physiological Effects of Radiation at the Cellular Level (1951); Symposium on Genetic Recombination (1954) (L.C. Dunn's copy with his stamp); Symposium on Effects and other Deleterious Agents on Embryonic Development (1953) (L. C. Dunn's copy with his stamp); Symposium on Biochemistry of Nucleic Acids (1950); Symposium on Radiation Genetics (1948) L. C. Dunn's copy with his stamp); Symposium on Structure of Enzymes and Proteins (1955). *.…

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    leading to production of active bacteriophage from ultraviolet inactivated bacteriophage particles (=p. 93-125) and R. Dulbecco, The number of particles of bacteriophage T2 that can participate in intracellular growth (=p. 126-132). Genetics, vol. 34, 1949. 740p., 1 portrait, 1 folded tab, 11 plates, numerous figs. Orig. cloth. = Important contribution to the study of genetics and replication of bacteria. See Garrison and Morton 2516.1. Luria was awarded the 1969 Nobel Prize with Delbrück for his vital contributions to genetics and especially because of the first article. Also including A. Hershey and Rotman, Genetic recombination between hoste-range and plaque-type mutants of bacteriophage in single bacterial cells with 28 pages. Ex libris of the Edinburgh University library. We offer the complete vol. 34.…

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    Luria, Salvador Edward (1912-91) & Dulbecco, Renato (1914- ). Genetic recombinations leading to production of active bacteriophage from ultraviolet inactivated bacteriophage particles. Offprint from Genetics 34 (March 1949). 8vo. 93-125pp. Diagrams. 250 x 172 mm. Without wrappers as issued. Light marginal soiling on first leaf, but very good. Ownership stamp & docketing. First Separate Edition. Garrison-Morton 2526.1. In the late 1940s Luria discovered "the production of active phage particles when many inactivated phages were allowed to infect bacteria. He called this multiplicity reactivation and he explained it in terms of the existence of a 'gene pool' formed by the independent replication of discrete genetic units, from which active phage particles were assembled. The infecting phage was assumed to break up into such units once it entered the host cell. The inactivity of ultraviolet irradiated phage was attributed to the damage to one or several of these units. Damaged units of one type, Luria believed, could be replaced from the gene-pool by undamaged units of another type, and active phage particles successfully assembled. By quantitative techniques Luria and Dulbecco were able to suggest figures for the number of such sub-units in the various phages" (Olby, The Path to the Double Helix, p. 299). Luria, a member of Delbruck's "phage group" and a teacher of the young James Watson, received a share of the 1969 Nobel Prize in physiology or medicine for his discoveries regarding the replication mechanism and genetic structure of viruses. His co-author Dulbecco was awarded part of the 1975 Nobel Prize for his research on tumor viruses. Magill, The Nobel Prize Winners: Physiology or Medicine, pp. 1065-72; 1215-24. .…