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The fate of the bacterial chromosome in P22-infected cells of Salmonella typhimurium 总被引:1,自引:0,他引:1
Horst Schmieger 《Molecular & general genetics : MGG》1971,110(3):238-244
Summary Evidence is presented that in cells of Salmonella typhimurium infected with phage P22 there is no conversion of bacterial DNA material into phage DNA material. It has been shown also that infection with P22 does not cause measurable breakdown of the bacterial chromosome to phage-sized or smaller DNA fragments. 相似文献
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Summary Conditioned culture medium from Daudi cells was used as a source of soluble H-Y antigen. Concentrated culture medium was labeled with 125I and then fractionated by gel filtration. Column fractions were assayed for the presence of H-Y antigen by urease-ELISA. H-Y antigen-containing fractions were then pooled and subjected to an improved immunoprecipitation protocol. Three predominant H-Y antigenic proteins were identified with estimated molecular weights of above 200,000, 50,000, and 20,000. 相似文献
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Oat (Avena sativa L.) mesophyll protoplasts were recently demonstrated to be capable of dedifferentiation, repeated divisions, and colony formation. Since the development of oat mesophyll protoplasts is decisively influenced by the nature of the used feeder culture (species, variety and concentration), we conducted a systematic study of this parameter. Generally, graminaceous feeders promoted protoplast proliferation, while dicot species repressed protoplast divisions. The beneficial effect of those feeders that promote divisions was counterbalanced by a factor that causes necrosis. The correct balance between promotion of divisions or necrosis depended on the nature of the feeder and its plating density. 相似文献
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Horst Behncke 《Journal of mathematical biology》1993,31(8):853-878
A simple mathematical model for competitive running is developed. This model contains the force and energy reserves as key variables and it describes their relationship and dynamics. It is made up of three submodels for the biomechanics of running, the energetics and the optimization. The model for the energetics is an extension of the hydraulic model of Margaria and Morton. The key geometric parameters of this piecewise linear, three compartment model are determined on the basis of well known physiological facts and data. 相似文献
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