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首页> 外文期刊>The Journal of Veterinary Medical Science >Biological and Biophysical Characteristics of Phages Isolated from Clostridium botulinum Type C and D Strains, and Physicochemical Properties of the Phage DNAs
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Biological and Biophysical Characteristics of Phages Isolated from Clostridium botulinum Type C and D Strains, and Physicochemical Properties of the Phage DNAs

机译:从C型和D型肉毒梭菌分离的噬菌体的生物学和生物物理特性,以及噬菌体DNA的理化特性

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References(32) Cited-By(5) Toxin-converting phages CEβ and d-16φ and non-converting phages CEγ and d-1', isolated from toxigenic strains C-468 and D-CB16 of Clostridium botulinum types C and D, respectively, were characterized biologically and biophysically. DNAs isolated from these four phages were studied physicochemically. Phages CEβ, d-16φ, CEγ and d-1' were adsorbed to their susceptible cells at the constant rates of 1.1×10-8, 3.3×10-8, 1.4×10-8 and 1.4×10-8 ml/min, and grew after latent periods of 35, 45, 35 and 35 min at the burst sizes of 38, 85, 35 and 35, respectively. Converting phages were more susceptible than non-converting phages to physical and chemical treatments such as temperature, pH, time, UV-irradiation and organic solvents. GC% of phage DNAs were determined by melting temperature, buoyant density and HPLC analysis to be 26, 26, 29 and 29% for CEβ, d-16φ, CEγ and d-1' phage DNAs, respectively. The restriction digestion profiles of phage DNAs with seven endonucleases were compared by agarose gel electrophoresis, revealing that the two converting phage DNAs were similar in regard to five enzyme digestion profiles, but different in the other two enzymatic profiles. Non-converting phage DNAs produced the same restriction digestion profiles with all seven endonucleases. The molecular sizes determined from the size of restriction enzyme digestion fragments were about 110 kb for converting phage CEβ and d-16φ DNAs and 65 kb for non-converting phage CEγ and d-1' DNAs. Dot blot hybridization experiments revealed that DNA homology between the converting phages CEβ and d-16φ was 50-75%, while that between non-converting phages CEγ and d-1' was about 100%. Converting phage and non-converting phage DNAs did not hybridize at all.
机译:参考文献(32)从C型和D型肉毒杆菌的产毒菌株C-468和D-CB16分离的被引物(5)由毒素转化的噬菌体CEβ和d-16φ和非转化噬菌体CEγ和d-1'分别进行了生物学和生物物理表征。从这四个噬菌体分离的DNA进行了物理化学研究。噬菌体CEβ,d-16φ,CEγ和d-1'以1.1×10-8、3.3×10-8、1.4×10-8和1.4×10-8 ml / min的恒定速率吸附到其易感细胞上,并且在35、45、35和35分钟的潜伏期后分别以38、85、35和35的爆发大小增长。转化的噬菌体比非转化的噬菌体更易受物理和化学处理的影响,例如温度,pH,时间,紫外线照射和有机溶剂。通过解链温度,浮力密度和HPLC分析确定的CEβ,d-16φ,CEγ和d-1′噬菌体DNA的GC%噬菌体DNA分别为26%,26%,29%和29%。通过琼脂糖凝胶电泳比较了具有七个内切核酸酶的噬菌体DNA的限制性酶切图谱,发现两个转化的噬菌体DNA在五个酶切图谱上相似,但在其他两个酶切图谱上却不同。非转化噬菌体DNA的所有七个内切核酸酶均产生相同的限制性酶切图谱。由限制性内切酶消化片段的大小确定的分子大小对于转化噬菌体CEβ和d-16φDNA约为110 kb,对于非转化噬菌体CEγ和d-1'DNA约为65 kb。点印迹杂交实验表明,转化噬菌体CEβ与d-16φ之间的DNA同源性为50-75%,而非转化噬菌体CEγ与d-1′之间的DNA同源性为约100%。转化噬菌体和非转化噬菌体DNA根本不杂交。

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