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作 者:李维泉[1,2,3] 姚鹤鸣[1,2,3] 沈美娟 金玫蕾[1,2,3] 赵国屏 焦瑞身[1,2,3]
机构地区:[1]中国科学院上海植物生理研究所微生物次生代谢分子调控研究开放实验室 [2]上海大学生命科学院生物工程系 [3]中国科学院上海生物工程中心
出 处:《病毒学报》1999年第2期172-179,共8页Chinese Journal of Virology
基 金:中国自然科学基金
摘 要:从生产力复霉素SV的地中海拟无枝菌酸菌(Amycolatopsismediterranei)U119的工业发酵罐裂解液中,分离到一株新的噬菌体φMMR。该噬菌体经多次单斑分离、纯化,得到的噬斑多数为清亮的(约占90%),其它噬斑为浑浊斑,但未能从中分离到溶源菌。在被测试的可能的宿主菌中,φMMR1不能感染除地中海拟无枝菌酸菌以外的菌株,说明寄主范围很窄。对φMMR1的增殖和储存条件,诸如pH值、温度、二价金属离子、有机溶剂等对φMMR1的影响进行了较详细的研究。电子显微镜观察揭示,φMMR1为长尾无收缩尾鞘,头为正多面体,属长尾噬菌体科B1亚群。制备了φMMR1的兔抗血清,并测定了φMMR1以地中海拟无枝菌酸菌U-32为宿主菌的一步生长曲线。使用24种限制性内切酶对φMMR1DNA进行了单酶切分析。结果表明,φMMR1基因组DNA为线状双链,未找到粘性末端,大小约为596kb。φMMR1DNA的G+C含量为67%。利用SDS-PAGE分析了噬菌体的外壳蛋白多肽的组成。纯化的裸露噬菌体DNA可利用电穿孔技术成功地转染地中海拟无枝菌酸菌U-32。Bacteriophage φMMR1 was isolated from a lysed industrial fermentation culture of Amycolatopsis mediterranei U119. φMMR1 is likely to be lytic phage, because more than 90% of the plaques were clear and no lysogens, immune to phage infection were obtained. φ MMR1 could form plaques only on laboratory strains of A. mediterranei among 11 tested strains. The host range of the phage is so narrow that it failed to infect the very closely related species, A. orientalis, A. rugosus, A. sulphreaus and A. methanolica . The conditions of propagation and storage of φMMR1, such as pH, temperature, divalent cations and organic solvents, have been studied in detail. The virion structure observed under electron microscopy is similar to that of most known Streptomycetes' phage. It belongs to the B1 group of Styloviridae. Rabbit antiserum directed against φMMR1 was prepared and a onestep growth curve was obtained.Restriction enzyme analysis of the genomic DNA indicated a unique pattern different from those of other known Actinophages. The phage genome is linear, double-stranded and no cohesive ends could be tested. The genome is ca. 59.6 kb in size. The G+ C content of φMMR1 DNA was determined as 67% by HPLC. The proteins of the phage capsid were analyzed by SDS-PAGE. Purified phage DNA was able to transfect the standard laboratory strain A. mediterranei U-32 through electroporation.
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