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Mycobacterium gilvum Illustrates Size-Correlated Relationships between Mycobacteria and Acanthamoeba polyphaga

机译:gilvum分枝杆菌说明分枝杆菌和棘阿米巴噬菌体之间的大小相关关系。

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Mycobacteria are isolated from soil and water environments, where free-living amoebae live. Free-living amoebae are bactericidal, yet some rapidly growing mycobacteria are amoeba-resistant organisms that survive in the amoebal trophozoites and cysts. Such a capacity has not been studied for the environmental rapidly growing organism Mycobacterium gilvum . We investigated the ability of M. gilvum to survive in the trophozoites of Acanthamoeba polyphaga strain Linc-AP1 by using optical and electron microscopy and culture-based microbial enumerations in the presence of negative controls. We observed that 29% of A. polyphaga cells were infected by M. gilvum mycobacteria by 6 h postinfection. Surviving M. gilvum mycobacteria did not multiply and did not kill the amoebal trophozoites during a 5-day coculture. Extensive electron microscopy observations indicated that M. gilvum measured 1.4 ± 0.5 μm and failed to find M. gilvum organisms in the amoebal cysts. Further experimental study of two other rapidly growing mycobacteria, Mycobacterium rhodesiae and Mycobacterium thermoresistibile , indicated that both measured <2 μm and exhibited the same amoeba-mycobacterium relationships as M. gilvum . In general, we observed that mycobacteria measuring 2 μm ( P < 0.05). The mechanisms underlying such an observation remain to be determined.
机译:分枝杆菌与自由生活的变形虫生活的土壤和水环境隔离。自由生活的变形虫具有杀菌作用,但是一些快速增长的分枝杆菌是对变形虫具有抵抗力的生物,它们在变形虫滋养体和囊肿中生存。对于环境快速生长的吉尔曼分枝杆菌,尚未研究这种能力。我们通过光学和电子显微镜和基于培养物的微生物计数,在阴性对照存在下,研究了吉尔曼分支杆菌在棘阿米巴多噬菌体Linc-AP1的滋养体中生存的能力。我们观察到感染后6小时,有29%的A. polyphaga细胞被吉尔曼分支杆菌分枝杆菌感染。在5天的共培养过程中,存活的吉尔伯氏菌分枝杆菌没有繁殖,也没有杀死变形虫滋养体。广泛的电子显微镜观察表明,gil。gilmum的大小为1.4±0.5μm,未在变形虫囊中找到gil。mulvum的生物。对另外两个快速增长的分枝杆菌,罗氏分支杆菌和耐热分枝杆菌的进一步实验研究表明,二者均测量到<2μm,并且表现出与吉尔伯氏菌相同的变形杆菌-分枝杆菌关系。通常,我们观察到分枝杆菌的大小为2μm(P <0.05)。这种观察的基础机制尚待确定。

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