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Ein fädiger DNS-Phage und ein sphärischer RNS-Phage III Biologisches Verhalten

机译:EinfädigerDNs-phage undeinsphärischerRNs-phage III Biologisches Verhalten

摘要

fd and fr adsorb to male strains of E. coli and infect female cells, after the fd-DNA (or the fr-RNA 15) have been deproteinized by phenol and after the cells have been converted to the form of spheroplasts. fd is very heat resistant, highly antigenic and poorly adsorbing. The latency period of intracellular multiplication is 10 min (in Tryptone broth at 37 °C). The most unusual property seems to be that fd is the only phage on record which is liberated by the host cell without destruction of the host cell. The evidence for this is threefold: 1. in infected cultures phage is liberated at the rate of about 300 phage particles per bacterium per cell generation, and the growth rate of these cultures is indistinguishable from that of controls. 2. In such cultures no significant amounts of bacterial enzyme are liberated. 3. In single burst experiments it appears that more than 60% of the individual cells have liberated around 450 phage particles after about 20 min. and later produce bacterial growth as shown by turbidity. Non-lytic infection gives rise to an unstable carrier state. The phage is lost from the cells if superinfection is prevented by the addition of fd-antiserum. Lytic mutants of fd have been recorded. fr in its properties is similar to f2 and the other RNA phages and seems to be liberated by bacteriolysis, fr, due to the chemical nature of its nucleobases, is highly sensitive to hydroxylamine in slightly alkaline solution. Infection with fr in rare cases is non-lytic and leads to an unstable carrier state.
机译:在fd-DNA(或fr-RNA 15)已被苯酚脱蛋白并且细胞已转化为原生质球之后,fd和fr吸附到大肠杆菌的雄性菌株中并感染雌性细胞。 fd具有很高的耐热性,高抗原性和吸附性差。细胞内增殖的潜伏期为10分钟(在37°C的胰蛋白bro肉汤中)。最不寻常的特性似乎是fd是有记录的唯一由宿主细胞释放而不会破坏宿主细胞的噬菌体。这有三方面的证据:1.在被感染的培养物中,每细胞产生的噬菌体以每个细菌每个细菌约300个噬菌体的速率被释放,并且这些培养物的生长速率与对照的生长速率没有区别。 2.在这种培养物中,没有大量的细菌酶被释放。 3.在单次爆发实验中,大约20分钟后,似乎有60%以上的单个细胞释放了约450个噬菌体颗粒。然后产生细菌生长,如浑浊所示。非裂解感染会导致不稳定的载体状态。如果通过添加fd-抗死皮来防止过度感染,噬菌体将从细胞中丢失。已经记录了fd的裂解突变体。 fr的特性与f2和其他RNA噬菌体相似,并且似乎通过细菌分解而释放,fr由于其核碱基的化学性质,在微碱性溶液中对羟胺高度敏感。在极少数情况下,fr的感染是非溶解性的,并导致不稳定的载体状态。

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