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噬菌体P2:在超感染前噬菌体状态下的重组以及受噬菌体P4复制控制的情况。

Bacteriophage P2: recombination in the superinfection preprophage state and under replication control by phage P4.

作者信息

Bertani G, Dehò G

机构信息

Jet Propulsion Laboratory 125-224, California Institute of Technology, Pasadena, CA 91109, USA.

出版信息

Mol Genet Genomics. 2001 Nov;266(3):406-16. doi: 10.1007/s004380100527.

Abstract

Genetic crosses (mixed infection, lytic cycle) with bacteriophage P2 are known to give extremely low recombination frequencies, and these are unaffected by the recA status of the host bacterium. We now show the following: (1) the satellite bacteriophage P4, which interacts with P2 in a number of ways, but is quite different from it in terms of DNA replication and its control, is clearly dependent on the host recA+ function for recombination; (2) a chimeric phage (Lindqvist's P2/P4 Hy19), in which P2 replication early genes have been replaced by those of P4, recombines in a recA+-dependent manner; (3) immunity-sensitive P2 phages, in mixed infections of P2-immune bacteria, and hence blocked in their replication, recombine in a recA+-dependent manner; (4) an analysis of the distribution of exchanges based on a simple model confirms that in mixed infections of sensitive cells (where P2 is actively multiplying) recombinational exchanges tend to be statistically clustered in a segment of the chromosome containing the origin of replication, and also shows that, under conditions in which P2 DNA replication is blocked, the distribution of exchanges correlates well with the physical distances between markers on the P2 DNA.

摘要

已知噬菌体P2的遗传杂交(混合感染、裂解周期)产生的重组频率极低,且这些频率不受宿主细菌recA状态的影响。我们现在展示以下内容:(1)卫星噬菌体P4,它在许多方面与P2相互作用,但在DNA复制及其控制方面与P2有很大不同,其重组明显依赖于宿主recA+功能;(2)一种嵌合噬菌体(林德奎斯特的P2/P4 Hy19),其中P2早期复制基因已被P4的相应基因取代,其重组以recA+依赖的方式进行;(3)免疫敏感的P2噬菌体,在P2免疫细菌的混合感染中,因此其复制受阻,以recA+依赖的方式进行重组;(4)基于一个简单模型对交换分布的分析证实,在敏感细胞的混合感染中(P2在其中活跃增殖),重组交换在统计学上倾向于聚集在包含复制起点的染色体片段中,并且还表明,在P2 DNA复制受阻的条件下,交换分布与P2 DNA上标记之间的物理距离密切相关。

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