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一种由枯草芽孢杆菌噬菌体phi 105构建的特异性转导噬菌体。

A specialized transducing phage constructed from Bacillus subtilis phage phi 105.

作者信息

Iijima T, Kawamura F, Saito H, Ikeda Y

出版信息

Gene. 1980 Apr;9(1-2):115-26. doi: 10.1016/0378-1119(80)90170-5.

Abstract

Chromosomal DNA of Bacillus subtilis 168 (trpC2) prepared from defective phage P BSX was digested by restriction endonuclease Eco RI and ligated in vitro with DNA fragments of page phi 105C digested by the same endonuclease. The ligated DNA was used to transform a competent culture of B. subtilis (trpC2 lys3 metB10) which was lysogenic for phi 105, and transformants of the auxotroph markers were selected. The bacterial DNA ligated to the phage DNA fragments could be integrated into the prophage genome by transformation. The transformants in toto were treated with mitomycin C and the lysate was used to transduce B. subtilis (trpC2 lys3 metB10). Among metB+ transductants, one clone appeared to be a double lysogen carrying both plaque forming and metB+ transducing phage genomes. The latter defective phage was designated phi 105dmetB. Physical mapping of these phages was carried out by agarose gel electrophoresis of the restriction endonuclease digests and also by electron microscopic analysis of heteroduplex DNA. These results indicate that two adjacent fragments Eco RI-G and E of phi 105 DNA had been substituted with a foreign fragment Eco RI-M in phi 105dmetB DNA. Transformation experiments showed that the metB+ gene resided on the fragment Eco RI-M. This fragment was found to have a BamHI-sensitive site. The transforming activity for the metB marker, however, was not affected by the treatmment with BamHI.

摘要

从缺陷噬菌体P BSX制备的枯草芽孢杆菌168(trpC2)的染色体DNA,用限制性内切酶Eco RI消化,并在体外与经相同内切酶消化的噬菌体phi 105C的DNA片段连接。连接后的DNA用于转化对phi 105呈溶原性的枯草芽孢杆菌(trpC2 lys3 metB10)感受态培养物,并筛选营养缺陷型标记的转化子。与噬菌体DNA片段连接的细菌DNA可通过转化整合到原噬菌体基因组中。将所有转化子用丝裂霉素C处理,裂解物用于转导枯草芽孢杆菌(trpC2 lys3 metB10)。在metB+转导子中,一个克隆似乎是一个双重溶原菌,携带噬菌斑形成和metB+转导噬菌体基因组。后一种缺陷噬菌体被命名为phi 105dmetB。通过限制性内切酶消化产物的琼脂糖凝胶电泳以及异源双链DNA的电子显微镜分析对这些噬菌体进行物理图谱分析。这些结果表明,在phi 105dmetB DNA中,phi 105 DNA的两个相邻片段Eco RI-G和E被一个外源片段Eco RI-M取代。转化实验表明,metB+基因位于片段Eco RI-M上。发现该片段有一个BamHI敏感位点。然而,用BamHI处理并不影响metB标记的转化活性。

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