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枯草芽孢杆菌溶原性菌株中的转化与转染:感受态细胞中前噬菌体选择性诱导的证据

Transformation and transfection in lysogenic strains of Bacillus subtilis: evidence for selective induction of prophage in competent cells.

作者信息

Yasbin R E, Wilson G A, Young F E

出版信息

J Bacteriol. 1975 Jan;121(1):296-304. doi: 10.1128/jb.121.1.296-304.1975.

Abstract

Lysogenic strains of Bacillus subtilis 168 were reduced in their level of transformation as compared to non-lysogenic strains. The level of transformation decreased even further if the competent lysogenic cells were allowed to incubate in growth media prior to selection on minimal agar. This reduction in the frequency of transformation was attributable to the selective elimination of transformed lysogenic cells from the competent population. Concurrent with the decrease in the number of transformants from a lysogenic competent population was the release of bacteriophage by these cells. The lysogenic bacteria demonstrated this dramatic release of bacteriophage only if the cells were grown to competence. Both the selective elimination of transformed lysogens and the induction of prophage was prevented by the inhibition of protein synthesis. Additionally, competent lysogenic cells released significantly higher amounts of exogenous donor transforming deoxyribonucleic acid than did competent non-lysogenic cells or competent lysogenic cells incubated with erythromycin. These data establish that the induction of the prophage from the competent lysogenic cells was responsible for the selective elmination of the lysogenic transformants. A model is presented that accounts for the induction of the prophage from competent lysogenic bacteria via the induction of a repair system. It is postulated that a repair system is induced or derepressed by the accumulation of gaps in the chromosomes of competent bacteria. This hypothetical enzyme(s) is ultimately responsible for the induction of the prophage and the selective elimination of transformants.

摘要

与非溶原性菌株相比,枯草芽孢杆菌168的溶原性菌株转化水平降低。如果在基本琼脂上进行选择之前,让感受态溶原性细胞在生长培养基中孵育,转化水平会进一步降低。转化频率的这种降低归因于从感受态群体中选择性消除转化的溶原性细胞。与溶原性感受态群体中转化子数量的减少同时发生的是这些细胞释放噬菌体。只有当细胞生长到感受态时,溶原性细菌才会表现出这种显著的噬菌体释放。蛋白质合成的抑制可防止转化溶原菌的选择性消除和原噬菌体的诱导。此外,与用红霉素孵育的感受态非溶原性细胞或感受态溶原性细胞相比,感受态溶原性细胞释放的外源供体转化脱氧核糖核酸量显著更高。这些数据表明,感受态溶原性细胞中噬菌体的诱导是溶原性转化子选择性消除的原因。提出了一个模型,该模型解释了通过修复系统的诱导,感受态溶原性细菌中噬菌体的诱导。据推测,感受态细菌染色体中缺口的积累会诱导或解除抑制一种修复系统。这种假设的酶最终负责噬菌体的诱导和转化子的选择性消除。

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本文引用的文献

1
TRANSFORMATION OF BIOCHEMICALLY DEFICIENT STRAINS OF BACILLUS SUBTILIS BY DEOXYRIBONUCLEATE.
Proc Natl Acad Sci U S A. 1958 Oct 15;44(10):1072-8. doi: 10.1073/pnas.44.10.1072.
2
INDUCIBLE PHAGES OF BACILLUS SUBTILIS.
Biochemistry. 1964 May;3:607-13. doi: 10.1021/bi00893a001.
3
Physiological and genetic factors affecting transformation of Bacillus subtilis.
J Bacteriol. 1961 May;81(5):823-9. doi: 10.1128/jb.81.5.823-829.1961.
4
Ultraviolet reactivation and ultraviolet mutagenesis of lambda in different genetic systems.
Virology. 1971 Feb;43(2):495-503. doi: 10.1016/0042-6822(71)90321-7.
6
Mechanism of transformation in B. subtilis.
Mol Gen Genet. 1971;113(4):331-44. doi: 10.1007/BF00272333.
7
Structural features of DNA in competent Bacillus subtilis.
Mol Gen Genet. 1971;113(4):316-30. doi: 10.1007/BF00272332.
8
Macromolecular synthesis in Bacillus subtilis during development of the competent state.
J Bacteriol. 1971 Nov;108(2):668-79. doi: 10.1128/jb.108.2.668-679.1971.
9
RNA polymerase.
Annu Rev Biochem. 1971;40:711-40. doi: 10.1146/annurev.bi.40.070171.003431.

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