Glickman B W, Rutgers T
Can J Genet Cytol. 1979 Sep;21(3):423-8. doi: 10.1139/g79-046.
Genetic recombination in Escherichia coli is a highly regulated process involving multiple gene products. We have investigated the role of DNA polymerase I in this process by studying the effect of the po1A1 mutation upon DNA transfer and conjugation in otherwise isogenic suppressor-free strains of E. coli K-12. It was found that the po1A1 mutation greatly reduces recombination in Hfr crosses (a factor of 20 in Pol+ x Po1A1 crosses and more than a factor of 100 in Po1A1 X Po1A1 crosses). However, since the po1A1 mutation reduces the strains capacity to act as a recipient for an F-prime and the analysis of recombination transfer gradients revealed no differences between Po1+ and Po1- strains, it is concluded that DNA polymerase I probably affects the transfer and/or stability of donor DNA rather than the recombinational process itself.
大肠杆菌中的基因重组是一个高度受调控的过程,涉及多种基因产物。我们通过研究polA1突变对DNA转移和接合的影响,来探究DNA聚合酶I在此过程中的作用,研究对象是大肠杆菌K-12的同基因无抑制菌株。结果发现,polA1突变极大地降低了高频重组(Hfr)杂交中的重组率(在Pol+×PolA1杂交中降低了20倍,在PolA1×PolA1杂交中降低了100倍以上)。然而,由于polA1突变降低了菌株作为F'受体的能力,并且重组转移梯度分析显示Pol+和Pol-菌株之间没有差异,因此得出结论,DNA聚合酶I可能影响供体DNA的转移和/或稳定性,而不是重组过程本身。