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Effects of the Decay of Incorporated Radioactive Phosphorus on the Transfer of the Bacteriophage SP82G Genome

机译:掺入放射性磷的衰变对噬菌体SP82G基因组转移的影响

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摘要

The last genetic markers to be transferred during bacteriophage SP82G infection have a higher sensitivity to the decay of incorporated radioactive phosphorous (32P) than those which are located on the proximal end of the genome. If 32P decay is permitted to take place after DNA transfer is complete (in frozen infective centers) and in the absence of DNA replication, no dependence of marker sensitivity on map position is observed. These results indicate that the decay of incorporated 32P leads to damages that prevent the efficient transfer of portions of the genome distal to the lesion. At 4 C, failure to transfer some portion of the genome occurs in 49% of all lethal events. Even though damages that prevent transfer of the genome are in themselves lethal, they do not prevent rescue of genetic markers on portions of the genome that are transferred. The portion of the genome that is transferred, is transferred at the same rate as an undamaged genome. We interpret these results to mean that double-strand breaks in the DNA are the lesions that prevent distal transfer and that single-strand breaks have little or no effect on the transfer of the bacteriophage SP82G genome.
机译:与噬菌体近端相比,在噬菌体SP82G感染期间要转移的最后一个遗传标记对掺入的放射性磷( 32 P)的衰变具有更高的敏感性。如果 32 P降解允许在DNA转移完成后(在冰冻的感染中心)并且没有DNA复制的情况下进行,则没有观察到标记敏感性对图谱位置的依赖性。这些结果表明掺入的 32 P的衰变会导致损害,从而阻止基因组部分转移到病灶远端。在4 C下,所有致命事件中有49%发生无法转移基因组某些部分的事件。即使阻止基因组转移的损害本身就是致命的,但它们并不能阻止基因标记在转移的基因组部分上的抢救。转移的基因组部分以与未损坏的基因组相同的速率转移。我们将这些结果解释为意味着DNA中的双链断裂是阻止远端转移的病变,而单链断裂对噬菌体SP82G基因组的转移几乎没有影响。

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