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In vitro repair of double-strand breaks accompanied by recombination in bacteriophage T7 DNA.

机译:双链断裂的体外修复并伴随噬菌体T7 DNA重组。

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摘要

A double-strand break in a bacteriophage T7 genome significantly reduced the ability of that DNA to produce viable phage when the DNA was incubated in an in vitro DNA replication and packaging system. When a homologous piece of T7 DNA (either a restriction fragment or T7 DNA cloned into a plasmid) that was by itself unable to form a complete phage was included in the reaction, the break was repaired to the extent that many more viable phage were produced. Moreover, repair could be completed even when a gap of about 900 nucleotides was put in the genome by two nearby restriction cuts. The repair was accompanied by acquisition of a genetic marker that was present only on the restriction fragment or on the T7 DNA cloned into a plasmid. These data are interpreted in light of the double-strand gap repair mode of recombination.
机译:当在体外DNA复制和包装系统中孵育DNA时,噬菌体T7基因组中的双链断裂显着降低了该DNA产生活噬菌体的能力。当自身不能形成完整噬菌体的T7 DNA同源片段(限制性片段或克隆到质粒中的T7 DNA)被包括在反应中时,断裂被修复到产生更多噬菌体的程度。 。而且,即使通过两个附近的限制性切割将约900个核苷酸的缺口插入基因组中,修复也可以完成。修复伴随有遗传标记的获得,该遗传标记仅存在于限制性片段或克隆到质粒中的T7 DNA上。根据双链间隙修复的重组模式解释这些数据。

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