生物
清脆的
噬菌体
基因组
Cas9
噬菌体疗法
同源重组
遗传学
基因
基因组编辑
毒力
亚基因组mRNA
克雷伯菌
计算生物学
大肠杆菌
作者
Juntao Shen,Jinjie Zhou,Guo‐Qiang Chen,Zhilong Xiu
摘要
In the present study, we have addressed efficient, time-saving, and cost-effective CRISPR-based phage genome editing of Klebsiella phage, which has the potential to significantly expand our knowledge of phage-host interactions and to promote applications of phage therapy. The distribution of sgRNA activity was first evaluated in phages. Short homologous arms were proven to be enough to introduce point mutation, small frameshift deletion, gene deletion, and swap into phages, and weak sgRNAs were proven useful for precise phage genome editing but failed to select random recombinants, all of which makes the CRISPR-based phage genome-editing method easier to use.
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