生物
转座因子
白色念珠菌
遗传学
基因组
计算生物学
正向遗传学
突变
倍性
转座子突变
突变体
基因
作者
Zeyao Li,Haitao Wang,Chunling Cai,Ada Hang‐Heng Wong,Jianbin Wang,Jiaxin Gao,Yue Wang
出处
期刊:Nature Protocols
[Springer Nature]
日期:2020-07-17
卷期号:15 (8): 2705-2727
被引量:10
标识
DOI:10.1038/s41596-020-0351-3
摘要
Invasive fungal infections caused by Candida species are life threatening with high mortality, posing a severe public health threat. New technologies for rapid, genome-wide identification of virulence genes and therapeutic targets are urgently needed. Our recent engineering of a piggyBac (PB) transposon-mediated mutagenesis system in haploid Candida albicans provides a powerful discovery tool, which we anticipate should be adaptable to other haploid Candida species. In this protocol, we use haploid C. albicans as an example to present an improved version of the mutagenesis system and provide a detailed description of the protocol for constructing high-quality mutant libraries. We also describe a method for quantitative PB insertion site sequencing, PBISeq. The PBISeq library preparation procedure exploits tagmentation to quickly and efficiently construct sequencing libraries. Finally, we present a pipeline to analyze PB insertion sites in a de novo assembled genome of our engineered haploid C. albicans strain. The entire protocol takes ~7 d from transposition induction to having a final library ready for sequencing. This protocol is highly efficient and less labor intensive than alternative approaches and significantly accelerates genetic studies of Candida.
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