生物
DNA测序
多重位移放大
全基因组测序
基因组
DNA
DNA提取
遗传学
病毒学
计算生物学
聚合酶链反应
基因
作者
Chengjun Zhang,Tangyu Cheng,Dongfan Li,Xuexiang Yu,Fangzhou Chen,Qigai He
标识
DOI:10.3389/fvets.2022.936781
摘要
African swine fever (ASF) is a highly lethal and contagious disease caused by African swine fever virus (ASFV). Whole-genome sequencing of ASFV is necessary to study its mutation, recombination, and trace its transmission. Uncultured samples have a considerable amount of background DNA, which causes waste of sequencing throughput, storage space, and computing resources. Sequencing methods attempted for uncultured samples have various drawbacks. In this study, we improved C18 spacer MDA (Multiple Displacement Amplification)-combined host DNA exhaustion strategy to remove background DNA and fit NGS and TGS sequencing. Using this workflow, we successfully sequenced two uncultured ASFV positive samples. The results show that this method can significantly reduce the percentage of background DNA. We also developed software that can perform real-time base call and analyses in set intervals of ASFV TGS sequencing reads on a cloud server.
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