核酸
基因组
生物
DNA
核酸酶
病菌
核糖核酸
基因组DNA
多重位移放大
DNA测序
基因组文库
计算生物学
寄主(生物学)
微生物学
分子生物学
人类病原体
核酸法
核酸热力学
基因
遗传学
分离(微生物学)
纳斯巴
作者
Han Ren,Xinlin Jiao,Ruizhi Wang,Jiahui Liu,Delun Wu,J. Liu,Mingfei Wang,Wendan Shangguan,Shuai Cao,Peisong Chen
标识
DOI:10.1093/lambio/ovaf145
摘要
In recent years, nucleic acid sequencing has been increasingly used in clinical pathogen detection. Typically, 20-100 million metagenomic reads are generated per sample, but 90%-99% originate from host nucleic acids, leaving only 1-2 million for microbial identification-potentially compromising detection sensitivity. Here, we present a novel duplex-specific nuclease (DSN)-based method to reduce host nucleic acid content in next-generation sequencing. Validated using mock communities and clinical samples, it yielded a 2- to 3-fold increase in pathogen RPM (reads per million) in metagenomic NGS (mNGS) and a more pronounced 3- to 10-fold improvement in probe-based targeted NGS (tNGS). Optimal performance was achieved with: 65°C annealing temperature; 2 μg Cot-1 DNA and 50 μmol rProbe as driver DNA; and 150 mmol·L-1 tetramethylammonium chloride (TMAC)-using 25 ng input nucleic acid for library preparation. The DSN workflow adds less than 30 min to library preparation and enables rapid, low-loss microbial enrichment, enhancing pathogen detection in clinical NGS. While effective, its host depletion efficiency could be further improved by expanding driver DNA coverage to additional abundant human genomic regions, such as LINE and LTR repeats.
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