基因组
康蒂格
基因组
计算生物学
顺序装配
生物
纳米孔测序
遗传学
流动遗传元素
图形
计算机科学
基因
DNA测序
细菌基因组大小
弦(物理)
基因组学
相似性(几何)
放大器
生物信息学
作者
Jim Shaw,Maximillian G. Marin,Heng Li
出处
期刊:
[Cold Spring Harbor Laboratory]
日期:2025-09-06
被引量:12
标识
DOI:10.1101/2025.09.05.674543
摘要
Long-read metagenome assembly promises complete genomic recovery from microbiomes. However, the complexity of metagenomes poses challenges. We present myloasm, a metagenome assembler for PacBio HiFi and Oxford Nanopore Technologies (ONT) R10.4 long reads. Myloasm uses polymorphic k-mers to construct a high-resolution string graph and then leverages differential abundance for graph simplification. On real-world ONT metagenomes, myloasm assembled three times more complete circular contigs than the next-best assembler. Myloasm can make ONT and HiFi comparable for assembly: for a jointly sequenced gut metagenome, myloasm with ONT assembled more complete circular genomes than any assembler with HiFi. Myloasm recovers previously inaccessible within-species diversity; we recovered six complete Prevotella copri single-contig genomes from a gut metagenome and eight complete TM7 (Saccharibacteria) contigs with > 93% similarity from an oral metagenome. With this improved resolution, we resolved two 98% similar ermF antibiotic resistance genes spreading through distinct strain-specific mobile genetic elements in a human gut.
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