bioRxiv · 10.64898/2026.05.22.727065
Integrated optimization of experimental and computational workflows improves genome recovery in long-read gut metagenomics
Abstract
Short-read metagenomic sequencing has been widely applied in microbial research due to its high quality and decreasing cost. However, short reads are inherently fragmented, which limits assembly contiguity and the recovery of complete microbial genomes. In contrast, long-read sequencing, with significantly longer read lengths, helps overcome these limitations. Achieving complete and accurate genome recovery is the core goal of metagenomics. To address this challenge, we systematically evaluated and optimized the long-read metagenomic workflow, from sample processing to computational assembly, using the CycloneSEQ platform.
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Hu, Y., Sun, L., Huang, Y., Jiang, F., Tong, X., Yang, J., Ju, Y., Yang, Z., Liufu, S., Ma, W., Guo, R., Li, W., Zhang, T., Zhu, X., Zhang, Z.. 2026-05-26. Integrated optimization of experimental and computational workflows improves genome recovery in long-read gut metagenomics. https://doi.org/10.64898/2026.05.22.727065
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