Abstract
De novo assembly of ancient metagenomic datasets is a challenging task. Ultra-short fragment size and characteristic postmortem damage patterns of sequenced ancient DNA molecules leave current tools ill-equipped for ideal assembly. We present CarpeDeam, a novel damage-aware de novo assembler designed specifically for ancient metagenomic samples. Utilizing maximum-likelihood frameworks that integrate sample-specific damage patterns, CarpeDeam demonstrates improved recovery of longer continuous sequences and protein sequences in many simulated and empirical datasets compared to existing assemblers. As a pioneering ancient metagenome assembler, CarpeDeam opens the door for new opportunities in functional and taxonomic analyses of ancient microbial communities.
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Kraft, L., Söding, J., Steinegger, M., Jochheim, A., Wad Sackett, P., Fernandez-Guerra, A., & Renaud, G. (2025). CarpeDeam: a de novo metagenome assembler for heavily damaged ancient datasets. Genome Biology, 26(1). https://doi.org/10.1186/s13059-025-03839-5
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