Advances in sequencing technologies and bioinformatics tools have dramatically increased the recovery rate of microbial genomes from metagenomic data. Assessing the quality of metagenome-assembled genomes (MAGs) is a critical step before downstream analysis. Here, we present CheckM2, an improved method of predicting genome quality of MAGs using machine learning. Using synthetic and experimental data, we demonstrate that CheckM2 outperforms existing tools in both accuracy and computational speed. In addition, CheckM2's database can be rapidly updated with new high-quality reference genomes, including taxa represented only by a single genome. We also show that CheckM2 accurately predicts genome quality for MAGs from novel lineages, even for t...
The current revolution in genomics has been made possible by software tools called genome assemblers...
Evaluating metagenomic software is key for optimizing metagenome interpretation and focus of the Ini...
Metagenomics is the study of the totality of the complete genetic elements discovered from a defined...
Advances in sequencing technologies and bioinformatics tools have dramatically increased the recover...
Large-scale recovery of genomes from isolates, single cells, and metagenomic data has been made poss...
Background Although the total number of microbial taxa on Earth is under debate, it is clear that on...
Genomes are an integral component of the biological information about an organism; thus, the more co...
International audienceBackground: The biological and clinical consequences of the tight interactions...
Motivation: Methodological advances in metagenome assembly are rapidly increasing in the number of p...
Metagenome assembled genomes (MAGs) generated by taking raw reads from 58 samples that were quality-...
International audienceBackground: Over the last decade, we have observed in microbial ecology a tran...
SUMMARY: Metagenomics and single-cell genomics have revolutionized the study of microorganisms, incr...
By sequencing environmental DNA and reconstructing microbial genomes, we can obtain insight into the...
Supplementary ResultsRefinement for Gene Loss and DuplicationEstimates under Opal Stop Codon Recodin...
Evaluating metagenomic software is key for optimizing metagenome interpretation and focus of the Ini...
The current revolution in genomics has been made possible by software tools called genome assemblers...
Evaluating metagenomic software is key for optimizing metagenome interpretation and focus of the Ini...
Metagenomics is the study of the totality of the complete genetic elements discovered from a defined...
Advances in sequencing technologies and bioinformatics tools have dramatically increased the recover...
Large-scale recovery of genomes from isolates, single cells, and metagenomic data has been made poss...
Background Although the total number of microbial taxa on Earth is under debate, it is clear that on...
Genomes are an integral component of the biological information about an organism; thus, the more co...
International audienceBackground: The biological and clinical consequences of the tight interactions...
Motivation: Methodological advances in metagenome assembly are rapidly increasing in the number of p...
Metagenome assembled genomes (MAGs) generated by taking raw reads from 58 samples that were quality-...
International audienceBackground: Over the last decade, we have observed in microbial ecology a tran...
SUMMARY: Metagenomics and single-cell genomics have revolutionized the study of microorganisms, incr...
By sequencing environmental DNA and reconstructing microbial genomes, we can obtain insight into the...
Supplementary ResultsRefinement for Gene Loss and DuplicationEstimates under Opal Stop Codon Recodin...
Evaluating metagenomic software is key for optimizing metagenome interpretation and focus of the Ini...
The current revolution in genomics has been made possible by software tools called genome assemblers...
Evaluating metagenomic software is key for optimizing metagenome interpretation and focus of the Ini...
Metagenomics is the study of the totality of the complete genetic elements discovered from a defined...