The MiDAS genome catalog provides a framework for linking taxonomy, metabolism and ecological roles in wastewater treatment systems globally and enables analyses of predicted functional traits and their ecological context.
Abstract
Wastewater treatment relies on complex microbial communities, yet existing genome-resolved references for this essential engineered ecosystem remain dominated by short-read assemblies, limiting genome contiguity and linkage between taxonomic and metabolic function. We applied long-read sequencing to activated sludge from 83 globally distributed plants, reconstructing 53,501 metagenome-assembled genomes to establish the Microbial Database of Activated Sludge (MiDAS) global genome catalog. The catalog encompasses high-quality genomes for 12,047 prokaryotic species, 82% of which are not represented in GTDB release 226, and provides a median of 32 high-quality genomes for each of the 250 core prokaryotic genera previously defined in our MiDAS global 16S rRNA gene survey. This enables analyses of predicted functional traits and their ecological context, for example, we identified two sparsely represented Nitrospiraceae genera with conserved nitrite-oxidation genes that are abundant in higher-temperature wastewater treatment plants. In summary, the MiDAS genome catalog provides a framework for linking taxonomy, metabolism and ecological roles in wastewater treatment systems globally.
The GenomeCompendium is released, a public database and interactive analysis tool for complete prokaryotic genomes and it is shown that complex, repeat-rich genomes are more common than previously estimated.
Tiberiu Totu, Garance Jaques, B. Heiniger et al.· bioRxiv· 0 citations
A genome-resolved metagenomic analysis of 455 soil samples collected at different depths and seasonal stages across two Danish agricultural fields representing sandy and clay soil types revealed extensive biosynthetic and metabolic potential, including 46,913 biosynthetic gene clusters and prevalent genes linked to nit...
Ioanna Chatzigiannidou, Tanvi Taparia, P. L. Johansen et al.· ISME Communications· 0 citations
The reductive TriCarboxylic Acid cycle, long considered restricted to anoxic environments, was detected in three phylogenetically distinct Campylobacterota lineages from oxygenated surface seawater, suggesting a previously unrecognized and unexpected niche for this pathway.
A. Mankowski, S. Wuyts, A. Fullam et al.· bioRxiv· 0 citations
This study presents the first large-scale investigation of four prominent open-source annotation tools (Prokka, Bakta, EggNOG-mapper, and PGAP) across 156,033 diverse genomes, highlighting tool-specific strengths crucial for selecting optimal solutions based on genome quality, taxonomy, and origin.
Mateusz Jundzill, Martin Hölzer, S. Mangul et al.· Genome Biology· 0 citations
Microbial communities are critical for nutrient removal in aerobic granular sludge (AGS) wastewater treatment plants (WWTPs). Despite the stable long-term operation of full-scale AGS WWTPs, the microbial populations and functional traits sustaining stable long-term performance remain poorly resolved. To address this ga...
Lucia Ruiz-Haddad, D. R. Shaw, Muhammad Ali et al.· Environmental Science and Te...· 0 citations
Pangenome analysis reveals recurrent gene-content variation beyond a single reference genome, but its application to eukaryotes is constrained by inconsistent gene annotation. ANNEVO predicts gene models from genome FASTA assemblies without RNA-seq data. We developed EukPan, an automated post-annotation pipeline that s...
K. Seki, Masatoshi Goto, Taiki Futagami et al.· bioRxiv· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.