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A comprehensive catalog encompassing 1376 species-level genomes reveals the core community and functional diversity of anammox microbiota.

Authors :
Wang, Depeng
Meng, Yabing
Huang, Li-Nan
Zhang, Xu-Xiang
Luo, Xiaonan
Meng, Fangang
Source :
Water Research. Nov2024, Vol. 266, pN.PAG-N.PAG. 1p.
Publication Year :
2024

Abstract

• A comprehensive genome catalog of anammox consortia was constructed. • The 1376 species-level genomes represented extensive microbial coverage. • The 64 core genera comprised approximately 64.25 % of the total microorganisms. • Genera UBA12294 and OLB14 of order Anaerolineales were identified as strict core taxa. • Core genera Desulfobacillus and Zeimonas exhibited taxonomic and functional diversity. Research on the microbial community and function of the anammox process for environmentally friendly wastewater treatment has achieved certain success, which may mean more universal insights are needed. However, the comprehensive understanding of the anammox process is constrained by the limited taxonomic assignment and functional characterization of anammox microbiota, primarily due to the scarcity of high-quality genomes for most organisms. This study reported a global genome catalog of anammox microbiotas based on numerous metagenomes obtained from both lab- and full-scale systems. A total of 1376 candidate species from 7474 metagenome-assembled genomes were used to construct the genome catalog, providing extensive microbial coverage (averaged of 92.40 %) of anammox microbiota. Moreover, a total of 64 core genera and 44 core species were identified, accounting for approximately 64.25 % and 43.97 %, respectively, of anammox microbiota. The strict core genera encompassed not only functional bacteria (e.g., Brocadia, Desulfobacillus, Zeimonas , and Nitrosomonas) but also two candidate genera (UBA12294 and OLB14) affiliated with the order Anaerolineales. In particular, core denitrifying bacteria with observably taxonomic diversity exhibited diverse functional profiles; for instance, the potential of carbohydrate metabolism in Desulfobacillus and Zeimonas likely improves the mixotrophic lifestyle of anammox microbiota. Besides, a noteworthy association was detected between anammox microbiota and system type. Microbiota in coupling system exhibited complex diversity and interspecies interactions by limiting numerous core denitrifying bacteria. In summary, the constructed catalog substantially expands our understanding of the core community and their functions of anammox microbiota, providing a valuable resource for future studies on anammox systems. [Display omitted] [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00431354
Volume :
266
Database :
Academic Search Index
Journal :
Water Research
Publication Type :
Academic Journal
Accession number :
180629155
Full Text :
https://doi.org/10.1016/j.watres.2024.122356