Culturing the uncultured microbial majority in activated sludge: A critical review
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Summary
The microorganism “wanted list” inactivated sludge is summarized, the potential cultivation methods that could extend the understanding of activated sludge microbiota are reviewed, and the significance and perspectives for activated sludging microbiota cultivation are discussed.
- Type
- review
- Published
- 2022-05-26
- Cited by
- 31
- References
- 150
- Access
- Open access
- OpenAlex
- https://openalex.org/W4281560974
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:249106194
Keywords
Activated sludge, Sewage treatment, Wastewater, Microorganism, Biomass (ecology)
References
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- Scaling laws predict global microbial diversity
- The activated sludge ecosystem contains a core community of abundant organisms
- Isolation of functional single cells from environments using a micromanipulator: application to study denitrifying bacteria
- New method to characterize microbial diversity using flow cytometry
- Pilon: An Integrated Tool for Comprehensive Microbial Variant Detection and Genome Assembly Improvement
- MALDI-TOF mass spectrometry
- Bacterial assembly and temporal dynamics in activated sludge of a full-scale municipal wastewater treatment plant
- Current and Past Strategies for Bacterial Culture in Clinical Microbiology
- Direct quantification of bacterial biomass in influent, effluent and activated sludge of wastewater treatment plants by using flow cytometry.
- A new antibiotic kills pathogens without detectable resistance
- The Planctomycetes, Verrucomicrobia, Chlamydiae and sister phyla comprise a superphylum with biotechnological and medical relevance.
- Marine microorganisms and global nutrient cycles
Cited by
- The soil pH and heavy metals revealed their impact on soil microbial community.
- Mining microbial resources from water
- The microbial dark matter and “wanted list” in worldwide wastewater treatment plants
- Enriching the endophytic bacterial microbiota of Ginkgo roots
- Dynamic Simulation and Optimization of Activated Sludge Unit Using the ASM3 Model to Maximize Removal Efficiency of Slowly Biodegradable Substrates
- Large-scale comparative analysis reveals different bacterial community structures in full- and lab-scale wastewater treatment bioreactors.
- Amplicon-guided isolation and cultivation of previously uncultured microbial species from activated sludge
- Horizontal transfer potential of antibiotic resistance genes in wastewater treatment plants unraveled by microfluidic-based mini-metagenomics.
- Metagenome sequencing reveals shifts in phage-associated antibiotic resistance genes from influent to effluent in wastewater treatment plants.
- Effects of operational parameters on bacterial communities in Hong Kong and global wastewater treatment plants
- Starting with screening strains to construct synthetic microbial communities (SynComs) for traditional food fermentation.
- Performance of Treating Surfactant-Containing Wastewater by Using Algal–Bacterial Granular Sludge
- Selection and horizontal gene transfer underlie microdiversity-level heterogeneity in resistance gene fate during wastewater treatment
- Rethinking characterization, application, and importance of extracellular polymeric substances in water technologies.
- The resistance mechanism of humic acids and proteins in soluble microbial products from activated sludge against silver nanoparticles
- High-throughput single-cell sequencing of activated sludge microbiome
- Deep insights into the assembly mechanisms, co-occurrence patterns, and functional roles of microbial community in wastewater treatment plants.
- Ultra pure high molecular weight DNA from soil for Nanopore shotgun metagenomics and metabarcoding sequencing
- Metatranscriptomic time series insight into antibiotic resistance genes and mobile genetic elements in wastewater systems under antibiotic selective pressure
- Sludge water: a potential pathway for the spread of antibiotic resistance and pathogenic bacteria from hospitals to the environment
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