Abundance, Composition and Activity of Ammonia Oxidizer and Denitrifier Communities in Metal Polluted Rice Paddies from South China
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Summary
Changes in the abundance and activity of ammonia oxidizing and denitrifying communities of rice paddies in two sites with different metal accumulation situation under long-term pollution from metal mining and smelter activities are examined to suggest complex interactions between soil properties and metal contents on the observed community and activity changes, and thus on the N transformation in the polluted rice soils.
- Type
- article
- Published
- 2014-07-24
- Cited by
- 36
- References
- 73
- Access
- Open access
- OpenAlex
- https://openalex.org/W25058658
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:14287152
Keywords
Isolation (microbiology), Medicine, Patient isolation, Health care, Medical emergency
References
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- Genotypic variations in cadmium levels of rice grain
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Cited by
- Enhanced rice production but greatly reduced carbon emission following biochar amendment in a metal-polluted rice paddy
- The effect of human settlement on the abundance and community structure of ammonia oxidizers in tropical stream sediments
- Multiple Factors Affect Diversity and Abundance of Ammonia-Oxidizing Microorganisms in Iron Mine Soil
- Abundance, composition and activity of denitrifier communities in metal polluted paddy soils
- Distribution and diversity of bacterial communities and sulphate‐reducing bacteria in a paddy soil irrigated with acid mine drainage
- Repeated application of composted tannery sludge affects differently soil microbial biomass, enzymes activity, and ammonia-oxidizing organisms
- Environmental impact of mining activity in Bor area as indicated by the distribution of heavy metals and bacterial population dynamics in sediment
- Microbial community structure and activity in trace element-contaminated soils phytomanaged by Gentle Remediation Options (GRO).
- Effects of long-term pig manure application on antibiotics, abundance of antibiotic resistance genes (ARGs), anammox and denitrification rates in paddy soils.
- Short-term biochar manipulation of microbial nitrogen transformation in wheat rhizosphere of a metal contaminated Inceptisol from North China plain.
- Denitrifier communities impacted by heavy metal contamination in freshwater sediment.
- Denitrifying Microbial Communities in Heavy-Metal-Contaminated Paddy Soils near Electronic-Waste Processing Centers
- Response of ammonia-oxidizing archaea to heavy metal contamination in freshwater sediment.
- Variations of Abundance and Community Structure of Ammonia Oxidizers and Nitrification Activity in Two Paddy Soils Polluted by Heavy Metals
- The negative impact of cadmium on nitrogen transformation processes in a paddy soil is greater under non-flooding than flooding conditions.
- A new process for simultaneous nitrogen and cadmium(Cd(II)) removal using iron-reducing bacterial immobilization system
- Bacterial communities and nitrogen transformation genes in streambank legacy sediments and implications for biogeochemical processing
- Application of rapeseed residue increases soil organic matter, microbial biomass, and enzyme activity and mitigates cadmium pollution risk in paddy fields.
- Levels of heavy metal concentrations and their effect on net nitrification rates and nitrifying archaea/bacteria in paddy soils of Bangladesh
- Securing of an Industrial Soil Using Turfgrass Assisted by Biostimulants and Compost Amendment
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