Arsenic methylation and microbial communities in paddy soils under alternating anoxic and oxic conditions
Author:
Publisher
Elsevier BV
Subject
General Environmental Science,General Medicine,Environmental Chemistry,Environmental Engineering
Reference43 articles.
1. Inhibition of microbial methylation via arsM in the rhizosphere: arsenic speciation in the soil to plant continuum;Afroz;Environ. Sci. Technol.,2019
2. Oxic-anoxic regime shifts mediated by feedbacks between biogeochemical processes and microbial community dynamics;Bush;Nat. Commun.,2017
3. Bacterial aox genotype from arsenic contaminated mine to adjacent coastal sediment: evidences for potential biogeochemical arsenic oxidation;Chang;J. Hazard. Mater.,2011
4. Sulfate-reducing bacteria and methanogens are involved in arsenic methylation and demethylation in paddy soils;Chen;ISME J.,2019
5. Sulfate addition and rising temperature promote arsenic methylation and the formation of methylated thioarsenates in paddy soils;Chen;Soil Biol. Biochem.,2021
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