Review of arsenic speciation, toxicity and metabolism in microalgae

Y Wang, S Wang, P Xu, C Liu, M Liu, Y Wang… - … Science and Bio …, 2015 - Springer
Arsenic is a toxic metalloid and its pollution has become a global environmental problem.
This paper reviewed the current knowledge on the speciation, toxicity and metabolism of …

Bioremediation of arsenic-contaminated water: recent advances and future prospects

MM Bahar, M Megharaj, R Naidu - Water, Air, & Soil Pollution, 2013 - Springer
Arsenic contamination of groundwater and surface water is widespread throughout the
world. Considering its carcinogenicity and toxicity to human and animal health, remediation …

Screening of plant growth-promoting traits in arsenic-resistant bacteria isolated from agricultural soil and their potential implication for arsenic bioremediation

S Das, JS Jean, S Kar, ML Chou, CY Chen - Journal of hazardous materials, 2014 - Elsevier
Twelve arsenic (As)-resistant bacteria (minimum inhibitory concentration ranging from 10 to
30 mM and 150 to 320 mM for As (III) and As (V), respectively) were isolated from the …

[HTML][HTML] Arsenic and other heavy metals resistant bacteria in rice ecosystem: Potential role in promoting plant growth and tolerance to heavy metal stress

R Sultana, SMN Islam, T Sultana - Environmental Technology & Innovation, 2023 - Elsevier
The role of microorganisms in arsenic (As) uptake in association with terrestrial plants is
identified, though their rhizosphere specific association and function in rice and barnyard …

Arsenite-oxidizing bacteria exhibiting plant growth promoting traits isolated from the rhizosphere of Oryza sativa L.: implications for mitigation of arsenic contamination …

S Das, JS Jean, ML Chou, J Rathod, CC Liu - Journal of Hazardous …, 2016 - Elsevier
Arsenite-oxidizing bacteria exhibiting plant growth promoting (PGP) traits can have the
advantages of reducing As-uptake by rice and promoting plant growth in As-stressed soil. A …

Antimony oxidation and whole genome sequencing of Phytobacter sp. X4 isolated from contaminated soil near a flotation site

S **ao, W Wang, C Amanze, R Anaman… - Journal of Hazardous …, 2023 - Elsevier
The conversion of the more toxic Sb (III) into less toxic Sb (V) is an effective strategy for the
treatment of antimony-contaminated sites. In this study, a strain, Phytobacter sp. X4, which …

Microbial oxidation of antimonite and arsenite by bacteria isolated from antimony-contaminated soils

W Choi, J Yu, T Lee - International Journal of Hydrogen Energy, 2017 - Elsevier
Two Sb (III)-oxidizing bacteria were isolated from Sb (III)-contaminated soil. By analyzing the
16S rRNA gene, two isolated strains were designated Shinella sp. NLS1 and Ensifer sp …

Nitrate reduced arsenic redox transformation and transfer in flooded paddy soil-rice system

Z Lin, X Wang, X Wu, D Liu, Y Yin, Y Zhang, S **ao… - Environmental …, 2018 - Elsevier
Inhibition of reductive transformation of arsenic (As) in flooded paddy soils is of fundamental
importance for mitigating As transfer into food chain. Anaerobic arsenite (As (III)) oxidizers …

Potential of versatile bacteria isolated from activated sludge for the bioremediation of arsenic and antimony

DD Nguyen, MG Ha, HY Kang - Journal of Water Process Engineering, 2021 - Elsevier
Two bacterial strains belonging to the genus Shinella were isolated from the activated
sludge of a domestic wastewater treatment plant and could autotrophically oxidize As (III) to …

Biological characterization of Bacillus flexus strain SSAI1 transforming highly toxic arsenite to less toxic arsenate mediated by periplasmic arsenite oxidase enzyme encoded by …

SY Mujawar, DC Vaigankar, SK Dubey - BioMetals, 2021 - Springer
Bacillus flexus strain SSAI1 isolated from agro-industry waste, Tuem, Goa, India displayed
high arsenite resistance as minimal inhibitory concentration was 25 mM in mineral salts …