Carbendazim: Ecological risks, toxicities, degradation pathways and potential risks to human health

T Zhou, T Guo, Y Wang, A Wang, M Zhang - Chemosphere, 2023 - Elsevier
Carbendazim is a highly effective benzimidazole fungicide and is widely used throughout
the world. The effects of carbendazim contamination on the biology and environment should …

Toxicity, monitoring and biodegradation of the fungicide carbendazim

S Singh, N Singh, V Kumar, S Datta, AB Wani… - Environmental chemistry …, 2016 - Springer
The increasing use of toxic pesticides is a major environmental concern. Carbendazim is a
systemic fungicide having wide applications for controlling fungal diseases in agriculture …

Enhanced adsorptive removal of carbendazim from water by FeCl3-modified corn straw biochar as compared with pristine, HCl and NaOH modification

Y Wang, J Miao, M Saleem, Y Yang, Q Zhang - Journal of Environmental …, 2022 - Elsevier
Carbendazim residues were widely present in the worldwide water which caused a potential
risk to water ecosystem and human health. Therefore, it is necessary to develop …

Pesticides in surface waters of tropical river basins draining areas with rice–vegetable rotations in Hainan, China: Occurrence, relation to environmental factors, and …

H Tan, H Zhang, C Wu, C Wang, Q Li - Environmental Pollution, 2021 - Elsevier
Pesticides are heavily applied in rice–vegetable rotations in tropical China, yet publicly
available information on the contamination and risk of currently used pesticides (CUPs) and …

Microbes as carbendazim degraders: opportunity and challenge

Y Zhou, T Wang, L Wang, P Wang, F Chen… - Frontiers in …, 2024 - frontiersin.org
Carbendazim (methyl benzimidazol-2-ylcarbamate, CBZ) is a systemic benzimidazole
carbamate fungicide and can be used to control a wide range of fungal diseases caused by …

Specific Micropollutant Biotransformation Pattern by the Comammox Bacterium Nitrospira inopinata

P Han, Y Yu, L Zhou, Z Tian, Z Li, L Hou… - … science & technology, 2019 - ACS Publications
The recently discovered complete ammonia-oxidizing (comammox) bacteria occur in various
environments, including wastewater treatment plants. To better understand their role in …

Characterization of a novel carbendazim-degrading strain Rhodococcus sp. CX-1 revealed by genome and transcriptome analyses

Z Long, X Wang, Y Wang, H Dai, C Li, Y Xue… - Science of The Total …, 2021 - Elsevier
The persistence and ecotoxicity of carbendazim residues pose a potential risk to
environmental ecology and human health. Here, a novel and highly efficient carbendazim …

Rhamnolipid-aided biodegradation of carbendazim by Rhodococcus sp. D-1: Characteristics, products, and phytotoxicity

N Bai, S Wang, R Abuduaini, M Zhang, X Zhu… - Science of the Total …, 2017 - Elsevier
We successfully isolated Rhodococcus sp. D-1, an efficient carbendazim-degrading
bacterium that degraded 98.20% carbendazim (200 ppm) within 5 days. Carbendazim was …

Microbial fingerprinting of potential biodegrading organisms

B Mishra, S Varjani, GP Iragavarapu, HH Ngo… - Current Pollution …, 2019 - Springer
The world is witnessing various pollutants in the environment since the last few decades that
threaten human life. The biological responses to various pollutants show variations as the …

Functional analysis, diversity, and distribution of carbendazim hydrolases MheI and CbmA, responsible for the initial step in carbendazim degradation

M Zhang, X Bai, Q Li, L Zhang, Q Zhu… - Environmental …, 2022 - Wiley Online Library
Strains Rhodococcus qingshengii djl‐6 and Rhodococcus jialingiae djl‐6‐2 both harbour
the typical carbendazim degradation pathway with the hydrolysis of carbendazim to 2 …