Distribution and Catalytic Mechanism of a Novel Carboxylesterase Degrading Multiple Aryloxyphenoxypropionate Herbicides in Bacteria and Archaea

Abstract Aryloxyphenoxypropionate (AOPP), a widely used class of herbicides, pose significant risks to ecosystems and human health. In this study, Bacillus amyloliquefaciens L1 was isolated as a novel degrader, completely degrading 97.42 mg/L cyhalofop-butyl within 12 h via ester bond hydrolysis to cyhalofop acid. A new carboxylesterase, PnbA, was identified from strain L1, showing substrate preference for cyhalofop-butyl > clodinafop-propargyl > haloxyfop-p-methyl > quizalofop-p-ethyl. Molecular docking and mutagenesis identified S190 as a key catalytic residue. Two mutants, K411A and T412A, exhibited enhanced relative activities toward both cyhalofop-butyl (124.08 and 153.16%, respectively) and quizalofop-p-ethyl (120.97 and 171.06%, respectively) due to accelerated substrate capture and improved binding affinity. Strain L1 effectively remediated cyhalofop-butyl from contaminated soil and water matrices in natural microbial backgrounds. Homologous protein analysis revealed an overwhelming bacterial origin (99.39%) versus archaea (0.61%). This study provides novel enzymatic resources for AOPP remediation and expands the understanding of its microbial genetic basis.

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Publication Details

Journal
Journal of Agricultural and Food Chemistry
Published
2026-09-19
DOI
https://doi.org/10.1021/acs.jafc.6c07577
Primary Topic
Pesticide and Herbicide Environmental Studies
Type
article
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article

Distribution and Catalytic Mechanism of a Novel Carboxylesterase Degrading Multiple Aryloxyphenoxypropionate Herbicides in Bacteria and Archaea

Feng Zhao, Menghao Li, Huihua Tan, Yingying Bao et al.
Journal of Agricultural and Food Chemistry
Pesticide and Herbicide Environmental Studies
article

Distribution and Catalytic Mechanism of a Novel Carboxylesterase Degrading Multiple Aryloxyphenoxypropionate Herbicides in Bacteria and Archaea

Feng Zhao, Menghao Li, Huihua Tan, Yingying Bao, Yanmei Liu, Yiyun Chen, Ning Lv, Xiaotian Cao, Xiaoyun Liu, Xuke Pan, Wenfeng Gong
article en

Abstract

Abstract Aryloxyphenoxypropionate (AOPP), a widely used class of herbicides, pose significant risks to ecosystems and human health. In this study, Bacillus amyloliquefaciens L1 was isolated as a novel degrader, completely degrading 97.42 mg/L cyhalofop-butyl within 12 h via ester bond hydrolysis to cyhalofop acid. A new carboxylesterase, PnbA, was identified from strain L1, showing substrate preference for cyhalofop-butyl > clodinafop-propargyl > haloxyfop-p-methyl > quizalofop-p-ethyl. Molecular docking and mutagenesis identified S190 as a key catalytic residue. Two mutants, K411A and T412A, exhibited enhanced relative activities toward both cyhalofop-butyl (124.08 and 153.16%, respectively) and quizalofop-p-ethyl (120.97 and 171.06%, respectively) due to accelerated substrate capture and improved binding affinity. Strain L1 effectively remediated cyhalofop-butyl from contaminated soil and water matrices in natural microbial backgrounds. Homologous protein analysis revealed an overwhelming bacterial origin (99.39%) versus archaea (0.61%). This study provides novel enzymatic resources for AOPP remediation and expands the understanding of its microbial genetic basis.

Journal of Agricultural and Food Chemistry
Guangxi University (CN), Gansu Agricultural University (CN), Guangxi University of Science and Technology (CN), Animal Husbandry and Veterinary Department (IN), Department of Animal Husbandry (IN)
Openalex Percentile: Top 22%
Pesticide and Herbicide Environmental Studies
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