Microbial degradation of the organophosphate pesticide, Ethion
The organophosphate pesticide, Ethion, remains a major environmental contaminant in rural Australia and poses a significant threat to environmental and public health. The aerobic degradation of Ethion by mesophilic bacteria isolated from contaminated soils surrounding disused cattle dip sites was in...
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Published in | FEMS microbiology letters Vol. 240; no. 1; pp. 49 - 53 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
Published |
Oxford, UK
Blackwell Publishing Ltd
01.11.2004
Blackwell Oxford University Press |
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Abstract | The organophosphate pesticide, Ethion, remains a major environmental contaminant in rural Australia and poses a significant threat to environmental and public health. The aerobic degradation of Ethion by mesophilic bacteria isolated from contaminated soils surrounding disused cattle dip sites was investigated. Two isolates, identified as Pseudomonas and Azospirillum species, were capable of biodegrading Ethion when cultivated in minimal salts medium. The abiotic hydrolytic degradation products of Ethion such as Ethion Dioxon and O,O-diethylthiosphosphate were not detected. The data suggest the rapid degradation of Ethion to support microbial growth. The results have implications for the development of a bioremediation strategy. |
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AbstractList | The organophosphate pesticide, Ethion, remains a major environmental contaminant in rural Australia and poses a significant threat to environmental and public health. The aerobic degradation of Ethion by mesophilic bacteria isolated from contaminated soils surrounding disused cattle dip sites was investigated. Two isolates, identified as Pseudomonas and Azospirillum species, were capable of biodegrading Ethion when cultivated in minimal salts medium. The abiotic hydrolytic degradation products of Ethion such as Ethion Dioxon and O,O-diethylthiosphosphate were not detected. The data suggest the rapid degradation of Ethion to support microbial growth. The results have implications for the development of a bioremediation strategy. Abstract The organophosphate pesticide, Ethion, remains a major environmental contaminant in rural Australia and poses a significant threat to environmental and public health. The aerobic degradation of Ethion by mesophilic bacteria isolated from contaminated soils surrounding disused cattle dip sites was investigated. Two isolates, identified as Pseudomonas and Azospirillum species, were capable of biodegrading Ethion when cultivated in minimal salts medium. The abiotic hydrolytic degradation products of Ethion such as Ethion Dioxon and O,O-diethylthiosphosphate were not detected. The data suggest the rapid degradation of Ethion to support microbial growth. The results have implications for the development of a bioremediation strategy. |
Author | R. Foster, L. John Kwan, Bia H. Vancov, Tony |
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Keywords | Biodegradation Organophosphate Ethion Pseudomonadales Microorganism growth Insecticide Spirillales Enzyme Azospirillum Pesticides Spirillaceae Environmental factor Esterases Pseudomonas Phosphoric triester hydrolases Bacteria Hydrolases Pseudomonadaceae Environment Organophosphorus compounds Aryldialkylphosphatase Degradation product |
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Snippet | The organophosphate pesticide, Ethion, remains a major environmental contaminant in rural Australia and poses a significant threat to environmental and public... Abstract The organophosphate pesticide, Ethion, remains a major environmental contaminant in rural Australia and poses a significant threat to environmental... |
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SubjectTerms | Aerobic conditions Azospirillum Azospirillum - growth & development Azospirillum - metabolism Bacteria Bacteriology Biodegradation Biodegradation, Environmental Biological and medical sciences Bioremediation Contaminants Degradation products Ethion Fundamental and applied biological sciences. Psychology Insecticides - chemistry Insecticides - metabolism Mesophilic bacteria Metabolism. Enzymes Microbial degradation Microbiology Microorganisms Organophosphate Organophosphates organophosphorus acaricides Organophosphorus pesticides Organothiophosphorus Compounds - chemistry Organothiophosphorus Compounds - metabolism Pesticides pollutants polluted soils Pseudomonas Pseudomonas - growth & development Pseudomonas - metabolism Public health Rural environments Salts Soil bacteria Soil contamination Soil investigations Soil Pollutants - metabolism Soil pollution Western Australia |
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Title | Microbial degradation of the organophosphate pesticide, Ethion |
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