Microbial aspects of atrazine degradation in natural environments

@article{KomangRalebitso2004MicrobialAO,
  title={Microbial aspects of atrazine degradation in natural environments},
  author={T. Komang Ralebitso and Eric Senior and Henk W. van Verseveld},
  journal={Biodegradation},
  year={2004},
  volume={13},
  pages={11-19}
}
The potential toxicity of thes-triazine herbicide atrazine motivates continuous bioremediation-directed research. Several indigenous soilatrazine-catabolizing microbialassociations and monocultures have been enriched/isolated from compromised sites. Of these, Pseudomonas sp. strain ADP has become a reference strain and has been used to elucidate sequences of the catabolic enzymes atzA, atzB, atzCand atzD involvedin one aerobic degradation pathway and develop probes for the genes which encode… 

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References

SHOWING 1-10 OF 119 REFERENCES
Characterization of S-Triazine Herbicide Metabolism by a Nocardioides sp. Isolated from Agricultural Soils
ABSTRACT Atrazine, a herbicide widely used in corn production, is a frequently detected groundwater contaminant. Nine gram-positive bacterial strains able to use this herbicide as a sole source of
A comparison of three atrazine-degrading bacteria for soil bioremediation
  • E. Topp
  • Biology, Engineering
    Biology and Fertility of Soils
  • 2001
TLDR
Important differences in the ability of atrazine-hydrolyzing bacteria to degrade this compound in soil are revealed, and it is suggested that the ability to utilize atrazin as a carbon source is important to establish "enhanced degradation" by ecologically meaningful inoculum densities.
Biodegration of s-triazine xenobiotics
Biodegradation of xenobiotic compounds is examined with s-triazines as an example and with biological treatment of wastewater containing s-triazines as an aim. s-Triazines have been termed
Characterization of an Atrazine-DegradingPseudaminobacter sp. Isolated from Canadian and French Agricultural Soils
TLDR
It is proposed that the widespread distribution of the atrazine-degrading Pseudaminobacter sp.
Field-scale remediation of atrazine-contaminated soil using recombinant Escherichia coli expressing atrazine chlorohydrolase.
TLDR
The first field-scale atrazine remediation study in the United States using chemically killed, recombinant organisms indicates that genetically engineered bacteria overexpressing catabolic genes significantly increased degradation in this soil heavily contaminated with atrazin.
Hybridization Analysis of Microbial DNA from Fuel Oil–Contaminated and Noncontaminated Soil
TLDR
Among the genes tested, xylE was the most sensitive indicator of low levels of fuel oil contamination, and hybridization intensity quickly decreased to levels below detection 6–8 days after addition of the gasoline.
Mineralization of the s-triazine ring of atrazine by stable bacterial mixed cultures.
TLDR
The rate of atrazine degradation, even at the elevated concentrations used, far exceeded the rates previously reported in soils, waters, and mixed and pure cultures of bacteria.
Influence of Organic Amendments on Biodegradation of Atrazine as a Nitrogen Source
Carbon and N dynamics may be particularly important for selective enrichment of microorganisms that are capable of using xenobiotics as sources of N for growth. To investigate this hypothesis in
Accelerated biodegradation of atrazine by a microbial consortium is possible in culture and soil
TLDR
A mixed enrichment culture of microorganisms capable of accelerated mineralization of atrazine was isolated from soil treated with successive applications of the herbicide to enhance mineralization more than 20 fold as compared to uninoculated soil.
The potential of soil microorganisms to mineralize atrazine as predicted by MCH-PCR followed by nested PCR.
TLDR
Nested PCR proved to be the most effective method for predicting the exact potential of the soil to mineralize the pollutant even without enrichment of a small population with the target genes, and magnetic capture hybridization was the most efficient of the two tested methods for purifying target DNA of PCR inhibitors.
...
1
2
3
4
5
...