Accelerated Mineralization of Two Organophosphate Insecticides in the Rhizosphere

Author:

Hsu T.-S.1,Bartha R.1

Affiliation:

1. Rhizosphere Research Group, New Jersey Agricultural Experiment Station, Rutgers University, New Brunswick, New Jersey 08903

Abstract

Numerous xenobiotic compounds, including the organophosphate insecticides O, O -diethyl- O -(2-isopropyl-6-methyl-4-pyrimidinyl) phosphorothioate (diazinon) and O, O -diethyl- O-p -nitrophenyl phosphorothioate (parathion), appear to be degraded in the soil environment by an initial cometabolic attack. Comparing the mineralization rates of radiolabeled diazinon and parathion in root-free and in rhizosphere soil, we tested our hypothesis that, because of the presence of root exudates, the rhizosphere is an especially favorable environment for such co-metabolic transformations. The insecticides were added individually at 5 μg/g to sealed flasks containing either soil permeated by the root system of a bush bean plant or identical soil without roots. Periodically, the flask atmospheres were flushed through traps and the evolved 14 CO 2 was quantitated. Bush bean plant roots without associated rhizosphere microorganisms failed to produce a significant amount of 14 CO 2 . During 1 month of incubation, rhizosphere flasks mineralized 12.9 and 17.9% of the added diazinon and parathion radiocarbon, respectively, compared to 5.0 and 7.8% by the soil without roots. The mineralization of parathion but not of diazinon was stimulated in a similar manner when soil without roots was repeatedly irrigated with a root exudate produced in aseptic solution culture. Viable counts of microorganisms on soil extract agar were not significantly altered by root permeation or by root exudate treatment of the soil, leaving population selection and/or enhanced cometabolic activity as the most plausible interpretations for the observed stimulatory effects. Rhizosphere interactions may substantially shorten the predicted half-lives of some xenobiotic compounds in soil.

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

Reference23 articles.

1. Alexander M. 1977. Introduction to soil microbiology 2nd ed. p. 423-437. John Wiley & Sons New York.

2. Exudation of amino acids by intact and damaged roots of wheat and peas;Ayers W. A.;Plant Soil,1968

3. Diazinon. II. Residues in plants, soil and water;Bartch E.;Residue Rev.,1974

4. Parathion utilization by bacterial synbionts in a chemostat. Appi;Daughton C. G.;Environ. Microbiol.,1977

5. Accelerated parathion degradation in soil by inoculation with parathion-utilizing bacteria;Daughton C. G.;Bull. Environ. Contam. Toxicol.,1977

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