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PMID: 24241161 Published · ppublish English Journal Article

Bacterial bioconcentration of chlorinated hydrocarbon insecticides from aqueous systems.

Microbial ecology ·Vol. 2 ·No. 1 ·1975-03-00 ·Pages 43-59

Grimes DJ, Morrison SM

Abstract

The prevalence of chlorinated hydrocarbon insecticide uptake by chemoorganotrophic bacteria has been investigated. Thirteen bacterial species were observed to sorb and concentrate (bioconcentratc)α-chlordane,β-chlordane, dieldrin, heptachlor epoxide, and lindane from aqueous systems. Bioconcentration, as expressed by the ratio of cellular insecticide in ng/mg (dry wt) to supernatant insecticide in ng/μl, ranged from 10 for lindane byEnterobacter aerogenes to a high of 55,900 forβ-chlordane byCaulobacter vibrioides var.limonus. Amounts of cellular chlorinated hydrocarbon insecticides (CHI) detected and the bioconcentration ratios were observed to have the following order in magnitude:α- orβ-chlordane > dieldrin > heptachlor epoxide > lindane. This decreasing order was the inverse of reported water solubilities for the CHI and the inverse relationship was mathematically defined. The CHI were not easily removed from cells by washing (desorbing) and desorption was directly proportional to insecticide water solubility. Uptake of the CHI was rapid, near-maximum amounts being sorbed within 15 min, and pH 7 appeared optimal for bioconcentration as examined over the range pH 6 to 8. Implications of this investigation are that bioconcentration of CHI by bacteria might serve as a means of introducing these toxic compounds into aquatic food chains and that the bioconcentration phenomenon might lend itself as a treatment procedure for the intentional removal of residual CHI from water supplies and wastewater.

Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Grimes D J
Department of Microbiology, Colorado State University, 80523, Fort Collins, Colorado.
Morrison S M
References (17)
17 references, click to expand
  1. Low ambient level uptake of(14)C-DDT by three species of marine phytoplankton.
    Bull Environ Contam Toxicol. 1970 May;5(3):218-21 PMID: 23989271
  2. Adsorption and desorption of lindane and dieldrin by yeast.
    Bull Environ Contam Toxicol. 1969 Sep;4(5):271-7 PMID: 24185555
  3. Accumulation of parathion and DDT by some algae and protozoa.
    J Protozool. 1969 Feb;16(1):69-71 PMID: 5806202
  4. Distribution ratio of some chlorinated hydrocarbon insecticides between hexane and water.
    Bull Environ Contam Toxicol. 1969 Mar;4(2):64-7 PMID: 23989225
  5. Interaction of pesticides with aquatic microorganisms and plankton.
    Residue Rev. 1970;33:15-45 PMID: 4921845
  6. Pesticide and herbicide interaction with microbial ecosystems.
    Antonie Van Leeuwenhoek. 1970;36(4):580-1 PMID: 5312615
  7. Accumulation of DDT and dieldrin by microorganisms.
    Can J Microbiol. 1967 Aug;13(8):1123-6 PMID: 6049598
  8. Reported solubilities of 738 pesticide chemicals in water.
    Residue Rev. 1968;20:1-148 PMID: 4866364
  9. BIOLOGICAL PROPERTIES AND CLASSIFICATION OF THE CAULOBACTER GROUP.
    Bacteriol Rev. 1964 Sep;28:231-95 PMID: 14220656
  10. Aldrin: removal from lake water by flocculent bacteria.
    Science. 1970 Sep 4;169(3949):993-5 PMID: 5432704
  11. Anaerobic degradation of selected chlorinated hydrocarbon pesticides.
    J Water Pollut Control Fed. 1967 Aug;39(8):1259-77 PMID: 6074484
  12. Accumulation and concentration of chlorinated hydrocarbon pesticides by microorganisms in soil.
    Can J Microbiol. 1968 Oct;14(10):1075-8 PMID: 5681519
  13. The fine structure of two unusual stalked bacteria.
    J Cell Biol. 1965 Oct;27(1):133-50 PMID: 5857250
  14. The aerobic pseudomonads: a taxonomic study.
    J Gen Microbiol. 1966 May;43(2):159-271 PMID: 5963505
  15. Uptake of 2,4-dichlorophenoxyacetic acid by Pseudomonas fluorescens.
    Appl Microbiol. 1966 Jul;14(4):486-91 PMID: 5927017
  16. Gas chromatographic characteristics of chlordane. II. Observed compositional changes of the pesticide in aqueous and non-aqueous environments.
    J Chromatogr. 1969 Jun 3;42(1):45-52 PMID: 5788126
  17. Comparative mechanisms of insecticide binding with nerve components of insects and mammals.
    Residue Rev. 1969;25:265-7 PMID: 4894885
Article Info
Journal
Microbial ecology
Abbr.
Microb Ecol
ISSN
0095-3628
Published
1975-03-00
Pages
43-59
Language
English
Region
United States
NLM ID
7500663
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