期刊文献+

Microbial Degradation of Organophosphate Pesticides: A Review 被引量:12

Microbial Degradation of Organophosphate Pesticides: A Review
原文传递
导出
摘要 Pesticides have become an inevitable part of the modern environment as they are widely used in agriculture,household,and public health sectors and,hence,are extensively distributed throughout most ecosystems.Currently,organophosphate pesticides are the most commercially favored group of pesticides,with large application areas all over the world.Depending on their fate,these organophosphorus compounds may become bioavailable for microbial degradation.Environmental microbes,such as Aspergillus,Pseudomonas,Chlorella,and Arthrobacter,are capable of coupling a variety of physical and biochemical mechanisms for the degradation of organophosphate pesticides,including adsorption,hydrolysis of P–O alkyl and aryl bonds,photodegradation,and enzymatic mineralization.Enzymes,such as esterase,diisopropyl fluorophosphatase,phosphotriesterase,somanase,parathion hydrolase,and paraoxonase,have been isolated from microbes to study and understand the catabolic pathways involved in the biotransformation of these xenobiotic compounds.This review highlights various aspects of biodegradation of organophosphate pesticides along with biological and molecular characterization of some organophosphate pesticide-degrading bacteria. Pesticides have become an inevitable part of the modern environment as they are widely used in agriculture,household,and public health sectors and,hence,are extensively distributed throughout most ecosystems.Currently,organophosphate pesticides are the most commercially favored group of pesticides,with large application areas all over the world.Depending on their fate,these organophosphorus compounds may become bioavailable for microbial degradation.Environmental microbes,such as Aspergillus,Pseudomonas,Chlorella,and Arthrobacter,are capable of coupling a variety of physical and biochemical mechanisms for the degradation of organophosphate pesticides,including adsorption,hydrolysis of P–O alkyl and aryl bonds,photodegradation,and enzymatic mineralization.Enzymes,such as esterase,diisopropyl fluorophosphatase,phosphotriesterase,somanase,parathion hydrolase,and paraoxonase,have been isolated from microbes to study and understand the catabolic pathways involved in the biotransformation of these xenobiotic compounds.This review highlights various aspects of biodegradation of organophosphate pesticides along with biological and molecular characterization of some organophosphate pesticide-degrading bacteria.
出处 《Pedosphere》 SCIE CAS CSCD 2018年第2期190-208,共19页 土壤圈(英文版)
基金 financial support for mobility grant provided by the National Council for Science and Technology of Mexico-Department of Science and Technology (CONACYTDST) under the Mexico-India Bilateral Cooperation Project of Mexico (No. 266482) and India (No. INT/ Mexico P-04/2016)
关键词 BIODEGRADATION ENZYMES INSECTICIDE metabolic PATHWAYS pesticide-degrading bacteria ORGANOPHOSPHORUS compound xenobiotics biodegradation enzymes insecticide metabolic pathways pesticide-degrading bacteria organophosphorus compound xenobiotics
  • 相关文献

参考文献2

二级参考文献30

  • 1李顺鹏,蒋建东.农药污染土壤的微生物修复研究进展[J].土壤,2004,36(6):577-583. 被引量:75
  • 2Viguri J R, Irabien M J, Yusta I, Sotoc J, Gomezc J, Rodriguezd P, Martinez-Madride M, Irabiena J A, Coza A, 2007. Physico-chemical and toxicological characterization of the historic estuarine sediments: a multidisciplinary approach. Environment International, 33(4): 436-444
  • 3Wei Y S, Liu J X, 2006. Sludge reduction with a novel combined worm-reactor. Hydrobiologia, 564(1): 213-222.
  • 4Yoshii K, Tsumura Y, Ishimitsu S, Tonogai Y, Nakamuro K, 2000. Degradation of malathion and phenthoate by glutathione reductase in wheat germ. Journal of Agricultural and Food Chemistry, 48(6): 2502-2505.
  • 5Aziz C E, Georgiou G, Speitel G E Jr, 1999. Cometabolism of chlorinated solvents and binary chlorinated solvent mixtures using M. trichosporium OB3b PP358. Biotechnology and Bioengineering, 65(1): 100-107.
  • 6Barik S, Munnecke D M, Fletcher J S, 1984. Bacterial degradation of three dithioate pesticides. Agricultural Wastes, 10(1): 81-94.
  • 7Barlas N E, 1996. Toxicological assessement of biodegraded malathion in albino mice. Bulletin of Environmental Contamination and Toxicology, 57(5): 705-712.
  • 8Bourquin A W, 1977. Degradation of malathion by salt-marsh microorganisms. Applied and Environmental Microbiology, 33(2): 356-362.
  • 9Chambers W H, 1992. Organophosphorous compounds: an overview. In: Organophosphates, Chemistry, Fate, and Effects (Chambers J E, Levi P E, eds.). San Diego: Academic Press. 3-17.
  • 10Dad N K, Qureshi S A, Pandya V K, 1982. Acute toxicity of two insecticides to mbificid worms, Tubifex tubifex and Limnodrilus hoffmeisteri. Environment International, 7(5): 361-363.

共引文献36

同被引文献146

引证文献12

二级引证文献34

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部