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Original Articles

Occurrence, Toxicity, and Biotransformation of Pentachloronitrobenzene and Chloroanilines

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Pages 473-518 | Published online: 05 Feb 2014

REFERENCES

  • Agency for Toxic Substances and Disease Registry . 2001 . Internet HazDat: Substance information. Retrieved from http://atsdr1.atsdr.cdc.gov
  • Alder , A. C. , Häggblom , M. M. , Oppenheimer , S. R. and Young , L. Y. 1993 . Reductive dechlorination of polychlorinated biphenyls in anaerobic sediments . Environmental Science and Technology , 27 : 530 – 538 .
  • Ambrus , A. , Hamilton , D. J. , Kuiper , H. A. and Racke , K. D. 2003 . Significance of impurities in the safety evaluation of crop protection products . Pure and Applied Chemistry , 75 : 937 – 973 .
  • Amonette , J. E. , Workman , D. J. , Kennedy , D. W. , Fruchter , J. S. and Gorby , Y A. 2000 . Dechlorination of carbon tetrachloride by Fe(II) associated with goethite . Environmental Science and Technology , 34 : 4606 – 4613 .
  • APVMA . 2012 . Understanding the APVMA's decision on quintozene Retrieved from http://www.apvma.gov.au/publications/gazette/2010/07/gazette_2010–04-12_page_11.pdf
  • Argese , E. , Bettiol , C. , Agnoli , F. , Zambon , A. , Mazzola , M. and Ghirardini , A. V. 2001 . Assessment of chloroaniline toxicity by the submitochondrial particle assay . Environmental Toxicology and Chemistry , 20 : 826 – 832 .
  • Arjmand , M. and Sandermann , H. 1985 . Mineralization of chloroaniline lignin conjugates and of free chloroanilines by the white rot fungus Phanerochaete-chrysosporium . Journal of Agricultural and Food Chemistry , 33 : 1055 – 1060 .
  • Arnold , L. M. , Lin , D. T. and Shultz , T. W. 1990 . QSAR for methyl- and/or chloro-substituted anilines and the polar narcosis mechanism of toxicity . Chemosphere , 21 : 183 – 191 .
  • Arora , P. K. , Sasikala , C. and Ramana , C. V. 2012 . Degradation of chlorinated nitroaromatic compounds . Applied Microbiology and Biotechnology , 93 : 2265 – 2277 .
  • Aschbacher , P. W. and Feil , V. J. 1983 . Metabolism of pentachloronitrobenzene by goats and sheep . Journal of Agricultural and Food Chemistry , 31 : 1150 – 1158 .
  • Assaf-Anid , N. and Lin , K. Y. 2002 . Carbon tetrachloride reduction by Fe2+, S2 −, and FeS with vitamin B12 as organic amendment . Journal of Environmental Engineering , 128 : 94 – 99 .
  • Aulenta , F. , Beccari , M. , Majone , M. , Papini , M. P. and Tandoi , V. 2008 . Competition for H2 between sulfate reduction and dechlorination in butyrate-fed anaerobic cultures . Process Biochemistry , 43 : 161 – 168 .
  • Australian Academy of Technological Sciences . 2002 . Pesticide Use in Australia: A review undertaken by the Australian Academy of Technological Science and Engineering Retrieved from http://www.atse.org.au/index.php?sectionid)199
  • Avrahami , M. and White , D. A. 1976 . Rapid elimination of pentachloronitrobenzene and metabolite from sheep fat . New Zealand Journal of Experimental Agriculture , 4 : 299 – 302 .
  • Bae , H. S. , Yamagishi , T. and Suwa , Y. 2002 . Evidence for degradation of 2-chlorophenol by enrichment cultures under denitrifying conditions . Microbiology , 148 : 221 – 227 .
  • Bae , H. S. , Yamagishi , T. and Suwa , Y. 2004 . An anaerobic continuous-flow fixed-bed reactor sustaining a 3-chlorobenzoate-degrading denitrifying population utilizing versatile electron donors and acceptors . Chemosphere , 55 : 93 – 100 .
  • Baeseman , J. L. and Novak , P. J. 2001 . Effects of various environmental conditions on the transformation of chlorinated solvents by Methanosarcina thermophila cell exudates . Biotechnology Bioengineering , 75 : 634 – 641 .
  • Bailey , R. E , van Wijk , D. and Thomas , P. C. 2009 . Sources and prevalence of pentachlorobenzene in the environment . Chemosphere , 75 : 555 – 564 .
  • Begum , S. , Scheunert , I. , Haque , A. , Klein , W. and Korte , F. 1979 . Conversion of [14C]pentachloronitrobenzene in onions . Pesticide Biochemistry and Physiology , 11 : 189 – 200 .
  • Berkowitz , J. , Stevens , J. , Arnold , D. , Goyer , M. , Senechal , D. , Harrison , J. , Ludwig , R. and Newmeyer , J. 1976 . Substitute chemical program: Initial scientific review of PCNB , Washington , DC : Environmental Protection Agency, Office of Pesticide Programs, Criteria and Evaluation Division . EPA 540/1-75-016
  • Bester , K. , Gatermanna , R. , Huhnerfuss , H. , Langeb , W. and Theobald , N. 1998 . Results of non target screening of lipophilic organic pollutants in the German Bight. IV: Identification and quantification of chloronitrobenzenes and dichloronitrobenzenes . Environmental Pollution , 102 : 163 – 169 .
  • Betts , J. J. , James , S. P. and Thorpe , W. V. 1955 . The metabolism of pentachloronitrobenzene and 2:3:4:6-tetrachloronitrobenzene and the formation of mercapturic acids in the rabbit . Biochemical Journal , 61 : 611 – 617 .
  • Bhadra , R. , Spanggord , R. J. , Wayment , D. G. , Hughes , J. B. and Shanks , J. V. 1999 . Characterization of oxidation products of TNT metabolism in aquatic phytoremediation systems of Myriophyllum aquaticum . Environmental Science and Technology , 33 : 3354 – 3361 .
  • Boon , N. , Goris , J. , De Vos , P. , Verstraete , W. and Top , E. M. 2000 . Bioaugmentation of activated sludge by an indigenous 3-chloroaniline-degrading Comamonas testosteroni strain, I2gfp . Applied Environmental Microbiology , 66 : 2906 – 2913 .
  • Boopathy , R. and Peters , R. 2001 . Enhanced biotransformation of trichloroethylene under mixed electron acceptor conditions . Current Microbiology , 42 : 134 – 138 .
  • Bossert , I. D. , Häggblom , M. M. and Young , L. Y. 2003 . “ Microbial ecology of dehalogenation ” . In Dehalogenation: Microbial processes and environmental applications. , Edited by: Häggblom , M. M. and Bossert , I. D. Boston , MA : Kluwer Academic .
  • Bradley , P. M. and Chapelle , F. H. 1996 . Anaerobic mineralization of vinyl chloride in Fe(III)-reducing, aquifer sediments . Environmental Science and Technology , 30 : 2084 – 2086 .
  • Bradley , P. M. , Chapelle , F. H. and Lovley , D. R. 1998 . Humic acids as electron acceptors for anaerobic microbial oxidation of vinyl chloride and dichloroethene . Applied and Environmental Microbiology , 64 : 3102 – 3105 .
  • Brunet , R. C. and Garcia-Gil , L. J. 1996 . Sulfide-induced dissimilatory nitrate reduction to ammonia in anaerobic freshwater sediments . FEMS Microbiology Ecology , 21 : 131 – 138 .
  • Bunge , M. and Lechner , U. 2009 . Anaerobic reductive dehalogenation of polychlorinated dioxins . Applied Microbiology and Biotechnology , 84 : 429 – 444 .
  • Burkartaus , D. M.R. and Stoner , J. D. 2008 . “ Chapter 7. Nitrogen in groundwater associated with agricultural systems ” . In Nitrogen in the environment: Sources, problems, and management. , Edited by: Hatfield , J. L. and Follett , R. F. Boston , MA : USDA-ARS / UNL Faculty, Academic Press/Elsevier .
  • Cajina-Quezada , M. and Schultz , T. W. 1990 . Structure-toxicity relationships for selected weak acid respiratory uncouplers . Aquatic Toxicology , 17 : 239 – 252 .
  • Chang , C. W. and Bumpus , J. A. 1993 . Oligomers of 4-chloroaniline are intermediates formed during its biodegradation by Phanerochaete-chrysosporium . FEMS Microbiology Letters , 107 : 337 – 342 .
  • Charizopoulos , E. and Papadopoulou-Mourkidou , E. 1999 . Occurrence of pesticides in rain of the Aries River Basin, Greece . Environmental Science and Technology , 33 : 2363 – 2368 .
  • Chaudhry , M. A.S. and Beg , S. A. 1997 . Modeling of simultaneous methanogenesis and denitrification in an upflow packed-bed biofilm reactor . Journal of Chemical Technology and Biotechnology , 70 : 267 – 277 .
  • Chhabra , R. S. , Thompson , M. , Elwell , M. R. and Gerken , D. K. 1990 . Toxicity of p-chloroaniline in rats and mice . Food and Chemical Toxicology , 28 : 717 – 722 .
  • Chiu , P. C. and Reinhard , M. 1996 . Transformation of carbon tetrachloride by reduced vitamin B12 in aqueous cysteine solution . Environmental Science and Technology , 30 : 1882 – 1889 .
  • Clary , T. and Ritz , B. 2003 . Pancreatic cancer mortality and organochlorine pesticide exposure in California, 1989–1996 . American Journal of Industrial Medicine , 43 : 306 – 313 .
  • Clegg , D. J. and Moretto , A. 1995 . Quintozene , International Programme on Chemical Safety (IPCS) . Retrieved from http://pmep.cce.cornell.edu/profiles/extoxnet/metiram-propoxur/pcnb-ext.html
  • Cornell , R. and Schwertmann , U. 1996 . The iron oxides-structure, properties, reactions, occurrences, and uses , Weinheim , Germany : VCH .
  • Coschigano , P. W. , Häggblom , M. M. and Young , L. Y. 1994 . Metabolism of both 4-Chlorobenzoate and toluene under denitrifying conditions by a constructed bacterial strain . Applied Environmental Microbiology , 60 : 989 – 995 .
  • Courtney , K. D. , Copeland , M. F. and Robbins , A. 1976 . The effects of pentachloronitrobenzene, hexachlorobenzene and related compounds on fetal development . Toxicology and Applied Pharmacology , 35 : 239 – 256 .
  • D’Annibale , A. , Ricci , M. , Leonardi , V. , Quaratino , D. , Mincione , E. and Petruccioli , M. 2005 . Degradation of aromatic hydrocarbons by white-rot fungi in a historically contaminated soil . Biotechnology Bioengineering , 90 : 723 – 731 .
  • De Wolf , W. , Debrujin , J. H.M. , Selnen , W. and Hermens , J. L.M. 1992 . Influence of biotransformation on the relationship between bioconcentration factors and octanol-water partition coefficients . Environmental Science and Technology , 26 : 1197 – 1201 .
  • Dec , J. and Bollag , J. M. 1995 . Effect of various factors on dehalogenation of chlorinated phenols and anilines during oxidative coupling . Environmental Science and Technology , 29 : 657 – 663 .
  • Dejonghe , W. , Goris , J. , Dierickx , A. , De Dobbeleer , V. , Crul , K. , De Vos , P. , Verstraete , W. and Top , E. M. 2002 . Diversity of 3-chloroaniline and 3,4-dichloroaniline degrading bacteria isolated from three different soils and involvement of their plasmids in chloroaniline degradation . FEMS Microbiology Ecology , 42 : 315 – 325 .
  • Demir , G. , Barlas , H. and Bayat , C. 1998 . Degradation of some chlorinated organic materials by white rot fungus (Phanerochaete chrysosporium) in waters . Fresenius Environmental Bulletin , 7 : 927 – 933 .
  • Ding , C. , Li , Z. and Yan , J. 2011 . Isolation, identification and degradation characterization of a p-chloroaniline degrading strain . Bulletin of Environmental Contamination and Toxicology , 86 : 454 – 459 .
  • Doikos , P. 1998 . Investigation of the potential for microbial reductive dechlorination of hexachlorobenzene under iron-reducing conditions , Georgia Institute of Technology . MS Thesis
  • Dolfing , J. and Beurskens , J. E.M. 1995 . “ The microbial logic and environmental significance of reductive dehalogenation ” . In Advances in microbial ecology, Vol. 14 , Edited by: Jones , J. G. New York , NY : Plenum Press .
  • Dror , I. and Schlautman , M. A. 2003 . Role of metalloporphyrin core metals in the mediated reductive dechlorination of tetrachloroethylene . Environmental Toxicology and Chemistry , 22 : 525 – 533 .
  • Dunagan , S. C. , Dodson , R. E. , Rudel , R. A. and Brody , J. G. 2011 . Toxics use reduction in the home: lessons learned from household exposure studies . Journal of Cleaner Production , 19 : 438 – 444 .
  • Egli , C. , Stromeyer , S. , Cook , A. M. and Leisinger , T. 1990 . Transformation of tetra- and trichloromethane to CO2 by anaerobic bacteria is a non-enzymic process . FEMS Microbiology Letters , 68 : 207 – 212 .
  • Elsner , M. , Schwarzenbach , R. P. and Haderlein , S. B. 2004 . Reactivity of Fe(II)-bearing minerals toward reductive transformation of organic contaminants . Environmental Science and Technology , 38 : 799 – 807 .
  • Extension Toxicology Network . 1993 . Hazardous substances databank , Bethesda , MD : Medlars Management Section .
  • Fantroussi , S. E. , Naveau , H. and Agathos , S. N. 1998 . Anaerobic dechlorinating bacteria . Biotechnology Progress , 14 : 167 – 188 .
  • Fetzner , S. 1998 . Bacterial dehalogenation . Applied Microbiology Biotechnology , 50 : 633 – 657 .
  • Fetzner , S. and Lingens , F. 1994 . Bacterial dehalogenases: Biochemistry, genetics, and biotechnological applications . Microbiology Reviews , 58 : 641 – 685 .
  • Field , J. A. and Sierra-Alvarez , R. 2008 . Microbial degradation of chlorinated benzenes . Biodegradation , 19 : 463 – 480 .
  • Finnegan , J. K. , Larson , P. S. , Smith , R. B. , Haag , H. B. and Hennigar , G. R. 1958 . Acute and chronic toxicity studies on PCNB . Archives Internationales de Pharmacodynamie et de Therapie , 114 : 38 – 52 .
  • Food and Agriculture Organization . 1970 . Evaluations of some pesticide residues in foods: Quintozene , Rome , Italy : FAO, United Nations .
  • Food and Agriculture Organization . 1995 . Pesticide management , Rome , Italy : FAO, United Nations . Retrieved from http://www.fao.org/ag/AGP/AGPP/esticid/JMPR/Download/95_eva/quintoz.pdf
  • Gantzer , C. J. and Wackett , L. P. 1991 . Reductive dechlorination catalyzed by bacterial transition-metal coenzymes . Environmental Science and Technology , 25 : 715 – 722 .
  • Genthner , B. R.S. , Price , W. A.I. and Pritchard , P. H. 1989 . Anaerobic degradation of chloroaromatic compounds in aquatic sediments under a variety of enrichment conditions . Applied and Environmental Microbiology , 55 : 1466 – 1471 .
  • Gerritse , J. , Drzyzga , O. , Kloetstra , G. , Keijmel , M. , Wiersum , L. P. , Hutson , R. , Matthew , D. , Collins , M. D. and Gottschal , J. C. 1999 . Influence of different electron donors and acceptors on dehalorespiration of tetrachloroethene by Desulfitobacterium frappieri TCE1 . Applied and Environmental Microbiology , 65 : 5212 – 5221 .
  • Golf Course Superintendents Association of America . 2000 . Lawrence , KS : GCSAA . Snow mold treatments can produce side effects., Retrieved from http://www.gcsaa.org/gcm/2000/dec00/12snowmold.html
  • Gorontzy , T. , Küver , J. and Blotevogel , K. H. 1993 . Microbial transformation of nitroaromatic compounds under anaerobic conditions . Journal of General Microbiology , 139 : 1331 – 1336 .
  • Grube , A. , Donaldson , D. , Kiely , T. and Wu , L. 2011 . Pesticides industry sales and usage, 2006 and 2007 market estimates , Washington , DC : Biological and Economic Analysis Division, Office of Pesticide Programs Office of Chemical Safety and Pollution Prevention U.S. Environmental Protection Agency .
  • Guerrero-Barajas , C. and Field , J. A. 2005 . Enhancement of anaerobic carbon tetrachloride biotransformation in methanogenic sludge with redox active vitamins . Biodegradation , 16 : 215 – 228 .
  • Guilhermino , L. , Lopes , M. C. , Donato , A. M. , Silveira , L. , Carvalho , A. P. and Soares , A. M.V.M. 1994 . Comparative study between the toxicity of 3,4-dichloroaniline and sodium-bromide with 21-days chronic test and using lactate-dehydrogenase activity of Daphnia magna Straus . Chemosphere , 28 : 2021 – 2027 .
  • Guiraud , P. , Steiman , R. , Ait-Laydi , L. and Seigle-Murandi , F. 1999 . Degradation of phenolic and chloroaromatic compounds by Coprinus spp . Chemosphere , 38 : 2775 – 2789 .
  • Guiraud , P. , Villemain , D. , Kadri , M. , Bordjiba , O. and Steiman , R. 2003 . Biodegradation capability of Absidia fusca Linnemann toward environmental pollutants . Chemosphere , 52 : 663 – 671 .
  • Habig , W. H. , Pabst , M. J. and Jakoby , W. B. 1974 . Glutathione S-transferases: The first enzymatic step in mercapturic acid formation . Journal of Biological Chemistry , 249 : 7130 – 7139 .
  • Haderlein , S. B. , Hofstetter , T. B. and Schwarzenbach , R. P. 2000 . “ Subsurface chemistry of nitroaromatic compounds ” . In Biodegradation of nitroaromatic compounds and explosives , Edited by: Spain , J. C. , Hughes , J. B. and Knackmuss , H. J. 311 – 356 . Boca Raton , FL : Lewis .
  • Haderlein , S. B. and Schwarzenbach , R. P. 1995 . “ Environmental processes influencing the rate of abiotic reduction of nitroaromatic compounds in the subsurface ” . In Biodegradation of nitroaromatic compounds , Edited by: Spain , J. C. 199 – 225 . New York , NY : Plenum Press .
  • Häggblom , M. M. and Bossert , I. D. 2003 . “ Halogenated organic compounds - a global perspective ” . In Dehalogenation: Microbial processes and environmental applications , Edited by: Häggblom , M. M. and Bossert , I. D. Boston , MA : Kluwer Academic .
  • Häggblom , M. M. , Knight , V. K. and Kerkhof , L. J. 2000 . Anaerobic decomposition of halogenated aromatic compounds . Environmental Pollution , 107 : 199 – 207 .
  • Häggblom , M. M. , Maria , L. T. , Rivera , D. and Young , L. Y. 1993a . Influence of alternative electron acceptors on the anaerobic biodegradability of chlorinated phenols and benzoic acids . Applied and Environmental Microbiology , 59 : 1162 – 1167 .
  • Häggblom , M. M. , Rivera , M. D. and Young , L. Y. 1993b . Effects of auxiliary carbon-sources and electron-acceptors on methanogenic degradation of chlorinated phenols . Environmental Toxicology and Chemistry , 12 : 1395 – 1403 .
  • Häggblom , M. M. and Young , L. Y. 1995 . Anaerobic degradation of halogenated phenols by sulfate-reducing consortia . Applied and Environmental Microbiology , 61 : 1546 – 1550 .
  • Häggblom , M. M. and Young , L. Y. 1999 . Anaerobic degradation of 3-halobenzoates by a denitrifying bacterium . Archives of Microbiology , 171 : 230 – 236 .
  • Hakala , J. A. , Chin , Y. P. and Weber , E. J. 2007 . Influence of dissolved organic matter and Fe(II) on the abiotic reduction of pentachloronitrobenzene . Environmental Science and Technology , 41 : 7337 – 7342 .
  • Hammel , K. E. and Tardone , P. J. 1988 . The oxidative 4-dechlorination of polychlorinated phenols is catalyzed by extracellular fungal lignin peroxidase . Biochemistry , 27 : 6563 – 6568 .
  • Harkey , M. R. , Henderson , G. L. , Gershwin , M. E. , Stern , J. S. and Hackman , R. M. 2001 . Variability in commercial ginseng products: an analysis of 25 preparations . American Journal of Clinical Nutrition , 73 : 1101 – 1106 .
  • Harkness , M. R. , Bracco , A. A. , Brennan , M. J. Jr. , Deweerd , K. A. and Spivack , J. L. 1999 . Use of bioaugmentation to stimulate complete reductive dechlorination of trichloroethene in Dover soil columns . Environmental Science and Technology , 33 : 1100 – 1109 .
  • He , Q. and Sanford , R. A. 2003 . Characterization of Fe(III) reduction by chlororespiring Anaeromyxobacter dehalogenans . Applied and Environmental Microbiology , 69 : 2712 – 2718 .
  • Heijman , C. G. , Grieder , E. , Holliger , C. and Schwarzenbach , R. P. 1995 . Reduction of nitroaromatic compounds coupled to microbial iron reduction in laboratory aquifer columns . Environmental Science and Technology , 29 : 775 – 783 .
  • Hellström , A. , Nilsson , M. L. and Kylin , H. 2011 . Current-use and organochlorine pesticides and polychlorinated biphenyls in the biodegradable fraction of source separated household waste, compost, and anaerobic digestate . Bulletin of Environmental Contamination and Toxicology , 86 : 60 – 64 .
  • Hermens , J. , Leeuwangh , P. and Musch , A. 1984 . Quantitative structure activity relationships and mixture toxicity studies of chloro- and alkylanilines at an acute lethal toxicity level to the guppy (Poecilia reticulata) . Ecotoxicology and Environmental Safety , 8 : 388 – 394 .
  • Hilber , I. , Mäder , P. , Schulin , R. and Wyss , G. S. 2008 . Survey of organochlorine pesticides in horticultural soils and there grown Cucurbitaceae . Chemosphere , 73 : 954 – 961 .
  • Hinteregger , C. , Loidl , M. and Streichsbier , F. 1994 . Pseudomonas acidovorans: A bacterium capable of mineralizing 2-chloroaniline . Journal of Basic Microbiology , 34 : 77 – 85 .
  • Hoelen , T. P. and Reinhard , M. 2004 . Complete biological dehalogenation of chlorinated ethylenes in sulfate containing groundwater . Biodegradation , 15 : 395 – 403 .
  • Hoferkamp , L. , Hermanson , M. H. and Muir , D. C.G. 2010 . Current use pesticides in Arctic media; 2000–2007 . Science of the Total Environment , 408 : 2985 – 2994 .
  • Holliger , C. , Schraa , G. , Stams , A. J.M. and Zehnder , A. J.B. 1993 . A highly purified enrichment culture couples the reductive dechlorination of tetrachloroethene to growth . Applied and Environmental Microbiology , 59 : 2991 – 2997 .
  • Holliger , C. , Schraa , G. , Stupperich , E. , Stams , A. J.M. and Zehnder , A. J.B. 1992 . Evidence for the involvement of corrinoids and factor-F430 in the reductive dechlorination of 1,2-dichloroethane by Methanosarcina barkeri . Journal of Bacteriology , 174 : 4427 – 4434 .
  • Hongsawat , P. and Vangnai , A. S. 2011 . Biodegradation pathways of chloroanilines by Acinetobacter baylyi strain GFJ2 . Journal of Hazardous Materials , 186 : 1300 – 1307 .
  • Howard , P. H. 1991 . Handbook of environmental fate and eexposure data for organic chemicals. Volume III. Pesticides. , Boca Raton , FL : Lewis .
  • Hughes , J. B. , Wang , C. , Yesland , K. , Richardson , A. , Bhadra , R. , Bennett , G. and Rudolph , F. 1998 . Bamberger rearrangement during TNT metabolism by Clostridium acetobutylicum . Environmental Science and Technology , 32 : 494 – 500 .
  • International Agency for Research on Cancer . 1974 . Some organochlorine pesticides , 211 – 218 . Lyon , France : Monographs on the evaluation of the carcinogenic risk of chemicals to man, No. 5 .
  • International Register of Potentially Toxic Chemicals . 1983 . IRPTC legal file, Vol. 1 and 2. , Geneva , Switzerland : United Nations Environment Programme .
  • Ismail , Z. Z. and Pavlostathis , S. G. 2010 . Influence of sulfate reduction on the microbial dechlorination of pentachloroaniline in a mixed anaerobic culture . Biodegradation , 21 : 43 – 57 .
  • Johnson , W. J. and Golob , C. T. 2003 . Analysis of PCNB in leachate from the Coeur d’Alene resort golf course floating green , Western Canada Turfgrass Association . Final Research Report (1997–2003)
  • Jones , C. R. , Sepai , O. , Liu , Y. Y. , Yan , H. and Sabbioni , G. 2007 . Urinary metabolites and health effects in workers exposed chronically to chloronitrobenzene . Biomarkers , 12 : 1 – 20 .
  • Ju , K. S. and Parales , R. E. 2010 . Nitroaromatic compounds, from synthesis to biodegradation . Microbiology and Molecular Biology Reviews , 74 : 250 – 272 .
  • Kamrin , M. A. 1997 . Pesticide profiles: Toxicity, environmental impact, and fate , Boca Raton , FL : Lewis .
  • Katsoyiannis , A. and Samara , C. 2004 . Persistent organic pollutants (POPs) in the sewage treatment plant of Thessaloniki, northern Greece: Occurrence and removal . Water Research , 38 : 2685 – 2698 .
  • Kazumi , J. , Häggblom , M. M. and Young , L. Y. 1995a . Diversity of anaerobic microbial processes in chlorobenzoate degradation: Nitrate, iron, sulfate and carbonate as electron acceptors . Applied Microbiology and Biotechnology , 43 : 929 – 936 .
  • Kazumi , J. , Häggblom , M. M. and Young , L. Y. 1995b . Degradation of monochlorinated and nonchlorinated aromatic compounds under iron-reducing conditions . Applied and Environmental Microbiology , 61 : 4069 – 4073 .
  • Kemp , D. S. and Vellaccio , F. 1980 . Organic chemistry , New York , NY : Worth .
  • Klausen , I. , Tröber , S. P. , Haderlein , S. B. and Schwarzenbach , R. P. 1995 . Reduction of substituted nitrobenzenes by Fe(II) in aqueous mineral suspensions . Environmental Science and Technology , 29 : 2396 – 2404 .
  • Klupinski , T. P , Chin , Y. P. and Traina , S. J. 2004 . Abiotic degradation of pentachloronitrobenzene by Fe(II): Reactions on goethite and iron oxide nanoparticles . Environmental Science and Technology , 38 : 4353 – 4360 .
  • Komlos , J. and Jaffé , P. R. 2004 . Effect of iron bioavailability on dissolved hydrogen concentrations during microbial iron reduction . Biodegradation , 15 : 315 – 325 .
  • Koons , B. W. , Baeseman , J. L. and Novak , P. J. 2001 . Investigation of cell exudates active in carbon tetrachloride and chloroform degradation . Biotechnology Bioengineering , 74 : 12 – 17 .
  • Korte , F. , Freitag , D. , Geyer , H. , Klein , W. , Kraus , A. G. and Lahaniatis , E. 1978 . Ecotoxicologic profile analysis: A concept for establishing ecotoxicologic priority lists for chemicals . Chemosphere , 1 : 79 – 102 .
  • Kriegman-King , M. R. and Reinhard , M. 1992 . Transformation of carbon tetrachloride in the presence of sulfide, biotite, and vermiculite . Environmental Science and Technology , 26 : 2198 – 2206 .
  • Kriegman-King , M. R. and Reinhard , M. 1994 . Transformation of carbon tetrachloride by pyrite in aqueous solution . Environmental Science and Technology , 28 : 692 – 700 .
  • Krone , U. E. , Laufer , K. , Thauer , R. K. and Hogenkamp , H. P.C. 1989 . Coenzyme F430 as a possible catalyst for the reductive dehalogenation of chlorinated C1 hydrocarbons in methanogenic bacteria . Biochemistry , 28 : 10061 – 10065 .
  • Krone , U. E. , Thauer , R. K. , Hogenkamp , H. P.C. and Steinbach , K. 1991 . Reductive formation of carbon monoxide from CCl4 and Freon-11, Freon-12, and Freon-13 catalyzed by corrinoids . Biochemistry , 30 : 2713 – 2719 .
  • Kuhlmann , A. and Hegemann , W. 1997 . Degradation of monochloronitrobenzenes by Pseudomonas acidovorans CA50 . Acta Hydrochimica Hydrobiologica , 25 : 298 – 305 .
  • Kuhn , E. P. and Suflita , J. M. 1989 . Sequential reductive dehalogenation of chloroanilines by microorganisms from a methanogenic aquifer . Environmental Science and Technology , 23 : 848 – 852 .
  • Lamoureux , G. L. , Gouot , J. M. , Davis , D. G. and Rusness , D. G. 1981 . Pentachloronitrobenzene metabolism in peanut. 3. Metabolism in peanut cell suspension cultures . Journal of Agricultural and Food Chemistry , 29 : 996 – 1002 .
  • Lamoureux , G. L. and Rusness , D. G. 1980 . In vitro metabolism of pentachloronitrobenzene to pentachloromethylthiobenzene by onion: Characterization of glutathione S-transferase, cysteine C-S lyase, and S-adenosylmethionine methyl transferase activities . Pesticide Biochemistry and Physiology , 14 : 50 – 61 .
  • Larson , S. J. , Capel , P. D. and Majewski , M. S. 1997 . Pesticides in surface waters: Distribution, trends, and governing factors , Chelsea , MI : Ann Arbor Press .
  • Larson , S. L. , Jones , R. P. , Escalon , L. and Parker , D. 1999 . Classification of explosives transformation products in plant tissue . Environmental Toxicology and Chemistry , 18 : 1270 – 1276 .
  • Lehotay , S. J. and Ibrahim , M. A. 1995 . Supercritical fluid extraction and gas chromatography/ion trap mass spectrometry of pentachloronitrobenzene pesticides in vegetables . Journal of AOAC International , 78 : 445 – 452 .
  • Lenke , H. , Achtnich , C. and Knackmus , H. J. 2000 . “ Perspectives of bioelimination of polynitroaromatic compounds ” . In Biodegradation of nitroaromatic compounds and explosives , Edited by: Spain , J. C. , Hughes , J. B. and Knackmuss , H. J. 91 – 126 . Boca Raton , FL : Lewis .
  • Li , R. , Zheng , J. W. , Ni , B. , Chen , K. , Yang , X. J. , Li , S. P. and Jiang , J. D. 2011 . Biodegradation of Pentachloronitrobenzene by Labrys portucalensis pcnb-21 isolated from polluted soil . Pedosphere , 21 : 31 – 36 .
  • Li , T. , Deng , X. P. , Wang , J. J. , Zhao , H. , Wang , L. and Qian , K. 2012 . Biodegradation of 3,4-dichloroaniline by a novel Myroides odoratimimus strain LWD09 with moderate salinity tolerance . Water Air & Soil Pollution , 223 : 3271 – 3279 .
  • Lièvremont , D. , SeigleMurandi , F. and BenoitGuyod , J. L. 1996a . Effects of culture parameters on pentachloronitrobenzene removal by Sporothrix cyanescens . Chemosphere , 32 : 361 – 375 .
  • Lièvremont , D. , SeigleMurandi , F. , BenoitGuyod , J. L. and Steiman , R. 1996b . Biotransformation and biosorption of pentachloronitrobenzene by fungal mycelia . Mycological Research , 100 : 948 – 954 .
  • Lin , H. , Zhu , L. , Xu , X. , Zang , L. and Kong , Y. 2011 . Reductive transformation and dechlorination of chloronitrobenzenes in UASB reactor enhanced with zero-valent iron addition . Journal of Chemical Technology and Biotechnology , 86 : 290 – 298 .
  • Lo , H. H. , Brown , P. I. and Rankin , G. O. 1990 . Acute nephrotoxicity induced by isomeric dichloroanilines in Fischer 344 rats . Toxicology , 63 : 215 – 31 .
  • Loidl , M. , Hinteregger , C. , Ditzelmuller , G. , Ferschl , A. and Streichsbier , F. 1990 . Degradation of aniline and monochlorinated anilines by soil-borne Pseudomonas acidovorans strains . Archives of Microbiology , 155 : 56 – 61 .
  • Lopes , T. J. and Furlong , E. T. 2001 . Occurrence and potential adverse effects of semivolatile organic compounds in streambed sediment, United States, 1992–1995 . Environmental Toxicology and Chemistry , 20 : 727 – 737 .
  • Lovley , D. R. 1991 . Dissimilatory Fe(III) and Mn(IV) reduction . Microbiology Reviews , 55 : 259 – 287 .
  • Lovley , D. R. 1993 . Dissimilatory metal reduction . Annual Review of Microbiology , 47 : 263 – 290 .
  • Lovley , D. R. and Phillips , E. J.P. 1987 . Competitive mechanisms for inhibition of sulfate reduction and methane production in the zone of ferric iron reduction in sediments . Applied and Environmental Microbiology , 53 : 2636 – 2641 .
  • Lovley , D. R. , Coates , J. D. , Blunt-Harris , E. L. , Phillips , E. J.P. and Woodward , J. C. 1996 . Humic substances as electron acceptors for microbial respiration . Nature , 382 : 445 – 448 .
  • Lovley , D. R. , Fraga , J. L. , Blunt-Harris , E. L. , Hayes , L. A. , Phillips , E. J.P. and Coates , J. D. 1998 . Humic substances as a mediator for microbially catalyzed metal reduction . Acta Hydrochimica Hydrobiologica , 26 : 152 – 157 .
  • Lovley , D. R. and Woodward , J. C. 1996 . Mechanisms of chelator stimulation of microbial Fe(III)-oxide reduction . Chemical Geology , 132 : 19 – 24 .
  • Lunney , A. I. , Zeeb , B. A. and Reimer , K. J. 2004 . Uptake of weathered DDT in vascular plants: Potential for phytoremediation . Environmental Science and Technology , 38 : 6147 – 6154 .
  • Mackay , D. , Paterson , S. and Shiu , W. Y. 1992 . Generic models for evaluating the regional fate of chemical . Chemosphere , 24 : 695 – 718 .
  • Madigan , M. T. and Martinko , J. M. 2006 . Brock Biology of Microorganisms , (11th ed.) , Upper Saddle River , NJ : Prentice Hall .
  • Maitheepala , R. A. and Doong , R. A. 2004 . Reductive dechlorination of carbon tetrachloride in aqueous solutions containing ferrous and copper ions . Environmental Science and Technology , 38 : 6676 – 6684 .
  • Maltais-Landry , G. , Maranger , R. , Brisson , J. and Chazarenc , F. 2009 . Nitrogen transformations and retention in planted and artificially aerated constructed wetlands . Water Research , 43 : 535 – 545 .
  • Marrs , T. C. and Ballantyne , B. 2004 . Pesticide toxicology and international regulation , Hoboken , NJ : Wiley .
  • Matheson , L. J. and Tratnyek , P. G. 1994 . Reductive dehalogenation of chlorinated methanes by iron metal . Environmental Science and Technology , 28 : 2045 – 2053 .
  • McBeath , J. H. 2003 . Biological management of snow mold . Golf Course Management , 71 : 124 – 126 .
  • McGuinness , M. C. , Mazurkiewicz , V. , Brennan , E. and Dowling , D. N. 2007 . Dechlorination of pesticides by a specific bacterial glutathione S-transferase, BphKLB400: Potential for bioremediation . Engineering in Life Sciences , 7 : 611 – 615 .
  • Metcalfe , T. L. , Dillon , P. J. and Metcalfe , C. D. 2008 . Effects of formulations of the fungicide, pentachloronitrobenzene on early life stage development of the Japanese medaka (Oryzias latipes) . Chemosphere , 71 : 1957 – 1962 .
  • Michielsen , C. , Boeren , S. , Rietjens , I. , van Mill , F. , Vos , J. and Bloksma , N. 2000 . The mercapturic acid biotransformation pathway of hexachlorobenzene is not involved in the induction of splenomegaly, or skin and lung lesions in the Brown Norway rat . Arch Toxicology , 74 : 609 – 617 .
  • Middeldorp , P. J.M. , Luijten , M. L.G.C. , van de Pas , B. A. , van Eekert , M. H.A. , Kengen , S. W.M. , Schraa , G. and Stams , A. J.M. 1999 . Anaerobic microbial reductive dehalogenation of chlorinated ethenes . Bioremediation Journal , 3 : 151 – 169 .
  • Milligan , P. W. and Häggblom , M. M. 1999 . Biodegradation and biotransformation of dicamba under different reducing conditions . Environmental Science and Technology , 33 : 1224 – 1229 .
  • Misiti , T. M. , Hajaya , M. G. and Pavlostathis , S. G. 2011 . Nitrate reduction in a simulated free-water surface wetland system . Water Research , 45 : 5587 – 5598 .
  • Monteiro , M. , Quintaneiro , C. , Pastorinho , M. , Pereira , M. L. , Morgado , F. , Guilhermino , L. and Soares , A. M.V.M. 2006 . Acute effects of 3,4-dichloroaniline on biomarkers and spleen histology of the common goby Pomatoschistus microps . Chemosphere , 62 : 1333 – 1339 .
  • Mora Torres , R. M. , Grosset , C. , Steiman , R. and Alary , J. 1996 . Liquid chromatography study of degradation and metabolism of pentachloronitrobenzene by four soil micromycetes . Chemosphere , 33 : 683 – 692 .
  • Morgan , P. , Lewis , S. T. and Watkinson , R. J. 1991 . Comparison of abilities of white-rot fungi to mineralize selected xenobiotic compounds . Applied Microbiology and Biotechnology , 34 : 693 – 696 .
  • Murthy , N. B.K. and Kaufman , D. D. 1978 . Degradation of pentachloronitrobenzene (PCNB) in anaerobic soils . Journal of Agricultural and Food Chemistry , 26 : 1151 – 1156 .
  • Nelson , D. K. , Hozalski , R. M. , Clapp , L. W. , Semmens , M. J. and Novak , P. J. 2002 . Effect of nitrate and sulfate on dechlorination by a mixed hydrogen-fed culture . Bioremediation Journal , 6 : 225 – 236 .
  • O’Malley , M. A. 1997 . Skin reactions to pesticides . Occupational Medicine , 12 : 327 – 345 .
  • Olaniran , A. O. and Igbinosa , E. O. 2011 . Chlorophenols and other related derivatives of environmental concern: Properties, distribution and microbial degradation processes . Chemosphere , 83 : 1297 – 1306 .
  • Okutman Tas , D. and Pavlostathis , S. G. 2005 . Microbial reductive transformation of pentachloronitrobenzene under methanogenic conditions . Environmental Science and Technology , 39 : 264 – 8272 .
  • Okutman Tas , D. and Pavlostathis , S. G. 2007 . The influence of iron reduction on the reductive biotransformation of pentachloronitrobenzene . European Journal of Soil Biology , 43 : 264 – 275 .
  • Okutman Tas , D. and Pavlostathis , S. G. 2008 . Effect of nitrate reduction on the microbial reductive transformation of pentachloronitrobenzene . Environmental Science and Technology , 42 : 3234 – 3240 .
  • Okutman Tas , D. and Pavlostathis , S. G. 2010 . Microbial transformation of pentachloronitrobenzene under nitrate reducing conditions . Biodegradation , 21 : 691 – 702 .
  • Okutman Tas , D. , Prytula , M. T. , Mulholland , J. A. and Pavlostathis , S. G. 2010 . Theoretical investigation of the sequential reductive dechlorination pathways of chlorobenzenes and chloroanilines . Biotechnology Bioengineering , 105 : 574 – 587 .
  • Okutman Tas , D. , Thomson , I. N. , Löffler , F. E. and Pavlostathis , S. G. 2006 . Kinetics of the microbial reductive dechlorination of pentachloroaniline . Environmental Science and Technology , 40 : 4467 – 4472 .
  • Pant , P. and Pant , S. 2010 . A review: Advances in microbial remediation of trichloroethylene (TCE) . Journal of Environmental Sciences , 22 : 116 – 126 .
  • Park , H. S. , Lim , S. J. , Chang , Y. K. , Livingston , A. G. and Kim , H. S. 1999 . Degradation of chloronitrobenzenes by a coculture of Pseudomonas putida and a Rhodococcus sp . Applied and Environmental Microbiology , 65 : 1083 – 1091 .
  • Park , J. W. , Krumins , V. , Kjellerup , B. V. , Fennell , D. E. , Rodenburg , L. A. , Sowers , K. R. , Kerkhof , L. J. and Häggblom , M. M. 2011 . The effect of co-substrate activation on indigenous and bioaugmented PCB dechlorinating bacterial communities in sediment microcosms . Applied Microbiology and Biotechnology , 89 : 2005 – 2017 .
  • Pavlostathis , S. G. and Zhuang , P. 1991 . Transformation of trichloroethylene by sulfate-reducing cultures enriched from a contaminated subsurface soil . Applied Microbiology and Biotechnology , 36 : 416 – 420 .
  • Petersen , J. N. , Skeen , R. S. , Amos , K. M. and Hooker , B. S. 1994 . Biological destruction of CCl4 .1. Experimental-design and data . Biotechnology Bioengineering , 43 : 521 – 528 .
  • Phillips , S. D. 2001 . “ Fungicides and biocides ” . In Clinical environmental health and toxic exposures , 2nd ed. , Edited by: Sullivan , J. B. and Krieger , G. R. 1109 – 1125 . Philadelphia , PA : Lippincott Williams and Wilkins .
  • Picardal , F. W. , Arnold , R. G. , Couch , H. , Little , A. M. and Smith , M. E. 1993 . Involvement of cytochromes in the anaerobic biotransformation of tetrachloromethane by Shewanella putrefaciens 200 . Applied and Environmental Microbiology , 59 : 3763 – 3770 .
  • Picardal , F. W. , Arnold , R. G. and Huey , B. B. 1995 . Effects of electron donor and acceptor conditions on reductive dehalogenation of tetrachloromethane by Shewanella putrefaciens 200 . Applied and Environmental Microbiology , 61 : 8 – 12 .
  • Pieper , D. H. 2005 . Aerobic degradation of polychlorinated biphenyls . Applied Microbiology and Biotechnology , 67 : 170 – 191 .
  • Pimentel , D. and Levitan , L. 1986 . Pesticides: amounts applied and amounts reaching pests . Bioscience , 36 : 86 – 91 .
  • Prasad , R. 1999 . Sustainable agriculture and fertilizer use . Current Science , 77 : 38 – 43 .
  • Qi , X. 2010 . Development of a matrix solid-phase dispersion-sonication extraction method for the determination of fungicides residues in ginseng extract . Food Chemistry , 121 : 758 – 762 .
  • Radianingtyas , H. , Robinson , G. K. and Bull , A. T. 2003 . Bacterial community structure and physiological state in a biofilm reactor degrading 4-chloroaniline . Applied Microbiology and Biotechnology , 62 : 423 – 429 .
  • Ramos , J. L. , González-Pérez , M. M. , Caballero , A. and van Dillewijn , P. 2005 . Bioremediation of polynitrated aromatic compounds: plants and microbes put up a fight . Current Opinion in Biotechnology , 16 : 275 – 281 .
  • Rea , P. A. , Li , Z. S. , Lu , Y. P. , Drozdowicz , Y. M and Martinoia , E. 1998 . From vacuolar GS-X pumps to multispecific ABC transporters . Annual Review of Plant Physiology and Plant Molecular Biology , 49 : 727 – 760 .
  • Reber , H. , Helm , V. and Karanth , N. G.K. 1979 . Comparative studies on the metabolism of aniline and chloroanilines by Pseudomonas multivorans strain An 1 . Applied Microbiology and Biotechnology , 7 : 181 – 189 .
  • Renner , G. 1980 . Metabolic studies on pentachloronitrobenzene (PCNB) in rats . Xenobiotica , 10 : 537 – 50 .
  • Renner , G. and Nguyen , P. T. 1984 . Mechanisms of the reductive denitration of pentachloronitrobenzene (PCNB) and the reductive dechlorination of hexachlorobenzene (HCB) . Xenobiotica , 14 : 705 – 10 .
  • Reuther , C. , Crommentuijn , T. and van de Plassche , E. J. 1998 . Maximum permissible concentrations and negligible concentrations for aniline derivatives (report no. 601501003) , Bilthoven , the Netherlands : National Institute of Public Health and the Environment .
  • Ribo , J. M. and Kaiser , K. L.E. 1984 . “ Toxicities of chloroanilines to Photobacterium phosphoreum and their correlations with effects on other organisms and structural parameters ” . In QSAR in environmental toxicology , Edited by: Kaiser , K. L.E. 319 – 336 . Dordrecht , the Netherlands : D. Reidel .
  • Roldan , M. D. , Perez-Reinado , E. , Castillo , F. and Moreno-Vivian , C. 2008 . Reduction of polynitroaromatic compounds: the bacterial nitroreductases . FEMS Microbiology Reviews , 32 : 474 – 500 .
  • Sabbioni , G. , Jones , C. R. , Sepai , O. , Liu , Y. Y. and Yan , H. 2007 . Urinary metabolites and health effects in workers exposed chronically to chloronitrobenzene . Biomarkers , 12 : 1 – 20 .
  • Santos , T. C.R. , Rocha , J. C. and Barcelo , D. 2000 . Determination of rice herbicides, their transformation products and clofibric acid using on-line solid-phase extraction followed by liquid chromatography with diode array and atmospheric pressure chemical ionization mass spectrometric detection . Journal of Chromatography A , 879 : 3 – 12 .
  • Scheutz , C. , Durant , N. D. , Hansen , M. H. and Bjerg , P. L. 2011 . Natural and enhanced anaerobic degradation of 1,1,1-trichloroethane and its degradation products in the subsurface – A critical review . Water Research , 45 : 2701 – 2723 .
  • Scott , D. T. , McKnight , D. M. , Blunt-Harris , E. L. , Kolesar , S. E. and Lovley , D. R. 1999 . Quinone moieties act as electron acceptors in the reduction of humic substances by humics-reducing microorganisms . Environmental Science and Technology , 32 : 2984 – 2989 .
  • Searle , C. E. 1966 . Tumor inhibitory activity of some chloromononitrobenzenes and other compounds . Cancer Research , 26 : 12 – 17 .
  • Seiglemurandi , F. , Steiman , R. , Benoitguyod , J. L. , Muntalif , B. and Sage , L. 1992 . Relationship between the biodegradative capability of soil micromycetes for pentachlorophenol and for pentachloronitrobenzene . Science of the Total Environment , 123 : 291 – 298 .
  • Shen , H. and Sewell , G. W. 2005 . Reductive biotransformation of tetrachloroethene to ethene during anaerobic degradation of toluene: Experimental evidence and kinetics . Environmental Science and Technology , 39 : 9286 – 9294 .
  • Sherwood , J. L. , Petersen , J. N. , Skeen , R. S. and Valentine , N. B. 1996 . Effects of nitrate and acetate availability on chloroform production during carbon tetrachloride destruction . Biotechnology and Bioengineering , 51 : 551 – 557 .
  • Shin , S. K. , Kim , J. E. , Kwon , G. S. , Kwon , J. W. , Oh , E. T. , So , J. S. and Koh , S. C. 2003 . Isolation and identification of a pentachloronitrobenzene (PCNB) degrading bacterium Alcaligenes xylosoxidans PCNB-2 from agricultural soil . Journal of Microbiology , 41 : 165 – 168 .
  • Sinha , A. P. , Kishan , S. and Mukhopadhyay , A. N. 1988 . Soil Fungicides (Vol. 1) , Boca Raton , FL : CRC Press .
  • Stahl , J. D. and Aust , S. D. 1995 . “ Biodegradation of 2,4,5-trinitrotoluene by white rot fungus Phanerochaete chrysosporium ” . In Biodegradation of nitroaromatic compounds , Edited by: Spain , J. C. 199 – 225 . New York , NY : Plenum Press .
  • Steiman , R. , Benoitguyod , J. L. , Seiglemurandi , F. and Muntalif , B. 1992 . Degradation of pentachloronitrobenzene by micromycetes isolated from soil . Science of the Total Environment , 123 : 299 – 308 .
  • Stroymeyer , S. A. , Stumpf , K. , Cook , A. M. and Leisinger , T. 1992 . Anaerobic degradation of tetrachloromethane by Acetobacterium woodii: Separation of dechlorinative activities in cell extracts and roles of vitamin B12 and other factors . Biodegradation , 3 : 113 – 123 .
  • Surampalli , R. Y. , Lai , K. C.K. , Banerji , S. K. , Smith , J. , Tyagi , R. D. and Lohani , B. N. 2008 . Long-term land application of biosolids: A case study . Water Science and Technology , 57 ( 3 ) : 345 – 352 .
  • Surovtseva , E. G. , Ivoilov , V. S. , Vasileva , G. K. and Belyaev , S. S. 1996 . Degradation of chlorinated anilines by certain representatives of the genera Aquaspirillum and Paracoccus . Microbiology , : 553 – 559 .
  • Susarla , S. , Masunaga , S. and Yonezawa , Y. 1996 . Transformations of chloronitrobenzenes in anaerobic sediment . Chemosphere , 32 : 967 – 977 .
  • Susarla , S. , Masunaga , S. and Yonezawa , Y. 1997a . Redox potential as a parameter to predict the reductive dechlorination pathway of chloroanilines in anaerobic environments . Microbial Ecology , 33 : 252 – 256 .
  • Susarla , S. , Yonezawa , Y. and Masunaga , S. 1997b . Reductive dehalogenation of chloroanilines in anaerobic estuarine sediment . Environmental Technology , 18 : 75 – 83 .
  • Sutton , C. , Ravenscroft , J. E. , Steeger , T. M. , Jones , R. D. and Costello , K. 2004 . Environmental fate and ecological risk assessment for the re-registration of pentachloronitrobenzene (Report no. 056502) , Washington , DC : U.S. EPA, Office of Pesticide Programs Environmental Fate and Effects Division Environmental Risk Branch IV .
  • Symons , Z. C. and Bruce , N. C. 2006 . Bacterial pathways for degradation of nitroaromatics . Natural Product Reports , 23 : 845 – 850 .
  • Syracuse Research Corporation . 2003 . PhysProp Database, Environmental Science Center . Retrieved from http://www.syrres.com/what-we-do/databaseforms.aspx?id = 386
  • Takagi , K. , Iwasaki , A. , Kamei , I. , Satsuma , K. , Yoshioka , Y. and Harada , N. 2009 . Aerobic mineralization of hexachlorobenzene by newly isolated pentachloronitrobenzene-degrading Nocardioides sp. Strain PD653 . Applied and Environmental Microbiology , : 4452 – 4458 .
  • Tamura , K. , Hasegawa , Y. , Kudo , T. and Yamaguchi , I. 1995 . Isolation and characterization of PCNB degrading bacterium, Pseudomonas aeruginosa strain-I-41 . Journal of Pesticide Science , 20 : 145 – 151 .
  • Thamdrup , B. 2000 . Bacterial manganese and iron reduction in aquatic sediments . Advances in Microbial Ecology , 16 : 41 – 84 .
  • Thiele , J. , Muller , R. and Lingens , F. 1988 . Enzymatic dehalogenation of chlorinated nitroaromatic compounds . Applied and Environmental Microbiology , 54 : 1199 – 1202 .
  • Tiedje , J. M. 1988 . “ Ecology of denitrification and dissimilatory nitrate reduction to ammonium ” . In Biology of anaerobic microorganisms , Edited by: Zehnder , A. J.B. 179 – 244 . New York , NY : Wiley .
  • Travkin , V. M. and Golovleva , L. A. 2003 . The degradation of 3,4-dichloroaniline by Pseudomonas fluorescens strain 26-K . Microbiology , 72 : 240 – 243 .
  • Travkin , V. , Baskunov , B. P. , Golovlev , E. L. , Boersma , M. G. , Boeren , S. , Vervoort , J. , van Berkel , W. J.H. , Rietjens , I. M.C.M. and Golovleva , L. A. 2002 . Reductive deamination as a new step in the anaerobic microbial degradation of halogenated anilines . FEMS Microbiology Letters , 209 : 307 – 312 .
  • Turfgrass Diagnostic Laboratory . 2011 . University of Wisconsin-Madison . The Latest on Pentachloronitrobenzene (PCNB)., Retrieved from http://www.tdl.wisc.edu/PCNB.php
  • U.S. Environmental Protection Agency . 2003a . Waste minimization priority chemicals and chemical fact sheets , Washington , DC : Office of Solid Waste and Emergency Response . Retrieved from http://www.epa.gov/osw/hazard/wastemin/priority.htm
  • U.S. Environmental Protection Agency . 2003b . PBT Profiler (Ver 1.301) , Washington , DC : Office of Pollution Prevention and Toxics .
  • U.S. Environmental Protection Agency . 2006 . Reregistration eligibility decision for pentachloronitrobenzene , Washington , DC : Office of Pesticide Programs .
  • U.S. Environmental Protection Agency . 2011 . Waste minimization priority chemicals and chemical fact sheets , Washington , DC : U.S. EPA . Retrieved from http://www.epa.gov/osw/hazard/wastemin/priority.htm
  • U.S. National Library of Medicine . 1995 . Hazardous substances databank , Bethesda , MD : USNLM .
  • U.S. National Library of Medicine . 2002 . Haz-Map fact sheet , Bethesda , MD : USNLM .
  • van de Plassche , E. , Schwegler , A. , Rasenberg , M. and Schoulten , G. 2001 . Pentachlorobenzene. Nomination Dossier for inclusion in the Stockholm convention on persistent organic pollutants (POPs) of UNECE .
  • van Eekert , M. H.A. , Schroder , T. J. , Stams , A. J.M. , Schraa , G. and Field , J. A. 1998 . Degradation and fate of carbon tetrachloride in unadapted methanogenic granular sludge . Applied and Environmental Microbiology , 64 : 2350 – 2356 .
  • van Eerd , L. L. , Hoagland , R. E. and Hall , J. C. 2003 . Pesticide metabolism in plants and microorganisms . Weed Science , 51 : 472 – 495 .
  • Vanderloop , S. L. , Suidan , M. T. , Moteleb , M. A. and Maloney , S. W. 1999 . Biotransformation of 2,4-dinitrotoluene under different electron acceptor conditions . Water Research , 33 : 1287 – 1295 .
  • Vangnai , A. S. and Petchkroh , W. 2007 . Biodegradation of 4-chloroaniline by bacteria enriched from soil . FEMS Microbiology Letters , 268 : 209 – 216 .
  • Verrin , S. M. , Begg , S. J. and Ross , P. S. 2004 . Pesticide use in British Columbia and the Yukon: an assessment of types, applications and risks to aquatic biota Canadian Technical Report of Fisheries and Aquatic Sciences No. 2517
  • Vorbeck , C. , Lenke , H. , Fischer , P. and Knackmuss , H. J. 1994 . Identification of a hydride-Meisenheimer complex as a metabolite of 2,4,6-trinitrotoluene by a Mycobacterium strain . Journal of Bacteriology , 176 : 932 – 934 .
  • Vorbeck , C. , Lenke , H. , Fischer , P. , Spain , J. C. and Knackmuss , H. J. 1998 . Initial reductive reactions in aerobic microbial metabolism of 2,4,6-trinitrotoluene . Applied and Environmental Microbiology , 64 : 246 – 252 .
  • Wang , S. , Poon , K. and Cai , Z. 2012 . Biodegradation and removal of 3,4-dichloroaniline by Chlorella pyrenoidosa based on liquid chromatography-electrospray ionization-mass spectrometry . Environmental Science and Pollution Research , DOI 10.1007/s11356-012–0995-9. In press
  • Wang , X. , Harada , S. , Watanabe , M. , Koshikawa , H. and Geyer , H. J. 1996 . Modeling the bioconcentration of hydrophobic organic chemicals in aquatic organisms . Chemosphere , 32 : 1783 – 1793 .
  • Wang , X. P. , Yao , T. D. , Cong , Z. Y. , Yan , X. L. , Kang , S. C. and Zhang , Y. 2007 . Distribution of persistent organic pollutants in soil and grasses around Mt. Qomolangma . China Archives of Environmental Contamination and Toxicology , 52 : 153 – 162 .
  • Ware , G. W. 1982 . Pesticides: Theory and application , San Francisco , CA : W. H. Freeman .
  • Weldon , M. B. and Hornbuckle , K. C. 2006 . Concentrated animal feeding operations, row crops and their relationship to nitrate in eastern Iowa Rivers . Environmental Science and Technology , 40 : 3168 – 3173 .
  • Wilson , G. S. 1978 . “ Determination of oxidation-reduction potentials ” . In Methods in enzymology (Vol. LIV , Edited by: Fleischer , S. and Packer , L. 396 – 410 . New York , NY : Academic Press .
  • Wilce , M. C.J. and Parker , M. W. 1994 . Structure and function of glutathione S-transferases . Biochimica et Biophysica Acta , : 1205 – 18 . 1
  • Wu , H. , Wei , C. , Wang , Y. , He , Q. and Liang , S. 2009 . Degradation of o-chloronitrobenzene as the sole carbon and nitrogen sources by Pseudomonas putida OCNB-1 . Journal of Environmental Sciences-China , 21 : 89 – 95 .
  • Wu , J. F. , Jiang , C. Y. , Wang , B. J. , Ma , Y. F. , Liu , Z. P. and Liu , S. J. 2006 . Novel partial reductive pathway for 4-chloronitrobenzene and nitrobenzene degradation in Comamonas sp. Strain CNB-1 . Applied and Environmental Microbiology , 72 : 1759 – 1765 .
  • Wu , J. F. , Shen , X. H. , Zhou , Y. G. and Liu , S. J. 2004 . Characterization of p-chloronitrobenzene degrading Comamonas CNB-1 and its degradation of p-chloronitrobenzene . Acta Microbiologica Sinica , 44 : 8 – 12 .
  • Wu , Z. , Liu , Y. , Zhang , J. , Shen , W. , Lu , W. , Hong , Q. and Li , S. 2011 . Isolation of a heavy metal-resistant 4-Chloronitrobenzene degrader Cupriavidus sp. D4 and cloning of its cnb genes . International Biodeterioration and Biodegradation , 65 : 871 – 876 .
  • Xin-hua , X. , Hong-yi , Z. , Mi , Z. and Da-hui , W. 2005 . Enhanced catalytic degradation process of o-nitrochlorobenzene by palladium-catalyzed Fe0 particles . Journal of Environmental Sciences , 17 : 849 – 852 .
  • Xu , X. , Yang , H. , Li , Q. , Yang , B. , Wang , X. and Lee , F. S.C. 2007 . Residues of organochlorine pesticides in near shore waters of LaiZhou Bay and JiaoZhou Bay, Shandong Peninsula, China . Chemosphere , 68 : 126 – 139 .
  • Ye , J. , Singh , A. and Ward , O. P. 2004 . Biodegradation of nitroaromatics and other nitrogen-containing xenobiotics . World Journal of Microbiology and Biotechnology , 20 : 117 – 135 .
  • Yu , Z. and Smith , G. B. 2000 . Dechlorination of polychlorinated methanes by a sequential methanogenic-denitrifying bioreactor system . Applied Microbiology and Biotechnology , 53 : 484 – 489 .
  • Zhang , L. , He , D. , Chen , J. and Liu , Y. 2010 . Biodegradation of 2-chloroaniline, 3-chloroaniline, and 4-chloroaniline by a novel strain Delftia tsuruhatensis H1 . Journal of Hazardous Materials , 179 : 875 – 882 .
  • Zhang , W. , Huang , J. , Xu , F. , Deng , S. , Zhu , W. and Yu , G. 2011 . Mechanochemical destruction of pentachloronitrobenzene with reactive iron powder . Journal of Hazardous Materials , 198 : 275 – 281 .
  • Zhen , D. , Liu , H. , Wang , S. J. , Zhang , J. J. , Zhao , F. and Zhou , N. Y. 2006 . Plasmid-mediated degradation of 4-chloronitrobenzene by newly isolated Pseudomonas putida strain ZWL73 . Applied Microbiology and Biotechnology , 72 : 797 – 803 .
  • Zou , E. , Hatakeyama , M. and Matsumura , F. 2002 . Foci formation of MCF7 cells as an in vitro screening method for estrogenic chemicals . Environmental Toxicology and Pharmacology , 11 : 71 – 77 .

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