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Review

Phytoremediation of organochlorine pesticides: Concept, method, and recent developments

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References

  • Abaga NOZ, Dousset S, Munier-Lamy C, Billet D. 2014. Effectiveness of Vetiver grass (Vetiveria Zizanioides L. Nash) for phytoremediation of endosulfan in two cotton soils from Burkina Faso. Int J Phytorem 16(1):95–108.
  • Abhilash PC, Dubey RK, Tripathi V, Srivastava P, Verma JP, Singh HB. 2013a. Remediation and management of POPs-contaminated soils in a warming climate: challenges and perspectives. Environ Sci Pollut Res 20:5879–5885.
  • Abhilash PC, Jamil S, Singh N. 2009. Transgenic plants for enhanced biodegradation and phytoremediation of organic xenobiotics. Biotechnol Adv 27:474–488.
  • Abhilash PC, Singh B, Srivastava P, Schaeffer A, Singh N. 2013b. Remediation of lindane by Jatropha curcas L: Utilization of multipurpose species for rhizoremediation. Biomass Bioenergy 51:189–193.
  • Abhilash PC, Singh N. 2009. Seasonal variation of HCH isomers in open soil and plant-rhizospheric soil system of a contaminated environment. Environ Sci Pollut Res 16:727–740.
  • Abhilash PC, Singh N. 2010a. Effect of growing Sesamum Indicum L. on enhanced dissipation of lindane (1, 2, 3, 4, 5, 6-Hexachlorocyclohexane) from soil. Int J Phytorem 12(5):440–453.
  • Abhilash PC, Singh N. 2010b. Withania somnifera Dunal-mediated dissipation of lindane from simulated soil: implications for rhizoremediation of contaminated soil. J Soils Sediments 10:272–282.
  • Abhilash PC, Srivastava S, Srivastava P, Singh B, Jafri A, Singh N. 2011. Influence of rhizospheric microbial inoculation and tolerant plant species on the rhizoremediation of lindane. Environ Exp Bot 74:127–130.
  • Afzal M, Khan QM, Sessitsch A. 2014. Endophytic bacteria: prospects and applications for the phytoremediation of organic pollutants. Chemosphere 117:232–242.
  • Agbeve SK, Carboo D, Duker-Eshun G, Afful S, Ofosu P. 2013. Burden of organochlorine pesticide residues in the root of Cryptolepis sanguinolenta, antimalarial plant used in traditional medicine in ghana. Eur Chem Bull 2(11):936–941.
  • Agnihotri NE, Gajbhiye VT, Kumar M, Mohapatra SR. 1994. Organochlorine insecticide residues in ganga river water near farrukhabad, India. Environ Monit Assess 30:105–112.
  • Aiyesanmi AF, Idowu GA. 2012. Organochlorine pesticides residues in soil of cocoa farms in Ondo State Central District, Nigeria. Environ Nat Resour Res 2(2):65–73.
  • Aken BV, Correa AP, Schnoor JL. 2010. Phytoremediation of polychlorinated biphenyls: new trends and promises. Environ Sci Technol 44(8):2767–2776.
  • Alkorta I, Garbisu C. 2001. Phytoremediation of organic contaminants in soils. Bioresour Technol 79:273–276.
  • Alvarez A, Benimeli CS, Saez JM, Fuentes MS, Cuozzo SA, Polti MA, Amoroso MJ. 2012. Bacterial bio-resources for remediation of hexachlorocyclohexane. Int J Mol Sci 13:15086–15106.
  • Álvarez A, Benimeli CS, Saez JM, Giuliano A, Amoroso MJ. 2015. Lindane removal using Streptomyces strains and maize plants: a biological system for reducing pesticides in soils. Plant Soil 395(1):401–413.
  • Andrew EA. 2007. Phytoremediation: an environmentally sound technology for pollution prevention, control and remediation in developing countries. Educ Res Rev 2(7):151–156.
  • Arslan M, Imran A, Khan Q M, Afzal M. 2015. Plant–bacteria partnerships for the remediation of persistent organic pollutants. Environ Sci Pollut Res. doi: 10.1007/s11356-015-4935-3
  • ATSDR. 1996. Toxicological profile for Endrin. Atlanta (GA): U.S. Department of Health and Human Services, Public Health Service.
  • ATSDR. 2002a. Toxicological profile for DDT, DDE, DDD. Atlanta (GA): U.S. Department of Health and Human Services, Public Health Service.
  • ATSDR. 2002b. Toxicological profile for aldrin/dieldrin. Atlanta (GA): U.S. Department of Health and Human Services, Public Health Service.
  • ATSDR. 2005. Toxicological profile for alpha-, beta-, gamma-, and delta hexachlorocyclohexane. Atlanta (GA): U.S. Department of Public Health and Human Services, Public Health Service.
  • ATSDR. 2007. Toxicological profile for heptachlor and heptachlor epoxide. Atlanta (GA): U.S. Department of Health and Human Services, Public Health Service.
  • ATSDR. 2013. Toxicological profile for endosulfan. Atlanta (GA): U.S. Department of Health and Human Services, Public Health Service.
  • ATSDR. 2014. Toxicological profile for toxaphene. Atlanta (GA): U.S. Department of Health and Human Services, Public Health Service.
  • Barriada-Pereira M, Concha-Graña E, González-Castro MJ, Muniategui-Lorenzo S, López-Mahía P, Prada-Rodríguez D, Fernández-Fernández E. 2003. Microwave-assisted extraction versus Soxhlet extraction in the analysis of 21 organochlorine pesticides in plants. J Chromatogr A 1008:115–122.
  • Becerra-Castro C, Kidd PS, Prieto-Fernández A, Weyens N, Acea MJ, Vangronsveld J. 2011. Endophytic and rhizoplane bacteria associated with Cytisus striatus growing on hexachlorocyclohexane-contaminated soil: isolation and characterization. Plant Soil 340:413–433.
  • Becerra-Castro C, Prieto-Fernández Á, Kidd PS, Weyens N, Rodríguez-Garrido B, Touceda-González M, Acea MJ, Vangronsveld J. 2013. Improving performance of Cytisus striatus on substrates contaminated with hexachlorocyclohexane (HCH) isomers using bacterial inoculants: developing a phytoremediation strategy. Plant Soil 362:247–260.
  • Beetsman GB, Keeney DR, Chester G. 1969. Dieldrin uptake by corn as affected by soil properties. Agron J 61(2):247–250.
  • Böltner D, Godoy P, Muñoz-Rojas J, Duque E, Moreno-Morillas S, Sánchez L, Ramos JL. 2008. Rhizoremediation of lindane by root-colonizing Sphingomonas. Microb Biotechnol 1(1):87–93.
  • Bruce WN, Decker GC. 1966. Insecticide residues in soybeans grown in soil containing various concentrations of aldrin, dieldrin, heptachlor, and heptachlor epoxide. J Agric Food Chem 14(4):395–398.
  • Calvelo-Pereira R, Camps-Arbestain M, Rodríguez-Garrido B, Macías F, Monterroso C. 2006. Behaviour of α-, β-, γ-, and δ-hexachlorocyclohexane in the soil-plant system of a contaminated site. Environ Pollut 144:210–217.
  • Calvelo Pereira R, Monterroso C, Macías F, Camps-Arbestain M. 2008. Distribution pathways of hexachlorocyclohexane isomers in a soil-plant-air system. A case study with Cynara scolymus L. and Erica sp. plants grown in a contaminated site. Environ Pollut 155(2):350–358.
  • Campbell S, Arakaki AS, Li QX. 2009. Phytoremediation of heptachlor and heptachlor epoxide in soil by Cucurbitaceae. Int J Phytorem 11:28–38.
  • Castelfranco P, Foy C, Deutsch D. 1961. Non-enzymatic detoxification of 2-chloro-4,6-bis(ehtylamino)- S triazine (simazine) by extract of Zea maize. Weeds 9:580–591.
  • Cholewa R, Beutling D, Budzyk J, Pietrzak M, Walorczyk S. 2015. Persistent organochlorine pesticides in internal organs of coypu, Myocastor coypus. J Environ Sci Health B 50:590–594.
  • Chu WK, Wong MH, Zhang J. 2006. Accumulation, distribution and transformation of DDT and PCBs by Phragmites australis and Oryza sativa L. Whole plant study. Environ Geochem Health 28:159–168.
  • Chuluun B, Iamchaturapatr J, Rhee JS. 2009. Phytoremediation of organophosphorus and organochlorine pesticides by Acorus gramineus. Environ Eng Res 14(4):226–236.
  • Compant S, Clément C, Sessitsch A. 2010. Plant growth-promoting bacteria in the rhizo-and endosphere of plants: Their role, colonization, mechanisms involved and prospects for utilization. Soil Biol Biochem 42:669–678.
  • Compant S, Duffy B, Nowak J, Clément C, Barka EA. 2005. Use of plant growth-promoting bacteria for biocontrol of plant diseases: principles, mechanisms of action, and future prospects. Appl Environ Microbiol 71:94951–94959.
  • Daly GL, Lei YD, Teixeira C, Muir DCG, Wania F. 2007. Pesticides in western Canadian mountain air and soil. Environ Sci Technol 41:6020–6025.
  • De Lorenzo Prieto V, Gonzalez Pastor JE. 2007. Transgenic plant for lindane degradation. Patent No. 2007045709, Spain.
  • Dewailly É, Mulvad G, Pedersen HS, Ayotte P, Demers A, Weber J-P, Hansen JC. 1999. Concentration of organochlorines in human brain, liver, and adipose tissue autopsy samples from Greenland. Environ Health Perspect 107:823–828.
  • Dubey RK, Tripathi V, Singh N, Abhilash PC. 2014. Phytoextraction and dissipation of lindane by Spinacia oleracea L. Ecotoxicol Environ Saf 109:22–26.
  • El-Shahawi MS, Hamza A, Bashammakh AS, Al-Saggaf WT. 2010. An overview on the accumulation, distribution, transformations, toxicity and analytical methods for the monitoring of persistent organic pollutants. Talanta 80:1587–1597.
  • Gao J, Liu L, Liu X, Lu J, Zhou H, Huang S, Wang Z, Spear PA. 2008. Occurrence and distribution of organochlorine pesticides—lindane, p,p′-DDT, and heptachlor epoxide—in surface water of China. Environ Int 34:1097–1103.
  • Garrison AW, Nzengung VA, Avants KA, Jacksonellington J, Jones WJ, Rennels D, Wolfe NL. 2000. Phytodegradation of p,p’-DDT and the Enantiomers of o,p’-DDT. Environ Sci Technol 34:1663–1670.
  • Gerhardt KE, Huang XD, Glick BR, Greenberg BM. 2009. Phytoremediation and rhizoremediation of organic soil contaminants: Potential and challenges. Plant Sci 176:20–30.
  • Gion K, Inui H, Sasaki H, Utani Y, Kodama S, Ohkawa H. 2012. Assays of PCB congeners and organochlorine insecticides with the transgenic Arabidopsis and tobacco plants carrying recombinant guinea pig AhR and GUS reporter genes. J Environ Sci Health B 47(7):599–607.
  • Glick BR. 2010. Using soil bacteria to facilitate phytoremediation. Biotechnol Adv 28:367–374.
  • Glick BR. 2014. Bacteria with ACC deaminase can promote plant growth and help to feed the world. Microbiol Res 169:30–39. doi: 10.1016/j.micres.2013.09.009
  • Hatzioz KK. 1997. Regulation of enzymatic systems detoxifying xenobiotics in plants: a brief overview and directions for future research. In: Hatzioz KK, editor. Regulation of enzymatic systems detoxifying xenobiotics in plants. Netherlands: Kluwer Academic Publishers. p. 1–5.
  • HSDB. 2009. Hazardous substances data bank. National Library of Medicine. Available at http://toxnet.nlm.nih.gov/cgi-bin/sis/search2/f?./temp/∼wtFQyH:1.
  • Hussain S, Siddique T, Arshad M, Saleem M. 2009. Bioremediation and phytoremediation of pesticides: recent advances. Crit Rev Env Sci Tec 39:843–907.
  • Jiang Y, Wang X, Jia Y, Wang F, Wu M, Sheng G, Fu J. 2009. Occurrence, distribution and possible sources of organochlorine pesticides in agricultural soil of Shanghai, China. J Hazard Mater 170:989–997.
  • Kahng HY, Oh KH. 2005. Molecular detection of catabolic genes for polycyclic aromatic hydrocarbonss in the reed rhizosphere of Sunchon Bay. J Microbiol 43:572–576.
  • Khan S, Afzal M, Iqbal S, Khan QM. 2013. Plant–bacteria partnerships for the remediation of hydrocarbon contaminated soils. Chemosphere 90:1317–1332.
  • Khan MU, Sessitsch A, Harris M, Fatima K, Imran A, Arslan M, Shabir G, Khan QM, Afzal M. 2014. Cr-resistant rhizo-and endophytic bacteria associated with Prosopis juliflora and their potential as phytoremediation enhancing agents in metal-degraded soils. Front Plant Sci 5:755.
  • Kidd PS, Prieto-Fernandez A, Monterroso C, Acea MJ. 2008. Rhizosphere microbial community and hexachlorocyclohexane degradative potential in contrasting plant species. Plant Soil 302:233–247.
  • Kuranchie-Mensah H, Atiemo SM, Palm LMN, Blankson-Arthur S, Tutu AO, Fosu P. 2012. Determination of organochlorine pesticide residue in sediment and water from the Densu river basin, Ghana. Chemosphere 86:286–292.
  • Kurasvili MV, Adamia GS, Ananiasvili TI, Varazi TG, Pruidze MV, Gordeziani MS, Khatisashvili GA. 2014. Plants as tools for control and remediation of the environment polluted by organochlorine toxicants. Ann Agrar Sci 12(3).
  • Lal R, Saxena DM. 1982. Accumulation, metabolism, and effects of organochlorine insecticides on microorganisms. Microbiol Rev 46(1):95–127.
  • Lang Y, Cao Z, Nie X. 2005. Extraction of organochlorine pesticides in sediments using soxhlet, ultrasonic and accelerated solvent extraction techniques. J Ocean Univ China 4(2):173–176.
  • Laws EA. 2000. Aquatic pollution. 3rd ed. Hoboken, New Jersey: John Willey and Sons. p. 672.
  • LeFevre G.H, Hozalski RM, Novak PJ. 2013. Root exudate enhanced contaminant desorption: an abiotic contribution to the rhizosphere effect environ. Sci. Technol. 47:11545–11553.
  • Li H, Sheng G, Sheng W, Xu O. 2002. Uptake of trifluralin and lindane from water by ryegrass. Chemosphere 48:335–341.
  • Lichtenstein EP, Schulz KR, Skrentny RF, Stitt PA. 1965. Insecticidal residues in cucumbers and alfalfa grown on aldrin- or heptachlortreated soils. J Econ Entomol 58:742–746.
  • Lunney AI, Zeeb BA, Reimer KJ. 2004. Uptake of weathered DDT in vascular plants: potential for phytoremediation. Environ Sci Technol 38:6147–6154.
  • Luo L, Zhang S, Shan XQ, Zhu YG. 2006. Oxalate and root exudates enhance the desorption of DDT from soils. Chemosphere 63:1273–1279.
  • Luzardo OP, Ruiz Suárez N, Henríquez Hernández LA, Valerón PF, Camacho M, Zumbado M, Boada LD. 2014. Assessment of the exposure to organochlorine pesticides, PCBs and PAHs in six species of predatory birds of the Canary Islands, Spain. Sci Total Environ 472:146–153.
  • Macek T, Mackova M, Kas J. 2000. Exploitation of plants for the removal of organics in environmental remediation. Biotechnol Adv 18:23–34.
  • Man YB, Chan JKY, Wang HS, Wu SC, Wong MH. 2014. DDTs in mothers' milk, placenta and hair, and health risk assessment for infants at two coastal and inland cities in China. Environ Int 65:73–82.
  • Matsumoto E, Kawanaka Y, Yun SJ, Oyaizu H. 2009. Bioremediation of the organochlorine pesticides, dieldrin and endrin, and their occurrence in the environment. Appl Microbiol Biotechnol 84:205–216.
  • Mattina MI, Eitzer BD, Iannucci-Berger W, Lee WY, White JC. 2004. Plant uptake and translocation of highly weathered, soil-bound technical chlordane residues: data from field and rhizotron studies. Environ Toxicol Chem 23:2756–2762.
  • Mattina MJI, Iannucci-Berger W, Dykas L. 2000. Chlordane uptake and its translocation in food crops. J Agric Food Chem 48:1909–1915.
  • Miglioranza KSB, de Moreno JEA, Moreno VJ. 2004. Organochlorine pesticides sequestered in the aquatic macrophyte Schoenoplectus californicus (C.A. Meyer) Soják from a shallow lake in Argentina. Water Res 38:1765–1772.
  • Miguel AS, Ravanel P, Raveton R. 2013. A comparative study on the uptake and translocation of organochlorines by Phragmites australis. J Hazard Mater 244–245:60–69.
  • Miguel AS, Roy J, Gury J, Monier A, Coissac E, Ravanel P, Geremia RA, Raveton M. 2014. Effects of organochlorines on microbial diversity and community structure in Phragmites australis rhizosphere. Appl Microbiol Biotechnol 98(9):4257–66.
  • Miguel AS, Schröder P, Harpaintner R, Gaude T, Ravanel P, Raveton M. 2013. Response of phase II detoxification enzymes in Phragmites australis plants exposed to organochlorines. Environ Sci Pollut Res 20:3464–3471.
  • Miles JRW, Tu CM, Harris CR. 1969. Metabolism of heptachlor and its degradation products by soil microorganisms. J Econ Entomol 62:1334–1348.
  • Miniero R, Abate V, Brambilla G, Davoli E, De Filip E, De Filippis SP, Dellatte E, De Luca S, Fanelli R, Fattore E, Ferri F, Fochi I, Rita Fulgenzi A, Iacovella N, Iamiceli AL, Lucchetti D, Melotti P, Moret I, Piazza R, Roncarati A, Ubaldi A, Zambon S, di Domenico. 2014. Persistent toxic substances in Mediterranean aquatic species. Sci Total Environ 494–495:18–27.
  • Mitton FM, Gonzalez M, Peña A, Miglioranza KS. 2012. Effects of amendments on soil availability and phytoremediation potential of aged p,p'-DDT, p,p'-DDE and p,p'-DDD residues by willow plants (Salix sp.). J Hazard Mater 203–204:62–68.
  • Mitton FM, Miglioranza KSB, Gonzalez M, Shimabukuro VM, Monserrat JM. 2014. Assessment of tolerance and efficiency of crop species in the phytoremediation of DDT polluted soils. Ecol Eng 71:501–508.
  • Miya RK, Firestone MK. 2001. Enhanced phenanthrene biodegradation in soil by slender oat root exudates and root debris. J Environ Qual 30:1911–1918.
  • Mukherjee I, Kumar A. 2012. Phytoextraction of endosulfan a remediation technique. Bull Environ Toxicol 88:250–254.
  • Nagpal V, Paknikar KM. 2006. Integrated biological approach for the enhanced degradation of lindane. Indian J Biotechnol 5:400–406.
  • Nakata H, Kawazoe M, Arizono K, Kitano T, Shimada H, Li W, Ding X. 2002. Organochlorine pesticides and polychlorinated biphenyl residues in foodstuffs and human tissues from China: Status of contamination, historical trend, and human dietary exposure. Arc Environ Contam Toxicol 43:473–480.
  • Nair DN, Padmavathy S. 2014. Impact of endophytic microorganisms on plants, environment and humans. Sci World J 2014:250693.
  • Odukkathil G, Vasudevan N. 2013. Toxicity and bioremediation of pesticides in agricultural soil. Rev Environ Sci Biotechnol 12:421–444.
  • Otani T, Seike N, Sakata Y. 2007. Differential uptake of dieldrin and endrin from soil by several plant families and Cucurbita genera. Soil Sci Plant Nutr 53:86–94.
  • Pope JV, Skurky-Thomas M, Rosen CL. 1994. Toxicity; Organochlorine Pesticides (New York: Medscape). 259–278
  • Ritter L, Solomon K, Forget J, Stemeroff M, O'Leary C. 1995. An assessment report on DDT, aldrin, dieldrin, endrin, chlordane, heptachlor, hexachlorobenzene, mirex, toxaphene, polychlorinated biphenyls, dioxins and furans. International Programme on Chemical Safety (IPCS) within the framework of the Inter-Organization Programme for the Sound Management of Chemicals (IOMC), Geneva, PCS/95.39:1–43.
  • Ryan RP, Germaine K, Franks A, Ryan DJ, Dowling DN. 2008. Bacterial endophytes: recent developments and applications. FEMS Microbiol Lett 278:1–9.
  • Salt DE, Smith RD, Raskin I. 1998. Phytoremediation. Annu Rev Plant Physiol Plant Mol Biol 49:643–668.
  • Sandermann H. 1994. Higher plant metabolism of xenobiotics: the ‘green liver’ concept. Pharmacogenetics 4:225–241.
  • Schmidt B, Faymonville T, Gembé E, Joußen N, Schuphan I. 2006a. Comparison of the biotransformation of the 14C-labelled insecticide carbaryl by non-transformed and human CYP1A1, CYP1A2-, and CYP3A4-transgenic cell cultures of Nicotiana tabacum. Chem Biodiv 3:878–96.
  • Schmidt B, Joußen N, Bode M, Schuphan I. 2006b. Oxidative metabolic profiling of xenobiotics by human P450s expressed in tobacco cell suspension cultures. Biochem Soc Trans 34:1241–45.
  • Schnoor JL. 1997. Phytoremediation. Technology Evaluation Report TE-97-01. National Environmental Technology Applications Center, Pittsburgh.
  • Schroder P. 2007. Exploiting plant metabolism for the phytoremediation of organic xenobiotics. In: Willey N, editor. Phytoremediation: methods and reviews. Totowa (NJ): Humana Press Inc. p. 251–263.
  • Schwitzguébel JP, Schröder P. 2009. Phytotechnologies to promote sustainable land use and improve food safety: Outcomes and outlook from the European COST Action 859. Environ Sci Pollut Res 16:743–744.
  • Shaw LJ, Burns RG. 2007. Influence of the rhizosphere on the biodegradation of organic xenobiotics—a case study with 2,4- dichlorophenoxyacetic acid. In: Heipieper HJ, editor. Bioremediation of soils contaminated with aromatic compounds: effects of rhizosphere, bioavailability, gene regulation and stress adaptation. Berlin: Springer. p. 5–30.
  • Singh DK. 2002. Microbial degradation of insecticides: An assessment for its use in bioremediation. Biotransform—Biorem Technol Health Environ Prot 36:175–188.
  • Singh N. 2003. Enhanced degradation of hexachlorocyclohexane isomers in rhizosphere soil of Kochia sp. Bull Environ Contam Toxicol 70:775–782.
  • Singh DK. 2008. Biodegradation and bioremediation of pesticide in soil: concept, method and recent developments. Ind J Microbiol 48:35–40.
  • Singh DK. 2012. Toxicology: Agriculture and environment: Pesticide chemistry and toxicology. Bentham Science Publishers.
  • Singh DK, Agarwal HC. 1992. Chemical release and nature of soil-bound DDT residues. J Agric Food Chem 40:1713–1716.
  • Singh S, Sherkhane PD, Kale SP, Eapen S. 2011. Expression of a human cytochrome P4502E1 in Nicotiana tabacum enhances tolerance and remediation of γ-hexachlorocyclohexane. N Biotechnol 28(4):423–429.
  • Singh V, Singh N. 2014. Uptake and accumulation of endosulfan isomers and its metabolite endosulfan sulfate in naturally growing plants of contaminated area. Ecotoxicol Environ Saf 104:189–193.
  • Somtrakoon K, Kruatrachue M, Lee H. 2014. Phytoremediation of Endosulfan Sulfate-contaminated soil by single and mixed plant cultivations. Water Air Soil Pollut 225:1886:1–13.
  • Suresh B, Sherkhane PD, Kale S, Eapen S, Ravishankar GA. 2005. Uptake and degradation of DDT by hairy root cultures of Cichorium intybus and Brassica juncea. Chemosphere 61:1288–1292.
  • Susarla S, Medina VF, McCutcheon SC. 2002. Phytoremediation: An ecological solution to organic chemical contamination. Ecol Eng 18:647–658.
  • Theodoulou FL. 2000. Plant ABC transporters. Biochem Biophys Acta 1465:79–103.
  • Thompson NP, Wheeler WB, Norden AJ. 1970. Residues in three peanut varieties grown in dieldrin treated soil. J Agric Food Chem 18(5):862–863.
  • Tomza-Marciniak A, Marciniak A, Pilarczyk B, Prokulewicz A, Bakowska M. 2014. Interspecies comparison of chlorinated contaminant concentrations and profiles in wild terrestrial mammals from northwest Poland. Arch Environ Contam Toxicol 66:491–503.
  • Turner BC, Taylor AW, Edwards WM. 1972. Dieldrin and heptachlor residues in soybeans. Agron J 64:237–239.
  • UNEP. 2003. Global report on regionally based assessment of persistent toxic substances. UNEP Chemicals, Geneva, Switzerland.
  • Vorkamp K, Riget FF. 2014. A review of new and current-use contaminants in the Arctic environment: Evidence of long-range transport and indications of bioaccumulation. Chemosphere 111:379–395.
  • Wang HS, Chen ZJ, Wei W, Man YB, Giesy JP, Du J, Zhang G, Wong CKC, Wong MH. 2013. Concentrations of organochlorine pesticides (OCPs) in human blood plasma from Hong Kong: markers of exposure and sources from fish. Environ Int 54:18–25.
  • Wauchope RD. 1978. The pesticide content of surface water draining from agricultural fields—a review. J Environ Qual 7:459–472.
  • Weyens N, Van Der Lelie D, Taghavi S, Newman L, Vangronsveld J. 2009. Exploiting plant-microbe partnerships to improve biomass production and remediation. Trends Biotechnol 27:591–598.
  • White JC. 2001. Plant-facilitated mobilization and translocation of weathered 2,2-bis(p-chlorophenyl)-1,1-dichloroethylene (p,p'-DDE) from an agricultural soil. Environ Toxicol Chem 20(9):2047–2052.
  • White JC, Mattina MI, Lee W, Eitzer BD, Iannucci-Berger W. 2003. Role of organic acids in enhancing the desorption and uptake of weathered p,p′-DDE by Cucurbita pepo. Environ Pollut 124:71–80.
  • White J, Zeeb B. 2007. Plant phylogeny and the remediation of persistent organic pollutants. In: Willey N, editor. Phytoremediation: methods in biotechnology. Humana Press, Springer office, New York City, US. p. 71–87.
  • Wikoff D, Fitzgerald L, Birnbaum L. 2012. Persistent organic pollutants: an overview, Dioxins and Health. John Wiley & Sons Inc. p. 1–35.
  • Yang YY, Toor GS, Williams CF. 2015. Pharmaceuticals and organochlorine pesticides in sediments of an urban river in Florida, USA. J Soils Sediments 15:993–1004.
  • Yanyu S, Changchun S, Songbai J, Junhai C, Jun G, Quandong Z. 2010. Hydroponic uptake and distribution of nitrobenzene in phragmites australis: potential for phytoremediation. Int J Phytorem 12:217–225.
  • Yi Z, Zheng L, Guo P, Bi J. 2013. Distribution of α-, β-, γ-, and δ-hexachlorocyclohexane in soil–plant–air system in a tea. Ecotoxicol Environ Saf 91:156–161.
  • Zacharia JT. 2011. Identity, physical and chemical properties of pesticides. In: Stoytcheva M, editor. Pesticides in the modern world-trends in pesticides analysis. Rijeka: InTech. p. 1–18.
  • Zhang JY, Zhao W, Pan J, Qiu LM, Zhu YM. 2005. Tissue-dependent distribution and accumulation of chlorobenzenes by vegetables in urban area. Environ Int 31:855–860.

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