Skip to main content

2022 | OriginalPaper | Buchkapitel

17. Laccase Enzyme in Nanoparticle for Pesticide Degradation: A Special Emphasis on Chlorpyrifos Degradation

verfasst von : Anamika Das, Saloni Sachdeva, Vijay Jaswal, K. N. Yogalakshmi

Erschienen in: Environmental Degradation: Challenges and Strategies for Mitigation

Verlag: Springer International Publishing

Aktivieren Sie unsere intelligente Suche, um passende Fachinhalte oder Patente zu finden.

search-config
loading …

Abstract

Synthetic chemicals were used as pesticides for killing numerous pests. There are various classes in which insecticides are one of the types which are responsible for causing dangerous effect on human beings. Due to their efficacy, these insecticides gained popularity, and easy access has made them popular among farmers. Chlorpyrifos is a type of insecticide having broad spectrum effect which makes it a favourable candidate against numerous pests. When it is being used, it remains in the environment for several years, contaminating the quality of soil and the groundwater. The chlorpyrifos pesticide is used rigorously in farming practices. Chlorpyrifos inhibits acetylcholine esterase enzyme causing convulsion, paralysis and ultimately death. Deleterious effect of the chlorpyrifos pesticide has led researchers to ponder about its efficient and eco-friendly degradation/removal process. Biological method of degradation involves microbes where enzymes play a crucial role in degradation of chlorpyrifos. Laccase is an enzyme having broad substrate specificity and explored for chlorpyrifos degradation in its free and immobilized form. And it has been observed that enzyme immobilized onto a suitable support shows more efficiency than the free enzymes. Moreover, the immobilized enzyme can be reused multiple times. So far, numerous carriers or supports have been reported. However, role of nanoparticles in immobilization is in infancy. Large surface area, eco-friendly nature and inexpensive characteristics may enhance the degradation efficiency by retaining the enzymes intact and enhancing the reusability. This chapter will focus on laccase enzyme, their sources of generation, characteristics and application. Further, the chapter would highlight the application of nanoparticle in pesticide degradation and its role as a carrier for enzyme immobilization. Lastly, the chapter would discuss about the mechanism of action of laccase immobilized nanoparticle in pesticide degradation.

Sie haben noch keine Lizenz? Dann Informieren Sie sich jetzt über unsere Produkte:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Literatur
Zurück zum Zitat Ahmad R, Sardar M (2015) Enzyme immobilization: an overview on nanoparticles as immobilization matrix. Biochem Anal Biochem 4(2):1–8 Ahmad R, Sardar M (2015) Enzyme immobilization: an overview on nanoparticles as immobilization matrix. Biochem Anal Biochem 4(2):1–8
Zurück zum Zitat Baiocco P, Barreca AM, Fabbrini M, Galli C, Gentili P (2003) Promoting laccase activity towards non-phenolic substrates: a mechanistic investigation with some laccase-mediator systems. Org Biomol Chem 1(1):191–197CrossRef Baiocco P, Barreca AM, Fabbrini M, Galli C, Gentili P (2003) Promoting laccase activity towards non-phenolic substrates: a mechanistic investigation with some laccase-mediator systems. Org Biomol Chem 1(1):191–197CrossRef
Zurück zum Zitat Bending GD, Friloux M, Walker A (2002) Degradation of contrasting pesticides by white rot fungi and its relationship with ligninolytic potential. FEMS Microbiol Lett 212(1):59–63CrossRef Bending GD, Friloux M, Walker A (2002) Degradation of contrasting pesticides by white rot fungi and its relationship with ligninolytic potential. FEMS Microbiol Lett 212(1):59–63CrossRef
Zurück zum Zitat Bhagobaty RK, Joshi SR, Malik A (2006) Microbial degradation of organophosphorous pesticide: chlorpyrifos (mini-review). Int J Microbiol 4(1):1–12 Bhagobaty RK, Joshi SR, Malik A (2006) Microbial degradation of organophosphorous pesticide: chlorpyrifos (mini-review). Int J Microbiol 4(1):1–12
Zurück zum Zitat Bidlack HD (1979) Degradation of chlorpyrifos in soil under aerobic, aerobic/anaerobic and anaerobic conditions. Midland, MI (unpublished report), Dow Chemical Bidlack HD (1979) Degradation of chlorpyrifos in soil under aerobic, aerobic/anaerobic and anaerobic conditions. Midland, MI (unpublished report), Dow Chemical
Zurück zum Zitat Bigley AN, Raushel FM (2013) Catalytic mechanisms for phosphotriesterases. Biochimica et Biophysica Acta (BBA)-Proteins and Proteomics 1834(1): 443–453. Bigley AN, Raushel FM (2013) Catalytic mechanisms for phosphotriesterases. Biochimica et Biophysica Acta (BBA)-Proteins and Proteomics 1834(1): 443–453.
Zurück zum Zitat Brena BM, Batista-Viera F (ed) (2006). Immobilization of enzymes. In: Methods in biotechnology: immobilization of enzymes and cells, pp 15–30. Humana Press Inc., Totowa, NJ Brena BM, Batista-Viera F (ed) (2006). Immobilization of enzymes. In: Methods in biotechnology: immobilization of enzymes and cells, pp 15–30. Humana Press Inc., Totowa, NJ
Zurück zum Zitat Buchholz K, Klein J (eds) (1987) Characterization of immobilized biocatalysts. In: Methods in enzymology, vol 135. Academic Press, London, pp 3–30 Buchholz K, Klein J (eds) (1987) Characterization of immobilized biocatalysts. In: Methods in enzymology, vol 135. Academic Press, London, pp 3–30
Zurück zum Zitat Bumpus JA, Kakar SN, Coleman RD (1993) Fungal degradation of organophosphorus insecticides. Appl Biochem Biotechnol 39(1):715–726CrossRef Bumpus JA, Kakar SN, Coleman RD (1993) Fungal degradation of organophosphorus insecticides. Appl Biochem Biotechnol 39(1):715–726CrossRef
Zurück zum Zitat Carlsson J, Batista-Viera F, Rydén L (1998) Covalent chromatography protein purification: principles, high-resolution methods, and applications. Wiley-VCH New York, pp 343–373 Carlsson J, Batista-Viera F, Rydén L (1998) Covalent chromatography protein purification: principles, high-resolution methods, and applications. Wiley-VCH New York, pp 343–373
Zurück zum Zitat Chen S, Liu C, Peng C, Liu H, Hu M, Zhong G (2012) Biodegradation of chlorpyrifos and its hydrolysis product 3,5,6-trichloro-2-pyridinol by a new fungal strain Cladosporium cladosporioides Hu-01. PLoS ONE 7(10):1–12 Chen S, Liu C, Peng C, Liu H, Hu M, Zhong G (2012) Biodegradation of chlorpyrifos and its hydrolysis product 3,5,6-trichloro-2-pyridinol by a new fungal strain Cladosporium cladosporioides Hu-01. PLoS ONE 7(10):1–12
Zurück zum Zitat Cheng TC, Liu L, DeFrank JJ, Anderson D, Hamilton AB (1995) Bacterial nerve agent degrading enzymes that are similar to prolidase protein sequence and activity. In: Proceedings of the 1995 ERDEC scientific conference on chemical defense research Cheng TC, Liu L, DeFrank JJ, Anderson D, Hamilton AB (1995) Bacterial nerve agent degrading enzymes that are similar to prolidase protein sequence and activity. In: Proceedings of the 1995 ERDEC scientific conference on chemical defense research
Zurück zum Zitat Couto SR, Herrera JLT (2006) Industrial and biotechnological applications of laccases: a review. Biotechnol Adv 24(5):500–513CrossRef Couto SR, Herrera JLT (2006) Industrial and biotechnological applications of laccases: a review. Biotechnol Adv 24(5):500–513CrossRef
Zurück zum Zitat Cox, C. (1995). Chlorpyrifos. Part 3: Ecological effects. Journal of Pesticide Reform 15(2): 3–10 Cox, C. (1995). Chlorpyrifos. Part 3: Ecological effects. Journal of Pesticide Reform 15(2): 3–10
Zurück zum Zitat Cruz JC, Pfromm PH, Rezac ME (2009) Immobilization of Candida antarctica Lipase B on fumed silica. Process Biochem 44(1):62–69CrossRef Cruz JC, Pfromm PH, Rezac ME (2009) Immobilization of Candida antarctica Lipase B on fumed silica. Process Biochem 44(1):62–69CrossRef
Zurück zum Zitat Das A, Singh J, Yogalakshmi KN (2017) Laccase immobilized magnetic iron nanoparticles: fabrication and its performance evaluation in chlorpyrifos degradation. Int Biodeterior Biodegradation 117:183–189 Das A, Singh J, Yogalakshmi KN (2017) Laccase immobilized magnetic iron nanoparticles: fabrication and its performance evaluation in chlorpyrifos degradation. Int Biodeterior Biodegradation 117:183–189
Zurück zum Zitat Datta S, Rene CL, Rajaram YRS (2013) Enzyme immobilization: an overview on techniques and support materials. 3 Biotech 3(1): 1–9. Datta S, Rene CL, Rajaram YRS (2013) Enzyme immobilization: an overview on techniques and support materials. 3 Biotech 3(1): 1–9.
Zurück zum Zitat Daumann LJ, Larrabee JA, Ollis D, Schenk G, Gahan LR (2014) Immobilization of the enzyme GpdQ on magnetite nanoparticles for organophosphate pesticide bioremediation. J Inorg Biochem 131:1–7CrossRef Daumann LJ, Larrabee JA, Ollis D, Schenk G, Gahan LR (2014) Immobilization of the enzyme GpdQ on magnetite nanoparticles for organophosphate pesticide bioremediation. J Inorg Biochem 131:1–7CrossRef
Zurück zum Zitat Dehghanifard E, Ahmad JJ, Roshanak RK, Mahvi AH, Ali MF, Ali E (2013) Biodegradation of 2,4-dinitrophenol with laccase immobilized on nano-porous silica beads. Iranian J Environ Health Sci Eng 10(1):1–9CrossRef Dehghanifard E, Ahmad JJ, Roshanak RK, Mahvi AH, Ali MF, Ali E (2013) Biodegradation of 2,4-dinitrophenol with laccase immobilized on nano-porous silica beads. Iranian J Environ Health Sci Eng 10(1):1–9CrossRef
Zurück zum Zitat Deng S, Chen Y, Wang D, Shi T, Wu X, Ma X, Li X, Hua R, Tang X, Li QX (2015) Rapid biodegradation of organophosphorus pesticides by Stenotrophomonas sp. G1. J Hazardous Mater 297(2015): 17–24 Deng S, Chen Y, Wang D, Shi T, Wu X, Ma X, Li X, Hua R, Tang X, Li QX (2015) Rapid biodegradation of organophosphorus pesticides by Stenotrophomonas sp. G1. J Hazardous Mater 297(2015): 17–24
Zurück zum Zitat Elias M et al (2013) Hydrogen atoms in protein structures: High-resolution X-ray diffraction structure of the DFPase. BMC Res Notes 6(1):308 Elias M et al (2013) Hydrogen atoms in protein structures: High-resolution X-ray diffraction structure of the DFPase. BMC Res Notes 6(1):308
Zurück zum Zitat Endo K, Hosono K, Beppu T, Ueda K (2002) A novel extra cytoplasmatic phenol oxidase of Streptomyces: its possible involvement in the onset of morphogenesis. Microbiology 148:1767–1776CrossRef Endo K, Hosono K, Beppu T, Ueda K (2002) A novel extra cytoplasmatic phenol oxidase of Streptomyces: its possible involvement in the onset of morphogenesis. Microbiology 148:1767–1776CrossRef
Zurück zum Zitat Fang H, Xiang YQ, Hao YJ, Chu XQ, Pan XD, Yu JQ, Yu YL (2008) Fungal degradation of chlorpyrifos by Verticillium sp. DSP in pure cultures and its use in bioremediation of contaminated soil and pakchoi. Int Biodeterior Biodegrad 61(4): 294–303. Fang H, Xiang YQ, Hao YJ, Chu XQ, Pan XD, Yu JQ, Yu YL (2008) Fungal degradation of chlorpyrifos by Verticillium sp. DSP in pure cultures and its use in bioremediation of contaminated soil and pakchoi. Int Biodeterior Biodegrad 61(4): 294–303.
Zurück zum Zitat Finley SD, Broadbelt LJ, Hatzimanikatis V (2010) In silico feasibility of novel biodegradation pathways for 1,2,4-trichlorobenzene. BioMed Central Syst Biol 4(7):4–14 Finley SD, Broadbelt LJ, Hatzimanikatis V (2010) In silico feasibility of novel biodegradation pathways for 1,2,4-trichlorobenzene. BioMed Central Syst Biol 4(7):4–14
Zurück zum Zitat Flickinger MC, Drew SW (1999) Encyclopedia of bioprocess technology: fermentation, biocatalysis and bioseparation, pp 1545–1554 Flickinger MC, Drew SW (1999) Encyclopedia of bioprocess technology: fermentation, biocatalysis and bioseparation, pp 1545–1554
Zurück zum Zitat Fu J, Reinhold J, Woodbury NW (2011) Peptide-modified surfaces for enzyme immobilization. PLoS ONE 6(4):1–6CrossRef Fu J, Reinhold J, Woodbury NW (2011) Peptide-modified surfaces for enzyme immobilization. PLoS ONE 6(4):1–6CrossRef
Zurück zum Zitat Ganesana M, Istarnboulie G, Marty JL, Noguer T, Andreescu S (2011) Site-specific immobilization of a (His) 6-tagged acetylcholinesterase on nickel nanoparticles for highly sensitive toxicity biosensors. Biosens Bioelectron 30(1):43–48CrossRef Ganesana M, Istarnboulie G, Marty JL, Noguer T, Andreescu S (2011) Site-specific immobilization of a (His) 6-tagged acetylcholinesterase on nickel nanoparticles for highly sensitive toxicity biosensors. Biosens Bioelectron 30(1):43–48CrossRef
Zurück zum Zitat Gardiol AE, Hernandez RJ, Harte BR (1998) Device for detecting oxygen with oxidase. United States Patent, 5804401 Gardiol AE, Hernandez RJ, Harte BR (1998) Device for detecting oxygen with oxidase. United States Patent, 5804401
Zurück zum Zitat Gemeiner P (1992) Materials for enzyme engineering. In: Gemeiner P (ed) Enzyme engineering. Ellis Horwood, New York, pp 13–119 Gemeiner P (1992) Materials for enzyme engineering. In: Gemeiner P (ed) Enzyme engineering. Ellis Horwood, New York, pp 13–119
Zurück zum Zitat Ghanem I, Orfi M, Shamma M (2007) Biodegradation of chlorphyrifos by Klebsiella sp. isolated from an activated sludge sample of waste water treatment plant in damascus. Folia Microbiologica 52(4):423–427 Ghanem I, Orfi M, Shamma M (2007) Biodegradation of chlorphyrifos by Klebsiella sp. isolated from an activated sludge sample of waste water treatment plant in damascus. Folia Microbiologica 52(4):423–427
Zurück zum Zitat Givaudan A, Effosse A, Faure D, Potier P, Bouillant ML, Bally R (1993) Polyphenol oxidase in Azospirillum lipoferum isolated from rice rhizosphere: evidence for laccase activity in non-motile strains of Azospirillum lipoferum. FEMS Microbiol Lett 108(2):205–210CrossRef Givaudan A, Effosse A, Faure D, Potier P, Bouillant ML, Bally R (1993) Polyphenol oxidase in Azospirillum lipoferum isolated from rice rhizosphere: evidence for laccase activity in non-motile strains of Azospirillum lipoferum. FEMS Microbiol Lett 108(2):205–210CrossRef
Zurück zum Zitat Guisan JM (ed) (2006). Immobilization of enzymes as the 21st century begins. In: Immobilization of enzymes and cells, 2nd ed., vol 22. Humana Press Inc., New Jersey (NJ), pp 1–13 Guisan JM (ed) (2006). Immobilization of enzymes as the 21st century begins. In: Immobilization of enzymes and cells, 2nd ed., vol 22. Humana Press Inc., New Jersey (NJ), pp 1–13
Zurück zum Zitat Gupta M, Mattiasson B (1992) Unique applications of immobilized proteins in bioanalytical systems. In: Suelter CH (ed) Methods of biochemical analysis, vol 36. Wiley, New York, pp. 1–34 Gupta M, Mattiasson B (1992) Unique applications of immobilized proteins in bioanalytical systems. In: Suelter CH (ed) Methods of biochemical analysis, vol 36. Wiley, New York, pp. 1–34
Zurück zum Zitat Gupta RC (ed) (2012) Veterinary toxicology: basic and clinical principles (ed). Academic press Gupta RC (ed) (2012) Veterinary toxicology: basic and clinical principles (ed). Academic press
Zurück zum Zitat Honda T, Miyazaki M, Nakamura H, Maeda H (2006) Facile preparation of an enzyme-immobilized microreactor using a cross-linking enzyme membrane on a microchannel surface. Adv Synth Catal 348(15):2163–2171CrossRef Honda T, Miyazaki M, Nakamura H, Maeda H (2006) Facile preparation of an enzyme-immobilized microreactor using a cross-linking enzyme membrane on a microchannel surface. Adv Synth Catal 348(15):2163–2171CrossRef
Zurück zum Zitat Hwang ET, Gu MB (2013) Enzyme stabilization by nano/microsized hybrid materials. Eng Life Sci 13(1):49–61CrossRef Hwang ET, Gu MB (2013) Enzyme stabilization by nano/microsized hybrid materials. Eng Life Sci 13(1):49–61CrossRef
Zurück zum Zitat Ispas C, Sokolov I, Andreescu S (2009) Enzyme-functionalized mesoporous silica for bioanalytical applications. Anal Bioanal Chem 393:543–554CrossRef Ispas C, Sokolov I, Andreescu S (2009) Enzyme-functionalized mesoporous silica for bioanalytical applications. Anal Bioanal Chem 393:543–554CrossRef
Zurück zum Zitat Jing DJ, Huang JB, Yang ZP, Hu R, Cheng ZZ, Huang QM (2011) Induce of laccase from Trametes gallica and its degradation on neutral dyes and organophosphorus pesticides. Acad J 22(12):3300–3306 Jing DJ, Huang JB, Yang ZP, Hu R, Cheng ZZ, Huang QM (2011) Induce of laccase from Trametes gallica and its degradation on neutral dyes and organophosphorus pesticides. Acad J 22(12):3300–3306
Zurück zum Zitat Jořenek M, Zajoncová L (2015) Immobilization of laccase on magnetic carriers and its use in decolorization of dyes. Chem Biochem Eng Q 29(3):457–466CrossRef Jořenek M, Zajoncová L (2015) Immobilization of laccase on magnetic carriers and its use in decolorization of dyes. Chem Biochem Eng Q 29(3):457–466CrossRef
Zurück zum Zitat Kalra RL, Chawla RP (1981) Occurrence of DDT and BHC residues in human milk in India. Cell Mol Life Sci 37(4):404–405CrossRef Kalra RL, Chawla RP (1981) Occurrence of DDT and BHC residues in human milk in India. Cell Mol Life Sci 37(4):404–405CrossRef
Zurück zum Zitat Kalra RL, Singh B, Battu RS (1994) Organochlorine pesticide residues in human milk in Punjab. India. Environ Pollut 85(2):147–151CrossRef Kalra RL, Singh B, Battu RS (1994) Organochlorine pesticide residues in human milk in Punjab. India. Environ Pollut 85(2):147–151CrossRef
Zurück zum Zitat Karalliedde LD, Edwards P, Marrs TC (2003) Variables influencing the toxic response to organophosphates in humans. Food Chem Toxicol 41(1):1–13CrossRef Karalliedde LD, Edwards P, Marrs TC (2003) Variables influencing the toxic response to organophosphates in humans. Food Chem Toxicol 41(1):1–13CrossRef
Zurück zum Zitat Kennedy JF, Cabral JMS (ed) (1985) Immobilization of biocatalysts by metallink/chelation processes. In: Woodward J (ed) Immobilized cells and enzymes. IRL, Oxford, UK, pp. 19–37 Kennedy JF, Cabral JMS (ed) (1985) Immobilization of biocatalysts by metallink/chelation processes. In: Woodward J (ed) Immobilized cells and enzymes. IRL, Oxford, UK, pp. 19–37
Zurück zum Zitat Khoshnevisan K, Bordbar AK, Zare D, Davoodi D, Noruzi M, Barkhi M, Tabatabaei M (2011) Immobilization of cellulase enzyme on superparamagnetic nanoparticles and determination of its activity and stability. Chem Eng J 171(2):669–673CrossRef Khoshnevisan K, Bordbar AK, Zare D, Davoodi D, Noruzi M, Barkhi M, Tabatabaei M (2011) Immobilization of cellulase enzyme on superparamagnetic nanoparticles and determination of its activity and stability. Chem Eng J 171(2):669–673CrossRef
Zurück zum Zitat Klotzbach TL, Watt MM, Ansari Y, Minteer SD (2008) Improving the microenvironment for enzyme immobilization at electrode by hydrophobically modified chitson and Nafion® polymer. J Membr Sci 311(1):81–88CrossRef Klotzbach TL, Watt MM, Ansari Y, Minteer SD (2008) Improving the microenvironment for enzyme immobilization at electrode by hydrophobically modified chitson and Nafion® polymer. J Membr Sci 311(1):81–88CrossRef
Zurück zum Zitat Kunamneni A, Ballesteros A, Francisco JP, Alcalde M (ed) (2007) Fungal laccase-a versatile enzyme for biotechnological applications. Communicating Current Research and Educational Topics and Trends in Applied Microbiology. Formatex, pp 233–245 Kunamneni A, Ballesteros A, Francisco JP, Alcalde M (ed) (2007) Fungal laccase-a versatile enzyme for biotechnological applications. Communicating Current Research and Educational Topics and Trends in Applied Microbiology. Formatex, pp 233–245
Zurück zum Zitat Lakshmi CV, Kumar M, Khanna S (2008) Biotransformation of chlorpyrifos and bioremediation of contaminated soil. Int Biodeterior Biodegrad 62(2):204–209CrossRef Lakshmi CV, Kumar M, Khanna S (2008) Biotransformation of chlorpyrifos and bioremediation of contaminated soil. Int Biodeterior Biodegrad 62(2):204–209CrossRef
Zurück zum Zitat Latifi AM, Karami A, Khodi S (2015) Efficient surface display of Diisopropylfluorophosphatase (DFPase) in E. coli for biodegradation of toxic organophosphorus compounds (DFP and Cp). Appl Biochem Biotechnol 177(3):624–636 Latifi AM, Karami A, Khodi S (2015) Efficient surface display of Diisopropylfluorophosphatase (DFPase) in E. coli for biodegradation of toxic organophosphorus compounds (DFP and Cp). Appl Biochem Biotechnol 177(3):624–636
Zurück zum Zitat Li HL, Liu DP, Liang CC (2003) Paraoxonase gene polymorphisms, oxidative stress, and diseases. J Mol Med 81(12):766–779CrossRef Li HL, Liu DP, Liang CC (2003) Paraoxonase gene polymorphisms, oxidative stress, and diseases. J Mol Med 81(12):766–779CrossRef
Zurück zum Zitat Li X, Jiang J, Gu L, Ali S, He J, Li S (2008) Diversity of chlorpyrifos-degrading bacteria isolated from chlorpyrifos-contaminated samples. Int Biodeterior Biodegrad 62(4):331–335CrossRef Li X, Jiang J, Gu L, Ali S, He J, Li S (2008) Diversity of chlorpyrifos-degrading bacteria isolated from chlorpyrifos-contaminated samples. Int Biodeterior Biodegrad 62(4):331–335CrossRef
Zurück zum Zitat Liu X, You MS, Wei YZ, Cai ZC, Liao JY (2002) Degradation effects of Trichoderma Y on chlorpyrifos and methamidophos. J Fujian Agricult Forestry Univ (nat Sci Ed) 31:455–458 Liu X, You MS, Wei YZ, Cai ZC, Liao JY (2002) Degradation effects of Trichoderma Y on chlorpyrifos and methamidophos. J Fujian Agricult Forestry Univ (nat Sci Ed) 31:455–458
Zurück zum Zitat Liu J, Tan L, Wang J, Wang Z, Ni H, Li L (2016) Complete biodegradation of chlorpyrifos by engineered Pseudomonas putida cells expressing surface-immobilized laccases. Chemosphere 157:200–207CrossRef Liu J, Tan L, Wang J, Wang Z, Ni H, Li L (2016) Complete biodegradation of chlorpyrifos by engineered Pseudomonas putida cells expressing surface-immobilized laccases. Chemosphere 157:200–207CrossRef
Zurück zum Zitat Madhuri RJ, Rangaswamy V (2009) Biodegradation of selected insecticides by Bacillus and Pseudomonas sp. in ground nut fields. Toxicol Inter 16(2): 127–132. Madhuri RJ, Rangaswamy V (2009) Biodegradation of selected insecticides by Bacillus and Pseudomonas sp. in ground nut fields. Toxicol Inter 16(2): 127–132.
Zurück zum Zitat Majeau JA, Brar SK, Tyagi RD (2010) Laccases for removal of recalcitrant and emerging pollutants. Biores Technol 101(7):2331–2350CrossRef Majeau JA, Brar SK, Tyagi RD (2010) Laccases for removal of recalcitrant and emerging pollutants. Biores Technol 101(7):2331–2350CrossRef
Zurück zum Zitat Mallick K, Bharati K, Banerji A, Shakil NA, Sethunathan N (1999) Bacterial degradation of chlorpyrifos in pure cultures and in soil. Bull Environ Contam Toxicol 62(1):48–54CrossRef Mallick K, Bharati K, Banerji A, Shakil NA, Sethunathan N (1999) Bacterial degradation of chlorpyrifos in pure cultures and in soil. Bull Environ Contam Toxicol 62(1):48–54CrossRef
Zurück zum Zitat Mukherjee I, Gopal M (1996) Degradation of chlorpyrifos by two soil fungi Aspergillus niger and Trichoderma viride. Toxicol Environ Chem 57(1–4):145–151CrossRef Mukherjee I, Gopal M (1996) Degradation of chlorpyrifos by two soil fungi Aspergillus niger and Trichoderma viride. Toxicol Environ Chem 57(1–4):145–151CrossRef
Zurück zum Zitat Munnecke DM (1977) Properties of an immobilized pesticide-hydrolyzing enzyme. Appl Environ Microbiol 33(3):503–507CrossRef Munnecke DM (1977) Properties of an immobilized pesticide-hydrolyzing enzyme. Appl Environ Microbiol 33(3):503–507CrossRef
Zurück zum Zitat Ovsejevi K, Manta C, Batista-Viera F (2013) Reversible covalent immobilization of enzymes via disulfide bonds. Immobilization of Enzymes and Cells, 3rd edn., pp 89–116 Ovsejevi K, Manta C, Batista-Viera F (2013) Reversible covalent immobilization of enzymes via disulfide bonds. Immobilization of Enzymes and Cells, 3rd edn., pp 89–116
Zurück zum Zitat Pimentel D (1995) Amounts of pesticides reaching target pests: environmental impacts and ethics. J Agric Environ Ethics 8(1):17–29CrossRef Pimentel D (1995) Amounts of pesticides reaching target pests: environmental impacts and ethics. J Agric Environ Ethics 8(1):17–29CrossRef
Zurück zum Zitat Pizzul L, Mdel PC, Stenstro¨m J (2009) Degradation of glyphosate and other pesticides by ligninolytic enzymes. Biodegradation 20(6):751–759 Pizzul L, Mdel PC, Stenstro¨m J (2009) Degradation of glyphosate and other pesticides by ligninolytic enzymes. Biodegradation 20(6):751–759
Zurück zum Zitat Pradeep V, Subbaiah UM (2015) Repeated batch and continuous degradation of chlorpyrifos by Pseudomonas putida. J Environ Sci Health B 50(5):346–360CrossRef Pradeep V, Subbaiah UM (2015) Repeated batch and continuous degradation of chlorpyrifos by Pseudomonas putida. J Environ Sci Health B 50(5):346–360CrossRef
Zurück zum Zitat Sadighi A, Faramarzi MA (2013) Congo red decolorization by immobilized laccase through chitosan nanoparticles on the glass beads. J Taiwan Inst Chem Eng 44(2):156–162CrossRef Sadighi A, Faramarzi MA (2013) Congo red decolorization by immobilized laccase through chitosan nanoparticles on the glass beads. J Taiwan Inst Chem Eng 44(2):156–162CrossRef
Zurück zum Zitat Sai L, Li X, Liu Y, Guo Q, Xie L, Yu G, Bo C, Zhang Z, Li L (2014) Effects of chlorpyrifos on reproductive toxicology of male rats. Environ Toxicol 29(9):1083–1088CrossRef Sai L, Li X, Liu Y, Guo Q, Xie L, Yu G, Bo C, Zhang Z, Li L (2014) Effects of chlorpyrifos on reproductive toxicology of male rats. Environ Toxicol 29(9):1083–1088CrossRef
Zurück zum Zitat Sassolas A, Blum LJ, Leca-Bouvier BD (2012) Immobilization strategies to develop enzymatic biosensors. Biotechnol Adv 30(3):489–511CrossRef Sassolas A, Blum LJ, Leca-Bouvier BD (2012) Immobilization strategies to develop enzymatic biosensors. Biotechnol Adv 30(3):489–511CrossRef
Zurück zum Zitat Schoevaart R, Wolbers MW, Golubovic M, Ottens M, Kieboom APG, van Rantwijk F, van der Wielen LAM, Sheldon RA (2004) Preparation, optimization and structures of cross-linked enzyme aggregates (CLEAs). Biotechnol Bioeng 87(6):754–762CrossRef Schoevaart R, Wolbers MW, Golubovic M, Ottens M, Kieboom APG, van Rantwijk F, van der Wielen LAM, Sheldon RA (2004) Preparation, optimization and structures of cross-linked enzyme aggregates (CLEAs). Biotechnol Bioeng 87(6):754–762CrossRef
Zurück zum Zitat Sharp AK, Kay G, Lilly MD (1969) The kinetics of β-galactosidase attached to porous cellulose sheets. Biotechnol Bioeng 11(3):363–380CrossRef Sharp AK, Kay G, Lilly MD (1969) The kinetics of β-galactosidase attached to porous cellulose sheets. Biotechnol Bioeng 11(3):363–380CrossRef
Zurück zum Zitat Singh BK, Walker A, Morgan JA, Wright DJ (2004) Biodegradation of chlorpyrifos by Enterobacter Strain B-14 and its use in bioremediation of contaminated soils. Appl Environ Microbiol 70(8):4855–4863CrossRef Singh BK, Walker A, Morgan JA, Wright DJ (2004) Biodegradation of chlorpyrifos by Enterobacter Strain B-14 and its use in bioremediation of contaminated soils. Appl Environ Microbiol 70(8):4855–4863CrossRef
Zurück zum Zitat Singh DP, Khattar JIS, Nadda J, Singh Y, Garg A, Kaur N, Gulati A (2011) Chlorpyrifos degradation by the Cyanobacterium synechocystis sp. strain PUPCCC 64. Environ Sci Pollut Res 18(8):1351–1359 Singh DP, Khattar JIS, Nadda J, Singh Y, Garg A, Kaur N, Gulati A (2011) Chlorpyrifos degradation by the Cyanobacterium synechocystis sp. strain PUPCCC 64. Environ Sci Pollut Res 18(8):1351–1359
Zurück zum Zitat Sogorb MA, Vilanova E, Carrera V (2004) Future applications of phosphotriesterases in the prophylaxis and treatment of organophosporus insecticide and nerve agent poisonings. Toxicol Lett 151(1):219–233CrossRef Sogorb MA, Vilanova E, Carrera V (2004) Future applications of phosphotriesterases in the prophylaxis and treatment of organophosporus insecticide and nerve agent poisonings. Toxicol Lett 151(1):219–233CrossRef
Zurück zum Zitat Stoilova I, Krastanov A, Stanchev V (2010) Properties of crude laccase from Trametes versicolor produced by solid-substrate fermentation. Adv Biosci Biotechnol 1:208–215CrossRef Stoilova I, Krastanov A, Stanchev V (2010) Properties of crude laccase from Trametes versicolor produced by solid-substrate fermentation. Adv Biosci Biotechnol 1:208–215CrossRef
Zurück zum Zitat Tewari L, Malviya P (2002) Biodegradation of catechol by fluorescent Pseudomonas for sustainable environment. J Sci Ind Res 61(1):70–74 Tewari L, Malviya P (2002) Biodegradation of catechol by fluorescent Pseudomonas for sustainable environment. J Sci Ind Res 61(1):70–74
Zurück zum Zitat Thiegs, B.J. (1966). Degradation of 14C Dursban in Soil; Dow Elanco: Indianapolis. Thiegs, B.J. (1966). Degradation of 14C Dursban in Soil; Dow Elanco: Indianapolis.
Zurück zum Zitat Thurston CF (1994) The structure and function of fungal laccases. Microbiology 140(1):19–26CrossRef Thurston CF (1994) The structure and function of fungal laccases. Microbiology 140(1):19–26CrossRef
Zurück zum Zitat Uygun DA, Öztürk N, Akgöl S, Denizli A (2012) Novel magnetic nanoparticles for the hydrolysis of starch with Bacillus licheniformis α-amylase. J Appl Polym Sci 123(5):2574–2581CrossRef Uygun DA, Öztürk N, Akgöl S, Denizli A (2012) Novel magnetic nanoparticles for the hydrolysis of starch with Bacillus licheniformis α-amylase. J Appl Polym Sci 123(5):2574–2581CrossRef
Zurück zum Zitat Vijayalakshmi P, Usha MS (2012) Degradation of chlorpyrifos by free cells and calcium-alginate immobilized cells of Pseudomonas putida. Adv Appl Sci Res 3(5):2796–2800 Vijayalakshmi P, Usha MS (2012) Degradation of chlorpyrifos by free cells and calcium-alginate immobilized cells of Pseudomonas putida. Adv Appl Sci Res 3(5):2796–2800
Zurück zum Zitat Vijverberg HPM, van der Zalm JM, van den Bercken J (1982) Similar mode of action of pyrethroids and DDT on sodium channel gating in myelinated nerves. Nature 295(5850):601–603CrossRef Vijverberg HPM, van der Zalm JM, van den Bercken J (1982) Similar mode of action of pyrethroids and DDT on sodium channel gating in myelinated nerves. Nature 295(5850):601–603CrossRef
Zurück zum Zitat Wang L, Jiang X, Yan D, Wu J, Bian Y, Wang F (2007) Behavior and fate of chlorpyrifos introduced into soil-crop systems by irrigation. Chemosphere 66(3):391–396CrossRef Wang L, Jiang X, Yan D, Wu J, Bian Y, Wang F (2007) Behavior and fate of chlorpyrifos introduced into soil-crop systems by irrigation. Chemosphere 66(3):391–396CrossRef
Zurück zum Zitat Wang N, Zhu L, Wang M, Wang D, Tang H (2010) Sono-enhanced degradation of dye pollutants with the use of H2O2 activated by Fe3O4 magnetic nanoparticles as peroxidase mimetic. Ultrason Sonochem 17(1):78–83CrossRef Wang N, Zhu L, Wang M, Wang D, Tang H (2010) Sono-enhanced degradation of dye pollutants with the use of H2O2 activated by Fe3O4 magnetic nanoparticles as peroxidase mimetic. Ultrason Sonochem 17(1):78–83CrossRef
Zurück zum Zitat Wang F, Hu Y, Guo C, Huang W, Liu CZ (2012) Enhanced phenol degradation in coking wastewater by immobilized laccase on magnetic mesoporous silica nanoparticles in a magnetically stabilized fluidized bed. Biores Technol 110:120–124CrossRef Wang F, Hu Y, Guo C, Huang W, Liu CZ (2012) Enhanced phenol degradation in coking wastewater by immobilized laccase on magnetic mesoporous silica nanoparticles in a magnetically stabilized fluidized bed. Biores Technol 110:120–124CrossRef
Zurück zum Zitat Wang H, Zhang W, Zhao J, Xu L, Zhou C, Chang L, Wang L (2013) Rapid decolorization of phenolic azo dyes by immobilized laccase with Fe3O4/SiO2 nanoparticles as support. Ind Eng Chem Res 52(12):4401–4407CrossRef Wang H, Zhang W, Zhao J, Xu L, Zhou C, Chang L, Wang L (2013) Rapid decolorization of phenolic azo dyes by immobilized laccase with Fe3O4/SiO2 nanoparticles as support. Ind Eng Chem Res 52(12):4401–4407CrossRef
Zurück zum Zitat Wang X, Yao MQ, Liu L, Cao Y, Bao J (2016) Degradation of chlorpyrifos in contaminated soil by immobilized laccase. J Serb Chem Soc 81(10):1215–1224CrossRef Wang X, Yao MQ, Liu L, Cao Y, Bao J (2016) Degradation of chlorpyrifos in contaminated soil by immobilized laccase. J Serb Chem Soc 81(10):1215–1224CrossRef
Zurück zum Zitat Xie H, Zhu L, Ma T, Wang J, Wang J, Su J, Shao B (2010) Immobilization of an enzyme from a Fusarium fungus WZ-I for chlorpyrifos degradation. J Environ Sci 22(12):1930–1935CrossRef Xie H, Zhu L, Ma T, Wang J, Wang J, Su J, Shao B (2010) Immobilization of an enzyme from a Fusarium fungus WZ-I for chlorpyrifos degradation. J Environ Sci 22(12):1930–1935CrossRef
Zurück zum Zitat Xu G, Li Y, Zheng W, Peng X, Li W, Yan Y (2007) Mineralization of chlorpyrifos by co-culture of Serratia and Trichosporon spp. Biotech Lett 29(10):1469–1473CrossRef Xu G, Li Y, Zheng W, Peng X, Li W, Yan Y (2007) Mineralization of chlorpyrifos by co-culture of Serratia and Trichosporon spp. Biotech Lett 29(10):1469–1473CrossRef
Zurück zum Zitat Xu G, Zheng W, Li Y, Wang S, Zhang J, Yan Y (2008) Biodegradation of chlorpyrifos and 3,5,6-trichloro-2-pyridinol by a newly isolated Paracoccus sp. strain TRP. Int Biodeterior Biodegrad 62(1):51–56 Xu G, Zheng W, Li Y, Wang S, Zhang J, Yan Y (2008) Biodegradation of chlorpyrifos and 3,5,6-trichloro-2-pyridinol by a newly isolated Paracoccus sp. strain TRP. Int Biodeterior Biodegrad 62(1):51–56
Zurück zum Zitat Yang L, Zhao YH, Zhang BX, Zhang X (2005) Isolation and characterization of a chlorpyrifos degrading bacteria and its bioremediation application in the soil. Acta Microbiol Sin 45(6):905–909 Yang L, Zhao YH, Zhang BX, Zhang X (2005) Isolation and characterization of a chlorpyrifos degrading bacteria and its bioremediation application in the soil. Acta Microbiol Sin 45(6):905–909
Zurück zum Zitat Yang C, Liu N, Guo X, Qiao C (2006) Cloning of mpd gene from a chlorpyrifos-degrading bacterium and use of this strain in bioremediation of contaminated soil. FEMS Microbiol Lett 265(1):118–125CrossRef Yang C, Liu N, Guo X, Qiao C (2006) Cloning of mpd gene from a chlorpyrifos-degrading bacterium and use of this strain in bioremediation of contaminated soil. FEMS Microbiol Lett 265(1):118–125CrossRef
Zurück zum Zitat Yang C, Zhao Q, Liu Z, Li Q, Qiao C, Mulchandani A, Chen W (2008) Cell surface display of functional macromolecule fusions on Escherichia coli for development of an auto fluorescent whole-cell biocatalyst. Environ Sci Technol 42:6105–6110CrossRef Yang C, Zhao Q, Liu Z, Li Q, Qiao C, Mulchandani A, Chen W (2008) Cell surface display of functional macromolecule fusions on Escherichia coli for development of an auto fluorescent whole-cell biocatalyst. Environ Sci Technol 42:6105–6110CrossRef
Zurück zum Zitat Zacharia JT (2011) Identity, physical and chemical properties of pesticides. In: Stoytcheva M (ed) Pesticides in the modern world—trends in pesticides analysis. Intech Publisher, Rijeka, pp 1–18 Zacharia JT (2011) Identity, physical and chemical properties of pesticides. In: Stoytcheva M (ed) Pesticides in the modern world—trends in pesticides analysis. Intech Publisher, Rijeka, pp 1–18
Zurück zum Zitat Zhao YC, Yi XY, Zhang M, Liu L, Ma WJ (2010) Fundamental study of degradation of dichlorodiphenyl trichloroethane in soil by laccase from white rot fungi. Int J Environ Sci Technol 7(2):359–366CrossRef Zhao YC, Yi XY, Zhang M, Liu L, Ma WJ (2010) Fundamental study of degradation of dichlorodiphenyl trichloroethane in soil by laccase from white rot fungi. Int J Environ Sci Technol 7(2):359–366CrossRef
Metadaten
Titel
Laccase Enzyme in Nanoparticle for Pesticide Degradation: A Special Emphasis on Chlorpyrifos Degradation
verfasst von
Anamika Das
Saloni Sachdeva
Vijay Jaswal
K. N. Yogalakshmi
Copyright-Jahr
2022
DOI
https://doi.org/10.1007/978-3-030-95542-7_17