indigenous and introduced bacteria can respond to persistent organic pollutants-induced stress?
In: Persistent organic pollutants. IntechOpen, London
Khan S, Syed AT, Ahmad R, Rather TA, Ajaz M, Jan FA (2010) Radioactive waste management in
a hospital. Int J Health Sci 4(1):39
Khan I, Ali M, Aftab M, Shakir S, Qayyum S, Haleem KS, Tauseef I (2019) Mycoremediation: a
treatment for heavy metal-polluted soil using indigenous metallotolerant fungi. Environ Monit
Assess 191(10):622
Knopp R, Panak PJ, Wray LA, Renninger NS, Keasling JD, Nitsche H (2003) Laser spectroscopic
studies of interactions of UVI with bacterial phosphate species. Chem Eur J 9(12):2812–2818
Kumar R, Singh S, Singh OV (2007) Bioremediation of radionuclides: emerging technologies.
Omics 11(3):295–304
Kyne D, Bolin B (2016) Emerging environmental justice issues in nuclear power and radioactive
contamination. Int J Environ Res Public Health 13(7):700
Lee WE, Ojovan MI, Jantzen CM (2013) Radioactive waste management and contaminated site
clean-up: processes, technologies and international experience. Elsevier, Amsterdam
Lloyd JR (2003) Microbial reduction of metals and radionuclides. FEMS Microbiol Rev 27
(2–3):411–425
Lloyd JR, Renshaw JC (2005) Bioremediation of radioactive waste: radionuclide–microbe interactions in laboratory and field-scale studies. Curr Opin Biotechnol 16(3):254–260
Lloyd JR, Ridley J, Khizniak T, Lyalikova NN, Macaskie LE (1999) Reduction of technetium by
Desulfovibrio desulfuricans: biocatalyst characterization and use in a flowthrough bioreactor.
Appl Environ Microbiol 65(6):2691–2696
Lloyd JR, Yong P, Macaskie LE (2000) Biological reduction and removal of Np(V) by two
microorganisms. Environ Sci Technol 34(7):1297–1301. https://doi.org/10.1021/es990394y
Lopez-Fernandez M, Moll H, Merroun ML (2019) Reversible pH-dependent curium (III)
biosorption by the bentonite yeast isolate Rhodotorula mucilaginosa BII-R8. J Hazard Mater
370:156–163
Lovley DR, Phillips EJP (1994) Reduction of chromate by Desulfovibrio vulgaris and its c3
cytochrome. Appl Environ Microbiol 60(2):726–728
Lovley DR, Widman PK, Woodward JC, Phillips EJ (1993) Reduction of uranium by cytochrome
c3 of Desulfovibrio vulgaris. Appl Environ Microbiol 59(11):3572–3576
Lukšienė B, Druteikienė R, Pečiulytė D, Baltrūnas D, Remeikis V, Paškevičius A (2012) Effect of
microorganisms on the plutonium oxidation states. Appl Radiat Isot 70(3):442–449
Macaskie LE, Bonthrone KM, Yong P, Goddard DT (2000) Enzymically mediated bioprecipitation
of uranium by a Citrobacter sp.: a concerted role for exocellular lipopolysaccharide and
associated phosphatase in biomineral formation. Microbiology 146(8):1855–1867
Marra JE, Palmer RA (2011) Radioactive waste management. Waste 101–108. Elsevier
Marshall MJ, Dohnalkova AC, Kennedy DW, Plymale AE, Thomas SH, Löffler FE, Beliaev AS
(2009) Electron donor-dependent radionuclide reduction and nanoparticle formation by
Anaeromyxobacter dehalogenans strain 2CP-C. Environ Microbiol 11(2):534–543
McLaughlin TP, Monahan SP, Pruvost NL, Frolov VV, Ryazanov BG, Sviridov VI (2000) A
review of criticality accidents 2000 revision. Los Alamos National Lab, Los Alamos
Misra CS, Appukuttan D, Kantamreddi VSS, Rao AS, Apte SK (2012) Recombinant
D. radiodurans cells for bioremediation of heavy metals from acidic/neutral aqueous wastes.
Bioengineered 3(1):44–48
Mondani L, Benzerara K, Carrière M, Christen R, Mamindy-Pajany Y, Février L, Berthomieu C
(2011) Influence of uranium on bacterial communities: a comparison of natural uranium-rich
soils with controls. PLoS One 6(10):e25771
Mould RF (2000) Chernobyl record: the definitive history of the chernobyl catastrophe. CRC Press,
Boca Raton
Nazaroff WW (1992) Radon transport from soil to air. Rev Geophys 30(2):137–160
Nenot J-C (2009) Radiation accidents over the last 60 years. J Radiol Prot 29(3):301
350
U. K. Vandana et al.
In: Persistent organic pollutants. IntechOpen, London
Khan S, Syed AT, Ahmad R, Rather TA, Ajaz M, Jan FA (2010) Radioactive waste management in
a hospital. Int J Health Sci 4(1):39
Khan I, Ali M, Aftab M, Shakir S, Qayyum S, Haleem KS, Tauseef I (2019) Mycoremediation: a
treatment for heavy metal-polluted soil using indigenous metallotolerant fungi. Environ Monit
Assess 191(10):622
Knopp R, Panak PJ, Wray LA, Renninger NS, Keasling JD, Nitsche H (2003) Laser spectroscopic
studies of interactions of UVI with bacterial phosphate species. Chem Eur J 9(12):2812–2818
Kumar R, Singh S, Singh OV (2007) Bioremediation of radionuclides: emerging technologies.
Omics 11(3):295–304
Kyne D, Bolin B (2016) Emerging environmental justice issues in nuclear power and radioactive
contamination. Int J Environ Res Public Health 13(7):700
Lee WE, Ojovan MI, Jantzen CM (2013) Radioactive waste management and contaminated site
clean-up: processes, technologies and international experience. Elsevier, Amsterdam
Lloyd JR (2003) Microbial reduction of metals and radionuclides. FEMS Microbiol Rev 27
(2–3):411–425
Lloyd JR, Renshaw JC (2005) Bioremediation of radioactive waste: radionuclide–microbe interactions in laboratory and field-scale studies. Curr Opin Biotechnol 16(3):254–260
Lloyd JR, Ridley J, Khizniak T, Lyalikova NN, Macaskie LE (1999) Reduction of technetium by
Desulfovibrio desulfuricans: biocatalyst characterization and use in a flowthrough bioreactor.
Appl Environ Microbiol 65(6):2691–2696
Lloyd JR, Yong P, Macaskie LE (2000) Biological reduction and removal of Np(V) by two
microorganisms. Environ Sci Technol 34(7):1297–1301. https://doi.org/10.1021/es990394y
Lopez-Fernandez M, Moll H, Merroun ML (2019) Reversible pH-dependent curium (III)
biosorption by the bentonite yeast isolate Rhodotorula mucilaginosa BII-R8. J Hazard Mater
370:156–163
Lovley DR, Phillips EJP (1994) Reduction of chromate by Desulfovibrio vulgaris and its c3
cytochrome. Appl Environ Microbiol 60(2):726–728
Lovley DR, Widman PK, Woodward JC, Phillips EJ (1993) Reduction of uranium by cytochrome
c3 of Desulfovibrio vulgaris. Appl Environ Microbiol 59(11):3572–3576
Lukšienė B, Druteikienė R, Pečiulytė D, Baltrūnas D, Remeikis V, Paškevičius A (2012) Effect of
microorganisms on the plutonium oxidation states. Appl Radiat Isot 70(3):442–449
Macaskie LE, Bonthrone KM, Yong P, Goddard DT (2000) Enzymically mediated bioprecipitation
of uranium by a Citrobacter sp.: a concerted role for exocellular lipopolysaccharide and
associated phosphatase in biomineral formation. Microbiology 146(8):1855–1867
Marra JE, Palmer RA (2011) Radioactive waste management. Waste 101–108. Elsevier
Marshall MJ, Dohnalkova AC, Kennedy DW, Plymale AE, Thomas SH, Löffler FE, Beliaev AS
(2009) Electron donor-dependent radionuclide reduction and nanoparticle formation by
Anaeromyxobacter dehalogenans strain 2CP-C. Environ Microbiol 11(2):534–543
McLaughlin TP, Monahan SP, Pruvost NL, Frolov VV, Ryazanov BG, Sviridov VI (2000) A
review of criticality accidents 2000 revision. Los Alamos National Lab, Los Alamos
Misra CS, Appukuttan D, Kantamreddi VSS, Rao AS, Apte SK (2012) Recombinant
D. radiodurans cells for bioremediation of heavy metals from acidic/neutral aqueous wastes.
Bioengineered 3(1):44–48
Mondani L, Benzerara K, Carrière M, Christen R, Mamindy-Pajany Y, Février L, Berthomieu C
(2011) Influence of uranium on bacterial communities: a comparison of natural uranium-rich
soils with controls. PLoS One 6(10):e25771
Mould RF (2000) Chernobyl record: the definitive history of the chernobyl catastrophe. CRC Press,
Boca Raton
Nazaroff WW (1992) Radon transport from soil to air. Rev Geophys 30(2):137–160
Nenot J-C (2009) Radiation accidents over the last 60 years. J Radiol Prot 29(3):301
350
U. K. Vandana et al.
