Hammaini A (2003) Simultaneous uptake of metals by activated sludge. Miner Eng 16:723–729
Henne KL, Nakatsu CH, Thompson DK, Konopka AE (2009) High-level chromate resistance in
Arthrobacter sp. strain FB24 requires previously uncharacterized accessory genes. BMC
Microbiol 9:199
Hinojosa BM, Garcia-Ruiz R, Carreira JA (2010) Utilizing microbial community structure and
function to evaluate the health of heavy metal polluted soils. In: Sherameti I, Varma A (eds) Soil
heavy metals. Springer, Berlin/Heidelberg
Hirata K, Tsuji N, Miyamoto K (2005) Biosynthetic regulation of phytochelatins, heavy metalbinding peptides. J Biosci Bioeng 100(6):593–599
Hsieh PF, Lin HH, Lin TL, Wang JT (2010) CadC regulates cad and tdc operons in response to
gastrointestinal stresses and enhances intestinal colonization of Klebsiella pneumoniae. J Infect
Dis 202:52–64
Hu YH, Wang HL, Zhang M, Sun L (2009) Molecular analysis of the copper-responsive CopRSCD
of a pathogenic Pseudomonas fluorescens strain. J Microbiol 47:277–286
Huang C, Huang C, Morehart AL (1990) The removal of copper from dilute aqueous solutions by
Saccharomyces cerevisiae. Water Res 24:433–439
Huckle JW, Morby AP, Turner JS, Robinson NJ (1993) Isolation of a prokaryotic metallothionein
locus and analysis of transcriptional control by trace metal ions. Mol Microbiol 7:177–187
Huston WM, Jennings MP, McEwan AG (2002) The multi-copper oxidase of Pseudomonas
aeruginosa is a ferroxidase with a central role in iron acquisition. Mol Microbiol 45:1741–1750
Hynninen A, Touze T, Pitkänen L, Mengin-Lecreulx D, Virta M (2009) An efflux transporter PbrA
and a phosphatase PbrB cooperate in a lead-resistance mechanism in bacteria. Mol Microbiol
74:384–394
Inamuddin, Ahamed MI, Prasad R (2021) Microbial biosurfactants: preparation, properties and
applications. Springer Singapore. ISBN 978–981–15-6606-6. https://www.springer.com/gp/
book/9789811566066
Infante JC, De Arco RD, Angulo ME (2014) Removal of lead, mercury and nickel using the yeast
Saccharomyces cerevisiae. Revista MVZ Córdoba 19:4141–4149
Inouhe M (2005) Phytochelatins. Braz J Plant Physiol 17(1):650–678
Jain S, Bhatt A (2014) Molecular and in situ characterization of cadmium-resistant diversified
extremophilic strains of Pseudomonas for their bioremediation potential. Biotech 4:297–304
Jain AN, Udayashankara TH, Lokesh KS (2012) Review on bioremediation of heavy metals withmicrobial isolates and amendments on soil residue. Int J Sci Res 6:2319–7064
Jarosławiecka A, Piotrowska-Seget Z (2014) Lead resistance in microorganisms. Microbiology
160:12–25
Jiang ZB, Song HT, Gupta N, Ma LX, Wu ZB (2007) Cell surface display of functionally active
lipases from Yarrowia lipolytica in Pichia pastoris. Protein Expr Purif 56:35–39
Johnsen AR, Wick LY, Harms H (2005) Principles of microbial PAHdegradation in soil. Environ
Pollut 133:71–84
Juhnke S, Peitzsch N, Hübener N, Grobe C, Nies DH (2002) New genes involved in chromate
resistance in Ralstonia metallidurans strain CH34. Arch Microbiol 179:15–25
Kalyaeva ES, Kholodii GY, Bass IA, Gorlenko ZM, Yurieva OV, Nikiforov VG (2001) Tn5037, a
Tn21-like mercury resistance transposon from Thiobacillus ferrooxidans. Russ J Genet
37:972–975
Kamaludeen SPB, Arunkumar KR, Avudainayagam SA, Ramasamy K (2003) Bioremediation of
chromium contaminated environments. Indian J Exp Biol 41:972–985
Kanehisa M, Goto S (2000) KEGG: Kyoto encyclopedia of genes and genomes. Nucleic Acids Res
28:27–30
Kang SH, Singh S, Kim JY, Lee W, Mulchandani A, Chen W (2007) Bacteria metabolically
engineered for enhanced phytochelatin production and cadmium accumulation. Appl Environ
Microbiol 73:6317–6320
358
N. Srivastava
Henne KL, Nakatsu CH, Thompson DK, Konopka AE (2009) High-level chromate resistance in
Arthrobacter sp. strain FB24 requires previously uncharacterized accessory genes. BMC
Microbiol 9:199
Hinojosa BM, Garcia-Ruiz R, Carreira JA (2010) Utilizing microbial community structure and
function to evaluate the health of heavy metal polluted soils. In: Sherameti I, Varma A (eds) Soil
heavy metals. Springer, Berlin/Heidelberg
Hirata K, Tsuji N, Miyamoto K (2005) Biosynthetic regulation of phytochelatins, heavy metalbinding peptides. J Biosci Bioeng 100(6):593–599
Hsieh PF, Lin HH, Lin TL, Wang JT (2010) CadC regulates cad and tdc operons in response to
gastrointestinal stresses and enhances intestinal colonization of Klebsiella pneumoniae. J Infect
Dis 202:52–64
Hu YH, Wang HL, Zhang M, Sun L (2009) Molecular analysis of the copper-responsive CopRSCD
of a pathogenic Pseudomonas fluorescens strain. J Microbiol 47:277–286
Huang C, Huang C, Morehart AL (1990) The removal of copper from dilute aqueous solutions by
Saccharomyces cerevisiae. Water Res 24:433–439
Huckle JW, Morby AP, Turner JS, Robinson NJ (1993) Isolation of a prokaryotic metallothionein
locus and analysis of transcriptional control by trace metal ions. Mol Microbiol 7:177–187
Huston WM, Jennings MP, McEwan AG (2002) The multi-copper oxidase of Pseudomonas
aeruginosa is a ferroxidase with a central role in iron acquisition. Mol Microbiol 45:1741–1750
Hynninen A, Touze T, Pitkänen L, Mengin-Lecreulx D, Virta M (2009) An efflux transporter PbrA
and a phosphatase PbrB cooperate in a lead-resistance mechanism in bacteria. Mol Microbiol
74:384–394
Inamuddin, Ahamed MI, Prasad R (2021) Microbial biosurfactants: preparation, properties and
applications. Springer Singapore. ISBN 978–981–15-6606-6. https://www.springer.com/gp/
book/9789811566066
Infante JC, De Arco RD, Angulo ME (2014) Removal of lead, mercury and nickel using the yeast
Saccharomyces cerevisiae. Revista MVZ Córdoba 19:4141–4149
Inouhe M (2005) Phytochelatins. Braz J Plant Physiol 17(1):650–678
Jain S, Bhatt A (2014) Molecular and in situ characterization of cadmium-resistant diversified
extremophilic strains of Pseudomonas for their bioremediation potential. Biotech 4:297–304
Jain AN, Udayashankara TH, Lokesh KS (2012) Review on bioremediation of heavy metals withmicrobial isolates and amendments on soil residue. Int J Sci Res 6:2319–7064
Jarosławiecka A, Piotrowska-Seget Z (2014) Lead resistance in microorganisms. Microbiology
160:12–25
Jiang ZB, Song HT, Gupta N, Ma LX, Wu ZB (2007) Cell surface display of functionally active
lipases from Yarrowia lipolytica in Pichia pastoris. Protein Expr Purif 56:35–39
Johnsen AR, Wick LY, Harms H (2005) Principles of microbial PAHdegradation in soil. Environ
Pollut 133:71–84
Juhnke S, Peitzsch N, Hübener N, Grobe C, Nies DH (2002) New genes involved in chromate
resistance in Ralstonia metallidurans strain CH34. Arch Microbiol 179:15–25
Kalyaeva ES, Kholodii GY, Bass IA, Gorlenko ZM, Yurieva OV, Nikiforov VG (2001) Tn5037, a
Tn21-like mercury resistance transposon from Thiobacillus ferrooxidans. Russ J Genet
37:972–975
Kamaludeen SPB, Arunkumar KR, Avudainayagam SA, Ramasamy K (2003) Bioremediation of
chromium contaminated environments. Indian J Exp Biol 41:972–985
Kanehisa M, Goto S (2000) KEGG: Kyoto encyclopedia of genes and genomes. Nucleic Acids Res
28:27–30
Kang SH, Singh S, Kim JY, Lee W, Mulchandani A, Chen W (2007) Bacteria metabolically
engineered for enhanced phytochelatin production and cadmium accumulation. Appl Environ
Microbiol 73:6317–6320
358
N. Srivastava
