Nishitani T, Shimada M, Kuroda K, Ueda M (2010) Molecular design of yeast cell surface for
adsorption and recovery of molybdenum, one of rare metals. Appl Microbiol Biotechnol
86:641–648
Norton L, Baskaran K, McKenzie T (2004) Biosorption of zinc from aqueous solutions using
biosolids. Adv Environ Res 8(3–4):629–635
Nourbakhsh M, Sag Y, Ozer D, Aksu Z, Kustal T, Caglar A (1994) A comparative study of various
biosorbents for removal of chromium (VI) ions from industrial waste waters. Process Biochem
29:1–5
Nriagu JO, Pacyna JM (1988) Quantitative assessment of worldwide contamination of air, water
and soils by trace metals. Nature 333:134–139
Nucifora G, Chu L, Misra TK, Silver S (1989) Cadmium resistance from Staphylococcus aureus
plasmid pI258 cadA gene results from a cadmium-efflux ATPase. Proc Natl Acad Sci U S A
86:3544–3548
Obenauer JC, Cantley LC, Yaffe MB (2003) Scansite 2.0: proteome-wide prediction of cell
signalling interactions using short sequencemotifs. Nucleic Acids Res 31:3635–3641
Pagnanelli F, Esposito A, Vegliò F (2002) Multi-metallic modelling for biosorption of binary
systems. Water Res 36:4095–4105
Pal A, Paul AK (2008) Microbial extracellular polymeric substances: central elements in heavy
metal bioremediation. Indian J Microbiol 48:49–64
Pan-Hou HS, Imura N (1981) Role of hydrogen sulfide in mercury resistance determined by
plasmid of Clostridium cochlearium T-2. Arch Microbiol 129(1):49–52
Pan-Hou H, Kiyono M, Omura T, Endo G (2002) Polyphosphate produced in recombinant
Escherichia coli confers mercury resistance. FEMS Microbiol Lett 207:159–164
Park JH, Bolan N, Meghraj M, Naidu N (2011) Concomitant rock phosphate dissolution and lead
immobilization by phosphate solubilising bacteria (Enterobacter sp.). J Environ Manag
92:1115–1120
Patel J, Zhang Q, Michael R, McKay L, Vincent R, Xu Z (2010) Genetic engineering of
Caulobacter crescentus for removal of cadmium from water. Appl Biochem Biotechnol
160:232–243
Pattus F, Abdallah M (2000) Siderophores and iron-transport in microorganisms: review. J Chin
Chem Soc 47:1–20
Paul D, Pandey G, Pandey J, Jain RK (2005) Accessing microbial diversity for bioremediation and
environmental restoration. Trends Biotechnol 23:135–142
Penninckx MA (2000) A short review on the role of glutathione in the response of yeasts to
nutritional, environment, and oxidative stresses. Enzyme Microbiol Technol 26:737–742
Penninckx MJ (2002) An overview on glutathione in Saccharomyces versus nonconventional
yeasts. FEMS Yeast Res 2:295–305
Pernthaler A, Pernthaler J, Amann R (2002) Fluorescence in situ hybridization and catalyzed
reporter deposition for the identification of marine bacteria. Appl Environ Microbiol
68:3094–3101
Pieper DH, Reineke W (2000) Engineering bacteria for bioremediation. Curr Opin Biotechnol
11:262–270
Plette AC, Benedetti MF, van Riemsdijk WH (1996) Competitive binding of protons, calcium,
cadmium, and zinc to isolated cell walls of a gram-positive soil bacterium. Environ Sci Technol
30(6):1902–1910
Prasad R, Aranda E (2018) Approaches in bioremediation: the new Era of environmental microbiology and nanobiotechnology. Springer International Publishing (978–3–030-02369-0). https://
www.springer.com/gp/book/9783030023683
Preveral S, Ansoborlo E, Mari S, Vavasseur A, Forestier C (2006) Metal(loid)s and radionuclides
cytotoxicity in Saccharomyces cerevisiae. Role of YCF1, glutathione and effect of buthionine
sulfoximine. Biochimie 88(11):1651–1663
362
N. Srivastava
adsorption and recovery of molybdenum, one of rare metals. Appl Microbiol Biotechnol
86:641–648
Norton L, Baskaran K, McKenzie T (2004) Biosorption of zinc from aqueous solutions using
biosolids. Adv Environ Res 8(3–4):629–635
Nourbakhsh M, Sag Y, Ozer D, Aksu Z, Kustal T, Caglar A (1994) A comparative study of various
biosorbents for removal of chromium (VI) ions from industrial waste waters. Process Biochem
29:1–5
Nriagu JO, Pacyna JM (1988) Quantitative assessment of worldwide contamination of air, water
and soils by trace metals. Nature 333:134–139
Nucifora G, Chu L, Misra TK, Silver S (1989) Cadmium resistance from Staphylococcus aureus
plasmid pI258 cadA gene results from a cadmium-efflux ATPase. Proc Natl Acad Sci U S A
86:3544–3548
Obenauer JC, Cantley LC, Yaffe MB (2003) Scansite 2.0: proteome-wide prediction of cell
signalling interactions using short sequencemotifs. Nucleic Acids Res 31:3635–3641
Pagnanelli F, Esposito A, Vegliò F (2002) Multi-metallic modelling for biosorption of binary
systems. Water Res 36:4095–4105
Pal A, Paul AK (2008) Microbial extracellular polymeric substances: central elements in heavy
metal bioremediation. Indian J Microbiol 48:49–64
Pan-Hou HS, Imura N (1981) Role of hydrogen sulfide in mercury resistance determined by
plasmid of Clostridium cochlearium T-2. Arch Microbiol 129(1):49–52
Pan-Hou H, Kiyono M, Omura T, Endo G (2002) Polyphosphate produced in recombinant
Escherichia coli confers mercury resistance. FEMS Microbiol Lett 207:159–164
Park JH, Bolan N, Meghraj M, Naidu N (2011) Concomitant rock phosphate dissolution and lead
immobilization by phosphate solubilising bacteria (Enterobacter sp.). J Environ Manag
92:1115–1120
Patel J, Zhang Q, Michael R, McKay L, Vincent R, Xu Z (2010) Genetic engineering of
Caulobacter crescentus for removal of cadmium from water. Appl Biochem Biotechnol
160:232–243
Pattus F, Abdallah M (2000) Siderophores and iron-transport in microorganisms: review. J Chin
Chem Soc 47:1–20
Paul D, Pandey G, Pandey J, Jain RK (2005) Accessing microbial diversity for bioremediation and
environmental restoration. Trends Biotechnol 23:135–142
Penninckx MA (2000) A short review on the role of glutathione in the response of yeasts to
nutritional, environment, and oxidative stresses. Enzyme Microbiol Technol 26:737–742
Penninckx MJ (2002) An overview on glutathione in Saccharomyces versus nonconventional
yeasts. FEMS Yeast Res 2:295–305
Pernthaler A, Pernthaler J, Amann R (2002) Fluorescence in situ hybridization and catalyzed
reporter deposition for the identification of marine bacteria. Appl Environ Microbiol
68:3094–3101
Pieper DH, Reineke W (2000) Engineering bacteria for bioremediation. Curr Opin Biotechnol
11:262–270
Plette AC, Benedetti MF, van Riemsdijk WH (1996) Competitive binding of protons, calcium,
cadmium, and zinc to isolated cell walls of a gram-positive soil bacterium. Environ Sci Technol
30(6):1902–1910
Prasad R, Aranda E (2018) Approaches in bioremediation: the new Era of environmental microbiology and nanobiotechnology. Springer International Publishing (978–3–030-02369-0). https://
www.springer.com/gp/book/9783030023683
Preveral S, Ansoborlo E, Mari S, Vavasseur A, Forestier C (2006) Metal(loid)s and radionuclides
cytotoxicity in Saccharomyces cerevisiae. Role of YCF1, glutathione and effect of buthionine
sulfoximine. Biochimie 88(11):1651–1663
362
N. Srivastava
