Rudakiya DM, Pawar K (2014) Bioremediation potential of’ Comamonas acidovorans MTCC 3364
for the removal of sulfonated di-azo dye Reactive Black B. IJAEB 7(Special issue):525
Rudakiya DM, Pawar K (2017) Bactericidal potential of silver nanoparticles synthesized using cellfree extract of Comamonas acidovorans: in vitro and in silico approaches. 3 Biotech 7(2):92
Rudakiya DM, Iyer V, Shah D, Gupte A, Nath K (2018) Biosorption potential of phanerochaete
chrysosporium for arsenic, cadmium, and chromium removal from aqueous solutions. Global
Chall 2(12):1800064
Rudakiya DM, Tripathi A, Gupte S, Gupte A (2019) Fungal bioremediation: a step towards cleaner
environment. In: Advancing frontiers in mycology & mycotechnology. Springer, Singapore, pp
229–249
Rudakiya DM, Patel DH, Gupte A (2020) Exploiting the potential of metal and solvent tolerant
laccase from Tricholoma giganteum AGDR1 for the removal of pesticides. Int J Biol Macromol
144:586–595
Ruiz-Duenas FJ, Lundell T, Floudas D, Nagy LG et al (2013) Lignin-degrading peroxidases in
Polyporales: an evolutionary survey based on 10 sequenced genomes. Mycologia
105:1428–1444
Satyanarayana T, Deshmukh SK, Deshpande MV (eds) (2019) Advancing frontiers in mycology &
mycotechnology: basic and applied aspects of fungi. Springer Nature, Cham
Schwarze FWMR (2004) Forest pathology: heart rot and wood decay. In: Burley J, Evans J,
Youngquist J (eds) Encylopedia of forest sciences, vol 4. Elsevier, Amsterdam, pp 808–816
Schwarze FW (2008) Wood decay under the microscope. Fung Biol Rev 21:133–170
Schwarze FWMR, Fink S, Deflorio G (2003) Resistance of parenchyma cells in wood to degradation by brown rot fungi. Mycol Prog 2:267–274
Shah D, Rudakiya DM, Iyer V, Gupte A (2018) Simultaneous removal of hazardous contaminants
using polyvinyl alcohol coated Phanerochaete chrysosporium. Int J Agric Environ Biotechnol
11(2):235–241
Shallom D, Shoham Y (2003) Microbial hemicellulases. Curr Opin Microbiol 6:219–228
Shankar S, Nill S (2015) Effect of metal ions and redox mediators on decolorization of synthetic
dyes by crude laccase from a novel white rot fungus Peniophora sp. (NFCCI-2131). Appl
Biochem Biotechnol 175:635–647
Sutherland I (2002) A sticky business. Microbial polysaccharides: current products and future trend.
Microbiol Today 29:70–71
Tanaka H, Itakura S, Enoki A (1999) Hydroxyl radical generation and phenol oxidase activity in
wood degradation by the white-rot basidiomycete Irpexlacteus. Mater Org 33:91–105
Taylor CM, Roberts IS (2005) Capsular polysaccharides and their role in virulence. In: Russell W,
Herwald H (eds) Concepts in bacterial virulence. Contributions to microbiology. Karger, Basel
Wan C, Li Y (2012) Fungal pretreatment of lignocellulosic biomass. Biotechnol Adv
30:1447–1457
202
D. M. Rudakiya et al.
for the removal of sulfonated di-azo dye Reactive Black B. IJAEB 7(Special issue):525
Rudakiya DM, Pawar K (2017) Bactericidal potential of silver nanoparticles synthesized using cellfree extract of Comamonas acidovorans: in vitro and in silico approaches. 3 Biotech 7(2):92
Rudakiya DM, Iyer V, Shah D, Gupte A, Nath K (2018) Biosorption potential of phanerochaete
chrysosporium for arsenic, cadmium, and chromium removal from aqueous solutions. Global
Chall 2(12):1800064
Rudakiya DM, Tripathi A, Gupte S, Gupte A (2019) Fungal bioremediation: a step towards cleaner
environment. In: Advancing frontiers in mycology & mycotechnology. Springer, Singapore, pp
229–249
Rudakiya DM, Patel DH, Gupte A (2020) Exploiting the potential of metal and solvent tolerant
laccase from Tricholoma giganteum AGDR1 for the removal of pesticides. Int J Biol Macromol
144:586–595
Ruiz-Duenas FJ, Lundell T, Floudas D, Nagy LG et al (2013) Lignin-degrading peroxidases in
Polyporales: an evolutionary survey based on 10 sequenced genomes. Mycologia
105:1428–1444
Satyanarayana T, Deshmukh SK, Deshpande MV (eds) (2019) Advancing frontiers in mycology &
mycotechnology: basic and applied aspects of fungi. Springer Nature, Cham
Schwarze FWMR (2004) Forest pathology: heart rot and wood decay. In: Burley J, Evans J,
Youngquist J (eds) Encylopedia of forest sciences, vol 4. Elsevier, Amsterdam, pp 808–816
Schwarze FW (2008) Wood decay under the microscope. Fung Biol Rev 21:133–170
Schwarze FWMR, Fink S, Deflorio G (2003) Resistance of parenchyma cells in wood to degradation by brown rot fungi. Mycol Prog 2:267–274
Shah D, Rudakiya DM, Iyer V, Gupte A (2018) Simultaneous removal of hazardous contaminants
using polyvinyl alcohol coated Phanerochaete chrysosporium. Int J Agric Environ Biotechnol
11(2):235–241
Shallom D, Shoham Y (2003) Microbial hemicellulases. Curr Opin Microbiol 6:219–228
Shankar S, Nill S (2015) Effect of metal ions and redox mediators on decolorization of synthetic
dyes by crude laccase from a novel white rot fungus Peniophora sp. (NFCCI-2131). Appl
Biochem Biotechnol 175:635–647
Sutherland I (2002) A sticky business. Microbial polysaccharides: current products and future trend.
Microbiol Today 29:70–71
Tanaka H, Itakura S, Enoki A (1999) Hydroxyl radical generation and phenol oxidase activity in
wood degradation by the white-rot basidiomycete Irpexlacteus. Mater Org 33:91–105
Taylor CM, Roberts IS (2005) Capsular polysaccharides and their role in virulence. In: Russell W,
Herwald H (eds) Concepts in bacterial virulence. Contributions to microbiology. Karger, Basel
Wan C, Li Y (2012) Fungal pretreatment of lignocellulosic biomass. Biotechnol Adv
30:1447–1457
202
D. M. Rudakiya et al.
