93
Hamzah A, Phan CW, Abu Bakar NF, Wong KK (2013) Biodegradation of crude oil by constructed bacterial consortia and the constituent single bacteria isolated from Malaysia. Biorem
J 17(1):1–10
Harman GE, Obregon MA, Samuels GJ, Loreto M (2010) Changing models for commercialization and implementation of biocontrol in the developing and the developed world. Plant Dis
94:928–939
Hart PJ, Pfluger HD, Monzingo AF, Hollis T, Robertus JD (1995) There fined crystal structure of
an endochitinase from Hordeum vulgare L. seeds at 1±8A/resolution. J Mol Biol 248:402–413
Henis Y, Chet I (1975) Microbial control of plant pathogens. Adv Appl Microbiol 19:85–111
Henrissat B, Bairoch A (1993) New families in the classification of glycosyl hydrolases based on
amino acid sequence similarities. Bio Chem J 293:781–788
Hofrichter M, Schneibner K, Schneegab I, Fritzche W (1998) Enzymatic combustion of aromatic
and aliphatic compounds by manganese peroxidase from Nematoloma frowardii. Appl Environ
Microbiol 64(2):399–404
Hofrichter M, Ullrich R, Pecyna MJ, Liers C, Lundell T (2010) New and classic families of
secreted fungal heme peroxidises. Appl Microbiol Biotechnol 87(3):871–897
Huang J, Liu C, Xiao H, Wang J, Jiang D, Gu E (2007) Zinc tetraaminophthalocyanine-Fe 3 O 4
nanoparticle composite for laccase immobilization. Int J Nanomedicine 2(4):775–784
Huber P, Carre B (2012) Decolorization of process waters in deinking mills and similar applications: a review. Bioresources 7(1):1366–1382
Ihrmark K, Asmail N, Ubhayasekera W, Melin P, Stenlid J, Karlsson M (2010) Comparative
molecular evolution of Trichoderma chitinases in response to mycoparasitic interactions. Evol
Bioinforma 6:1–26
Inbar J, Chet I (1991) Evidence that chitinase produced by Aeromonas caviae is involved in
the biological control of soil-borne plant pathogens by this bacterium. Soil Biol Biochem
23:973–978
Iseli B, Armand S, Boller T, Neuhaus JM, Henrissat B (1996) Plant chitinases use two different
hydrolytic mechanisms. FEBS Lett 382:186–188
Jain RK, Kapur M, Labana S, Lal B, Sarma PM, Bhattacharya D, Thakur IS (2005) Microbial
diversity: application of micro-organisms for the biodegradation of xenobiotics. Curr Sci
89(1):101–112
Jankiewicz U, Swiontek Brzezinska M, Saks E (2012) Identification and characterization of a
chitinase of Stenotrophomonas maltophilia, a bacterium that is antagonistic towards fungal
phytopathogens. J Biosci Bioeng 113(1):30–35
Ji Y, Mao G, Wang Y, Bartlam M (2013) Structural insights into diversity and n-alkane biodegradation mechanisms of alkane hydroxylases. Front Microbiol 4:58. doi:10.3389/fmicb.2013.00058
Jimenez-Juarez N, Roman-Miranda R, Baeza A, Sanchez-Amal A, Vazquez-Duhalt R, Valderrama
B (2005) Alkali and halide-resistant catalysis by the multipotent oxidase from Marinomonas
mediterranea. J Biotechnol 117(1):73–82
Jin S, Makris TM, Bryson TA, Sligar SG, Dawson JH (2003) Epoxidation of olefins by hydroperoxoferric cytochrome P450. J Am Chem Soc 125(12):3406–3407
Job J, Sukumaran RK, Jayachandran K (2010) Production of highly glucose tolerant beta glucosidase by Paecilomyces variotii MG3; optimization of fermentation conditions using PlackettBurman and Box-Behnken experimental designs. World J Microbiol Biotechnol 26:1385–1391
Jung WJ, An KN, Jin YL, Park RD, Lim KT, Kim KY, Kim TH (2003) Biological control of
damping off caused by Rhizoctonia solani using chitinase producing Paenibacillus illinoisensis
KJA-424. Soil Biol Biochem 35:1261–1264
Kamensky M, Ovadis M, Chet I, Chernin L (2003) Soil-borne strain IC14 of Serratia plymuthica
with multiple mechanisms of antifungal activity provides biocontrol of Botrytis cinerea and
Sclerotinia sclerotiorum diseases. Soil Biol Biochem 35:323–331
3 Enzymes for Bioremediation and Biocontrol
Hamzah A, Phan CW, Abu Bakar NF, Wong KK (2013) Biodegradation of crude oil by constructed bacterial consortia and the constituent single bacteria isolated from Malaysia. Biorem
J 17(1):1–10
Harman GE, Obregon MA, Samuels GJ, Loreto M (2010) Changing models for commercialization and implementation of biocontrol in the developing and the developed world. Plant Dis
94:928–939
Hart PJ, Pfluger HD, Monzingo AF, Hollis T, Robertus JD (1995) There fined crystal structure of
an endochitinase from Hordeum vulgare L. seeds at 1±8A/resolution. J Mol Biol 248:402–413
Henis Y, Chet I (1975) Microbial control of plant pathogens. Adv Appl Microbiol 19:85–111
Henrissat B, Bairoch A (1993) New families in the classification of glycosyl hydrolases based on
amino acid sequence similarities. Bio Chem J 293:781–788
Hofrichter M, Schneibner K, Schneegab I, Fritzche W (1998) Enzymatic combustion of aromatic
and aliphatic compounds by manganese peroxidase from Nematoloma frowardii. Appl Environ
Microbiol 64(2):399–404
Hofrichter M, Ullrich R, Pecyna MJ, Liers C, Lundell T (2010) New and classic families of
secreted fungal heme peroxidises. Appl Microbiol Biotechnol 87(3):871–897
Huang J, Liu C, Xiao H, Wang J, Jiang D, Gu E (2007) Zinc tetraaminophthalocyanine-Fe 3 O 4
nanoparticle composite for laccase immobilization. Int J Nanomedicine 2(4):775–784
Huber P, Carre B (2012) Decolorization of process waters in deinking mills and similar applications: a review. Bioresources 7(1):1366–1382
Ihrmark K, Asmail N, Ubhayasekera W, Melin P, Stenlid J, Karlsson M (2010) Comparative
molecular evolution of Trichoderma chitinases in response to mycoparasitic interactions. Evol
Bioinforma 6:1–26
Inbar J, Chet I (1991) Evidence that chitinase produced by Aeromonas caviae is involved in
the biological control of soil-borne plant pathogens by this bacterium. Soil Biol Biochem
23:973–978
Iseli B, Armand S, Boller T, Neuhaus JM, Henrissat B (1996) Plant chitinases use two different
hydrolytic mechanisms. FEBS Lett 382:186–188
Jain RK, Kapur M, Labana S, Lal B, Sarma PM, Bhattacharya D, Thakur IS (2005) Microbial
diversity: application of micro-organisms for the biodegradation of xenobiotics. Curr Sci
89(1):101–112
Jankiewicz U, Swiontek Brzezinska M, Saks E (2012) Identification and characterization of a
chitinase of Stenotrophomonas maltophilia, a bacterium that is antagonistic towards fungal
phytopathogens. J Biosci Bioeng 113(1):30–35
Ji Y, Mao G, Wang Y, Bartlam M (2013) Structural insights into diversity and n-alkane biodegradation mechanisms of alkane hydroxylases. Front Microbiol 4:58. doi:10.3389/fmicb.2013.00058
Jimenez-Juarez N, Roman-Miranda R, Baeza A, Sanchez-Amal A, Vazquez-Duhalt R, Valderrama
B (2005) Alkali and halide-resistant catalysis by the multipotent oxidase from Marinomonas
mediterranea. J Biotechnol 117(1):73–82
Jin S, Makris TM, Bryson TA, Sligar SG, Dawson JH (2003) Epoxidation of olefins by hydroperoxoferric cytochrome P450. J Am Chem Soc 125(12):3406–3407
Job J, Sukumaran RK, Jayachandran K (2010) Production of highly glucose tolerant beta glucosidase by Paecilomyces variotii MG3; optimization of fermentation conditions using PlackettBurman and Box-Behnken experimental designs. World J Microbiol Biotechnol 26:1385–1391
Jung WJ, An KN, Jin YL, Park RD, Lim KT, Kim KY, Kim TH (2003) Biological control of
damping off caused by Rhizoctonia solani using chitinase producing Paenibacillus illinoisensis
KJA-424. Soil Biol Biochem 35:1261–1264
Kamensky M, Ovadis M, Chet I, Chernin L (2003) Soil-borne strain IC14 of Serratia plymuthica
with multiple mechanisms of antifungal activity provides biocontrol of Botrytis cinerea and
Sclerotinia sclerotiorum diseases. Soil Biol Biochem 35:323–331
3 Enzymes for Bioremediation and Biocontrol
