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Introduction Isolation, purification, characterization and immobilization of protease from Labeo rohita viscera 118 BIBLIOGRAPHY Abid, M. and Ahmed, M.S. (2009). Growth response of Labeo rohita fingerlings fed with different feeding regimes under intensive rearing, The Journal of Animal and Plant Sciences, 19(1):45-49. Adewolu, M.A., Akintola, S.L., Jimoh, A.A., Owodehinde, F.G., Whenu, O.O. and Fakoya, K.A. (2009). Environmental threats to the development of aquaculture in Lagos State, Nigeria, European Journal of Scientific Research, 34(3):337-347. Adinarayana, K., Bapi Raju, K.V.V.S.N. and Ellaiah, P. (2004). Investigations on alkaline protease production with B. subtilis PE-11 immobilized in calcium alginate gel beads, Process Biochemistry, 39: 1331–1339. Aehle, W. (2007). Enzymes in industry: production and application. (3 rd edn), Wiley-VCH, Weinheim, Germany, 136-137. Aftab, S., Ahmed, S., Saeed, S. and Rasool, S.A. (2006). Screening, isolation and characterization of alkaline protease producing bacteria from soil, Pakistan Journal of Biological Sciences, 9(11); 2122-2126. Ahmed, I., Zia, M.A. and Iqbal, H.M.N. (2011). Purification and kinetic parameters characterization of an alkaline protease produced from Bacillus subtilis through submerged fermentation technique, World Applied Sciences Journal, 12 (6): 751-757. Ahmed, S.A. (2008). Invertase production by Bacillus macerans immobilized on calcium alginate beads, Journal of Applied Sciences Research, 4(12): 1777-1781. Ahmed, S.A., Saleh, S.A. and Abdel-Fattah, A.F. (2007). Stabilization of Bacillus Licheniformis ATCC 21415 alkaline protease by immobilization and modification, Australian Journal of Basic and Applied Sciences, 1(3): 313-322.

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Introduction

Isolation, purification, characterization and immobilization of protease from Labeo rohita viscera

118

BBIIBBLLIIOOGGRRAAPPHHYY

Abid, M. and Ahmed, M.S. (2009). Growth response of Labeo rohita fingerlings

fed with different feeding regimes under intensive rearing, The Journal of

Animal and Plant Sciences, 19(1):45-49.

Adewolu, M.A., Akintola, S.L., Jimoh, A.A., Owodehinde, F.G., Whenu, O.O.

and Fakoya, K.A. (2009). Environmental threats to the development of

aquaculture in Lagos State, Nigeria, European Journal of Scientific

Research, 34(3):337-347.

Adinarayana, K., Bapi Raju, K.V.V.S.N. and Ellaiah, P. (2004). Investigations on

alkaline protease production with B. subtilis PE-11 immobilized in

calcium alginate gel beads, Process Biochemistry, 39: 1331–1339.

Aehle, W. (2007). Enzymes in industry: production and application. (3 rd edn),

Wiley-VCH, Weinheim, Germany, 136-137.

Aftab, S., Ahmed, S., Saeed, S. and Rasool, S.A. (2006). Screening, isolation

and characterization of alkaline protease producing bacteria from soil,

Pakistan Journal of Biological Sciences, 9(11); 2122-2126.

Ahmed, I., Zia, M.A. and Iqbal, H.M.N. (2011). Purification and kinetic

parameters characterization of an alkaline protease produced from

Bacillus subtilis through submerged fermentation technique, World

Applied Sciences Journal, 12 (6): 751-757.

Ahmed, S.A. (2008). Invertase production by Bacillus macerans immobilized on

calcium alginate beads, Journal of Applied Sciences Research, 4(12):

1777-1781.

Ahmed, S.A., Saleh, S.A. and Abdel-Fattah, A.F. (2007). Stabilization of

Bacillus Licheniformis ATCC 21415 alkaline protease by immobilization

and modification, Australian Journal of Basic and Applied Sciences, 1(3):

313-322.

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