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Badhe P, Joshi M, Adivarekar P (2016) Optimized production of extracellular proteases by Bacillus subtilis from degraded abattoir waste. Journal of Bioscience and Biotechnology 5: 29-36.

Barrett AJ, McDonald JK (1986) Nomenclature: Protease, proteinase and peptidase. Biochemical Journal 237: 935.

Bolan NS, Szogi AA, Chuasavathi T, Seshardi B, Rothrock MJ, Panneerselvam P (2010) Uses and management of poultry litter- A review. World Poultry Science Journal 66:673-698.

Chandrasekaran S, Kumaresan SSP, Manavalan M (2015) Production and Optimization of protease by filamentous fungus isolated from paddy soil in Thiruvarue district Tamilnadu. Journal of Applied Biology and Biotechnology 3: 066-069.

Costa JC, Barbosa SG, Alves MM, Sousa DZ (2012) Thermochemical pre- and biological co-tratments to improve hydrolysis and methane production from poultry litter. Bioresource Technology 111:141-147.

Dar RA, Phutela UG (2015) Optimization of thermostable laccase production by Thermoascus aurantiacus MTCC 375 using paddy straw as substrate and digested biogas slurry (DBS) as medium in solid state fermentation. Journal of biofuels bioenergy 1:192-207.

Enyard C (2008) Sigma's Non-specific Protease Activity Assay – Casein as a substrate. Journal of Visualized Experiments ( ) 1-2. DOI: 10.3791/899.

Gnanadoss J, Robert R, Jebapriya R (2011)  Production of protease from Aspergillus niger and Mucor mucedo under submerged and solid state fermentation. International Journal of Current Research 3:075-078.

Gohel SD, Singh SP (2012) Purification strategies, characteristics and thermodynamic analysis of a highly thermostable alkaline protease from a salt-tolerant alkaliphilic actinomycete, Nocardiopsis alba OK-5. Journal of Chromatography B. 889-890:61–68.

Kamath P, Subrahmanyam VM, Venkata JR, Vasantha PR (2010) Optimization of cultural conditions for protease production by fungal species. Indian Journal of Pharmaceutical Sciences  72:161-166.

Kelleher BP, Leahy JJ, Henihan AM, O’Dwyer TF, Sutton D, Leahy MJ (2002) Advances in poultry dropping disposal technology. Bioresource Technology 83:27–36.

Kumar S, Sharma NS, Saharan MR, Singh R (2005) Extracellular acid protease from Rhizopus oryzae: puri?cation and characterization. Process Biochemistry 40: 1701–1705.

Lakshmi JS, Madhavi J, Ammani K (2014) Protease production by Humicola grisea through SSF. Global Journal of Bio-Science and Biotechnology 3:230-235.

Martinez RH, Gutierrez-Sanchez G, Bergmann CW, Loera-Corral O, Rojo-Dominguez A, Huerta-Ochoa S, Regalado-Gonzalez C, Prado-Barragan LA (2011) Puri?cation and characterization of a thermodynamic stableserine protease from Aspergillus fumigates. Process Biochemistry 46: 2001–06.

Mehta VJ, Thumar JT, Singh SP (2006) Production of alkaline protease from alkalophillic actinomycetes. Bioresource Technology 97: 1650-54.

Melikoglu M, Lin CSK, Webb C (2013) Kinetic studies on the multi-enzyme solution produced via solid state fermentation of waste bread by Aspergillus awamori.  Biochemical Engineering Journal 80:76–82.

Murthy PS, Naidu MM (2010) Protease production by Aspergillus oryzae in soild state fermentation utilizing coffee by products. World Applied Science Journal 8:199-205.

Negi S, Banerjee R (2006) Optimisation of amylase and protease production from Aspergillus awamori in single bioreactor through EVOP factorial design technique. Food Technololgy and Biotechnology 442:57-61.

Oyeleke SB, Egwim EC, Auta SH (2010) Screening of Aspergillus flavus and Aspergillus fumigatus strains for extracellular protease enzyme production. Journal of Microbiology and Antimicrobials 2:83-87.

Raj A, Khess N , Pujari N , Bhattacharya S , Das A, Rajan SS (2012) Enhancement of protease production by Pseudomonas aeruginosa isolated from dairy effluent sludge and determination of its fibrinolytic potential. Asian Pacific Journal of Tropical Biomedicine 2:1845-1851.

Rao AG, Parkash SS, Joseph J, Reddy AR, Sarma PN (2011)
Multi stage high rate biomethane of poultry litter with self mixed anaerobic digester. Bioresource Technology 102:729-735.

Saqib AA, Hassan M, Khan NF, Baig S (2010) Thermostability of crude endo-glucanase from Aspergillus fumigatus grown under solid state fermentation (SSF) and submerged fermentation (SmF). Process Biochemistry 45:641–646.

Saran S, Isar J, Saxena RK (2007) A modified method for the detection of microbial proteases on agar plates using tannic acid.  Biochemical Biophysical Methods 70:697-699.

Siala R, Frikha F, Mhamdi S, Nasri M, Kamoun AS (2012) Optimization of acid protease production by aspergillus niger I1 on shrimp peptone using statistical experimental design. Scientific World Journal. doi:10.1100/2012/564932.

Singh A, Singh N, Bishnoi NR (2009) Production of cellulases by Aspergillus heteromorphus from wheat straw under submerged fermentation. International Journal of Civil and Environmental Engineering 1: 23-26.

Souza PM, Aliakbarian B, Filho EXF, Magalhaes PO, Junior AP, Converti  A, Perego P (2015) Kinetic and thermodynamic studies of a novel acid protease from Aspergillus foetidus. International Journal of Biological Macromolecules 81: 17-21.

Suganthi C,  Mageswari A, Karthikeyan S, Anbalagan M, Sivakumar A, Gothandam KM (2013) Screening and optimization of protease production from a halotolerant Bacillus licheniformis isolated from saltern sediments.  Journal of Genetic Engineering and Biotechnology 11: 47-52.

Sumantha A, Deepa P, Sandhya C, Szakacs G, Soccol CR, Pandey A (2006) Rice bran as a substrate for proteolytic enzyme production. Brazilian Archives of  Biology and Technology                  49: 843-51.

Tremacoldi CR, Watanabe NK, Carmona EC (2004) Production of extracellular acid proteases by Aspergillus clavatus. World Journal of Microbiology and Biotechnology 20:639-42.

Vielle C, Zeikus J (2001) Hyperthermophillic enzyme: Sources, uses and molecular mechanism for thermostability. Microbiology and Molecular Biology Reviews 65: 1-43.

Vishwanatha KS, Rao AG, Sigh SA (2010) Acid protease production by solid-state fermentation using Aspergillus oryzae MTCC 5341: optimization of process parameters.  Journal of Industrial Microbiology and Biotechnology 37: 129-138.


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