Borgi MA, Boudebbouze S, Aghajari N, Szukala F, Pons N, Maguin E, …, Rhimi M. 2014. The attractive recombinant phytase from Bacillus licheniformis: biochemical and molecular characterization. Appl Microbiol Biotechnol 98(13): 5937-5947.
Chen A, Liu X, Cui C, Yang C, Wang Y, Bu X, …, Yang Y. 2019. An evaluation of phytase for Channel catfish (Ictalurus punctatus) fed all plantāprotein diet: Growth performance, nutrient utilization and P equivalency value. Aqua Nut 25(1): 215-224.
Choi TY, Dooley KJ, Rungtusanatham M. 2001. Supply networks and complex adaptive systems: control versus emergence. J Oper Man 19(3): 351-366.
Dev SS, Nisha EA, Venu A. 2016. Biochemical and molecular characterization of efficient phytase producing bacterial isolates from soil samples. Int J Curr Microbiol Applied Sci 5(5): 218-226.
Gupta RK, Gangoliya SS, Singh NK. 2015. Reduction of phytic acid and enhancement of bioavailable micronutrients in food grains.
J Food Sci Technol 52(2): 676-684.
Haefner S, Knietsch A, Scholten E, Braun J, Lohscheidt M, Zelder O. 2005. Biotechnological production and applications of phytases. Appl Microbiol Biotechnol 68(5): 588-597.
Haefner S, Knietsch A, Scholten E, Braun J, Lohscheidt M, Zelder O. 2005. Biotechnological production and applications of phytases.
Appl Microb Biotechnol 68(5): 588-597.
Hosseinkhani H, Hosseinkhani M. 2009. Biodegradable polymer-metal complexes for gene and drug delivery. Curr Drug Safety 4(1): 79-83.
Koinetzny U, Greiner R. 2004. Bacterial phytase: potential application, in vivo function and regulation of its synthesis. Brazilian J Microbiol 35: 12-18.
Kumar Singh N, Kumar Joshi D, Kishor Gupta R. 2013. Isolation of phytase producing bacteria and optimization of phytase production parameters. Jundishapur J Microbiol 6(5): 1-6.
Mittal A. Singh G. Goyal V. Yadav A. Aneja KR. Gautam SK. Aggarwal NK. 2011. Isolation and biochemical characterization of acido-thermophilic extracellular phytase producing bacterial strain for potential application in poultry feed. Jundishapur J Microbiol 4(4): 273- 282.
Naseri F, Bahador N, Baserisalehi M, Kargar M. 2015. Isolating tricalcium phosphate solubilizing bacteria from wheat and oat soil in Marvdasht. J Microb World 8(22): 38-46.
Nazemi A, Gholamian S, Miri Nargesi M. 2013. Isolation and molecular identification of Bacillus species that produce extracellular L asparaginase, an anti-cancer enzyme, from soils. New Cell Mol Biotech J 3(11): 9-13.
Parhamfar M, Abtahi H, Parhamfar M. 2017. Optimization of culture conditions for the production of phytase enzyme by Bacillus subtilis soil isolates. J Microb World 9(4): 315-325.
Raghothama KG, Karthikeyan AS. 2005. Phosphate acquisition. Plant Soil 274(1): 37-49.
Ranjan P, Das MP, Kumar MS, Anbarasi P, Sindhu S, Sagadevan E, …, Arumugam P. 2013. Green synthesis and characterization of silver nanoparticles from Nigella sativa and its application against UTI causing bacteria. J Acad Ind Res 2(1): 45-49.
Rodriguez H, Fraga R. 1999. Phosphate solubilizing bacteria and their role in plant growth promotion. Biotechnol Adv 17: 319-339.
Sarikhani MR, Chalabianlu N, Alavikia SS. 2016. Distribution of phosphate solubilizing bacteria and soil phosphate activity in different land uses. J Water Soil 29(6): 1662-1673.
Shieh TR, Ware JH. 1968. Survey of microorganisms for the production of extracellular phytase. Appl Microbiol 16(9): 1348-1351.
Teimouri M, Korori SAA, Matinizadeh M, Khoshnevis M. 2004. Isolation and identification of phosphate solubilizing bacteria from Vaz forest soil. Pajouh Sazand 17(4): 57-64.
Teimouri M, Sadegzadeh Hallaj MH, Alizadeh T, Matinizadeh M. 2020. The effect of phosphate solubilizing bacteria on growth and nutritional status of oak seedlings. J Plant Res 33(3): 689-704.
Whitelaw MA. 2000. Growth promotion of plants inoculated with phosphate-solubilizing fungi. In: Whitelaw MA. Adv Agron 69: 99-151.