690
Views
26
CrossRef citations to date
0
Altmetric
Original Articles

Aspergillus Niger Phytase: Purification and Characterization

, , &
Pages 98-105 | Published online: 15 Apr 2014

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (5)

Ashwani Kumar, Ashira Chanderman, Melvin Makolomakwa, Kugen Perumal & Suren Singh. (2016) Microbial production of phytases for combating environmental phosphate pollution and other diverse applications. Critical Reviews in Environmental Science and Technology 46:6, pages 556-591.
Read now
Muhammad Azeem, Adnan Riaz, Arshad Nawaz Chaudhary, Rifat Hayat, Qaiser Hussain, Muhammad Ibrahim Tahir & Muhammad Imran. (2015) Microbial phytase activity and their role in organic P mineralization. Archives of Agronomy and Soil Science 61:6, pages 751-766.
Read now
Derya Berikten & Merih Kivanc. (2014) OPTIMIZATION OF SOLID-STATE FERMENTATION FOR PHYTASE PRODUCTION BY Thermomyces lanuginosus USING RESPONSE SURFACE METHODOLOGY. Preparative Biochemistry & Biotechnology 44:8, pages 834-848.
Read now
Gunashree B. Shivanna & Venkateswaran Govindarajulu. (2009) Screening of asporogenic mutants of phytase-producing Aspergillusniger CFR 335 strain. Microbial Ecology in Health and Disease 21:1, pages 57-63.
Read now

Articles from other publishers (21)

David Morakinyo Sanni, Monsurat Bukola Jimoh, Olusola Tosin Lawal & Samuel Olufemi Bamidele. (2023) Purification and biochemical characterization of phytase from Bacillus cereus isolated from gastrointestinal tract of African giant snail (Achatina fulica). International Microbiology 26:4, pages 961-972.
Crossref
Shunmugiah Mahendran, Subbiah Sankaralingam, Pandiaraj Maheswari, Ramsingh Raja Dhivya, Durairaj Kathiresan, Santhanakrishnan Karthikeyan, Subramanian Sivasangari Ramya, Parthasarathy Seethapathy, Balasundaram Harinathan & Selvam Palpperumal. (2022) Production, characterization, and feed supplement applications of phytase enzyme from Aspergillus tubingensis isolated from Western Ghats soil. Biomass Conversion and Biorefinery.
Crossref
Yeonsoo Park, Mina Solhtalab, Wiriya Thongsomboon & Ludmilla Aristilde. (2022) Strategies of organic phosphorus recycling by soil bacteria: acquisition, metabolism, and regulation. Environmental Microbiology Reports 14:1, pages 3-24.
Crossref
Mina Solhtalab, Annaleise R. Klein & Ludmilla Aristilde. (2020) Hierarchical Reactivity of Enzyme-Mediated Phosphorus Recycling from Organic Mixtures by Aspergillus niger Phytase . Journal of Agricultural and Food Chemistry 69:7, pages 2295-2305.
Crossref
Parvinder Kaur, Ashima Vohra & T. Satyanarayana. 2021. Progress in Mycology. Progress in Mycology 73 109 .
Abhishake Saxena, Meena Verma, Bijender Singh, Punesh Sangwan, Ajar Nath Yadav, Harcharan Singh Dhaliwal & Vinod Kumar. (2019) Characteristics of an Acidic Phytase from Aspergillus aculeatus APF1 for Dephytinization of Biofortified Wheat Genotypes. Applied Biochemistry and Biotechnology 191:2, pages 679-694.
Crossref
María Marta Caffaro, Karina Beatriz Balestrasse & Gerardo Rubio. (2020) Adsorption to soils and biochemical characterization of commercial phytases. SOIL 6:1, pages 153-162.
Crossref
Kritsana Jatuwong, Nakarin Suwannarach, Jaturong Kumla, Watsana Penkhrue, Pattana Kakumyan & Saisamorn Lumyong. (2020) Bioprocess for Production, Characteristics, and Biotechnological Applications of Fungal Phytases. Frontiers in Microbiology 11.
Crossref
Divjot Kour, Tanvir Kaur, Neelam Yadav, Ali Asghar Rastegari, Bijender Singh, Vinod Kumar & Ajar Nath Yadav. 2020. New and Future Developments in Microbial Biotechnology and Bioengineering. New and Future Developments in Microbial Biotechnology and Bioengineering 157 176 .
Daria S. Troshagina, Aliya D. Suleimanova, Daria L. Itkina & Margarita R. Sharipova. (2018) Cloning of Phytase Genes from Pantoea Sp. 3.5.1 and Bacillus ginsengihumi M2.11 in Pichia pastoris. BioNanoScience 8:4, pages 1045-1053.
Crossref
Derya BERİKTEN & Merih KIVANÇ. (2018) Fitazlar: Çevreye Etkisi, Beslenme ve Biyoteknolojideki ÖnemiPhytases: Their Effects on Environment, Nutritional and Biotechnological Importance. Akademik Gıda 16:1, pages 109-119.
Crossref
Courtney D. Giles, Timothy S. George, Lawrie K. Brown, Malika Mezeli, Charles A. Shand, Alan E. Richardson, Regina Mackay, Renate Wendler, Tegan Darch, Daniel Menezes-Blackburn, Pat Cooper, Marc I. Stutter, David G. Lumsdon, Martin S.A. Blackwell, Catherine Wearing, Hao Zhang & Philip M. Haygarth. (2017) Linking the depletion of rhizosphere phosphorus to the heterologous expression of a fungal phytase in Nicotiana tabacum as revealed by enzyme-labile P and solution 31P NMR spectroscopy. Rhizosphere 3, pages 82-91.
Crossref
Vanessa Sayuri Sato, João Atílio Jorge & Luis Henrique Souza Guimarães. (2016) Characterization of a Thermotolerant Phytase Produced by Rhizopus microsporus var. microsporus Biofilm on an Inert Support Using Sugarcane Bagasse as Carbon Source. Applied Biochemistry and Biotechnology 179:4, pages 610-624.
Crossref
Bibhuti Ranjan & T. Satyanarayana. (2016) Recombinant HAP Phytase of the Thermophilic Mold Sporotrichum thermophile: Expression of the Codon-Optimized Phytase Gene in Pichia pastoris and Applications. Molecular Biotechnology 58:2, pages 137-147.
Crossref
Bibhuti Ranjan, Bijender Singh & T. Satyanarayana. (2015) Characteristics of Recombinant Phytase (rSt-Phy) of the Thermophilic mold Sporotrichum thermophile and its applicability in dephytinizing foods. Applied Biochemistry and Biotechnology 177:8, pages 1753-1766.
Crossref
Tamrin Nuge, Yumi Zuhanis Has-Yun Hashim, Abd-El Aziem Farouk & Hamzah Mohd Salleh. (2014) Cloning and Expression of a Novel Phytase Gene (phyMS) from <em>Mycobacterium smegmatis</em>. Advances in Enzyme Research 02:01, pages 27-38.
Crossref
M.-Z. Yao, Y.-H. Zhang, W.-L. Lu, M.-Q. Hu, W. Wang & A.-H. Liang. (2012) Phytases: crystal structures, protein engineering and potential biotechnological applications. Journal of Applied Microbiology 112:1, pages 1-14.
Crossref
Daniel Menezes-Blackburn, Milko Jorquera, Liliana Gianfreda, Maria Rao, Ralf Greiner, Elizabeth Garrido & María de la Luz Mora. (2011) Activity stabilization of Aspergillus niger and Escherichia coli phytases immobilized on allophanic synthetic compounds and montmorillonite nanoclays. Bioresource Technology 102:20, pages 9360-9367.
Crossref
Patcharaporn Pandee, Pijug Summpunn, Suthep Wiyakrutta, Duangnate Isarangkul & Vithaya Meevootisom. (2011) A Thermostable phytase from Neosartorya spinosa BCC 41923 and its expression in Pichia pastoris. The Journal of Microbiology 49:2, pages 257-264.
Crossref
M. R. Spier, R. C. Fendrich, P. C. Almeida, M. Noseda, R. Greiner, U. Konietzny, A. L. Woiciechowski, V. T. Soccol & C. R. Soccol. (2010) Phytase produced on citric byproducts: purification and characterization. World Journal of Microbiology and Biotechnology 27:2, pages 267-274.
Crossref
S. Gargova, M. Sariyska, A. Angelov & I. Stoilova. (2006) Aspergillus niger pH 2.1 optimum acid phosphatase with high affinity for phytate. Folia Microbiologica 51:6, pages 541-545.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.