370
Views
41
CrossRef citations to date
0
Altmetric
Original Articles

Use of Phytases (myo-Inositolhexakisphosphate Phosphohydrolases) for Combatting Environmental Pollution: A Biological Approach

, &
Pages 469-486 | Published online: 12 Jan 2007

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

Read on this site (3)

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
Daniel Menezes-Blackburn, MilkoA. Jorquera, Ralf Greiner, Liliana Gianfreda & Maria de la Luz Mora. (2013) Phytases and Phytase-Labile Organic Phosphorus in Manures and Soils. Critical Reviews in Environmental Science and Technology 43:9, pages 916-954.
Read now
D.E.C.S. Rao, K.V. Rao, T.P. Reddy & V.D. Reddy. (2009) Molecular characterization, physicochemical properties, known and potential applications of phytases: An overview. Critical Reviews in Biotechnology 29:2, pages 182-198.
Read now

Articles from other publishers (38)

Nevien Elhawat, József Csajbók, Szilvia Kovács, Szilvia Veres, Miklós G. Fári, Éva Domokos-Szabolcsy & Tarek Alshaal. (2023) Phosphorus fertilization rate and dynamics in early development of three giant reed (Arundo donax L.) ecotypes. Biomass and Bioenergy 173, pages 106805.
Crossref
Anna Buzek, Anita Zaworska-Zakrzewska, Małgorzata Muzolf-Panek & Małgorzata Kasprowicz-Potocka. (2023) Microbial Phytase in a Diet with Lupine and Extruded Full-Fat Soya Seeds Affects the Performance, Carcass Characteristics, Meat Quality, and Bone Mineralization of Fatteners. Animals 13:10, pages 1655.
Crossref
Yuwen Zhou, A.N. Anoopkumar, Ayon Tarafdar, Aravind Madhavan, Mohan Binoop, Nair M. Lakshmi, Arun K. B, Raveendran Sindhu, Parameswaran Binod, Ranjna Sirohi, Ashok Pandey, Zengqiang Zhang & Mukesh Kumar Awasthi. (2022) Microbial engineering for the production and application of phytases to the treatment of the toxic pollutants: A review. Environmental Pollution 308, pages 119703.
Crossref
Bao-zhen LI, Anna GUNINA, Mostafa ZHRAN, L. JONES Davey, W. HILL Paul, Ya-jun HU, Tida GE & Jin-shui WU. (2021) Fate of low-molecular-weight organic phosphorus compounds in the P-rich and P-poor paddy soils. Journal of Integrative Agriculture 20:9, pages 2526-2534.
Crossref
Ruican Wang & Shuntang Guo. (2021) Phytic acid and its interactions: Contributions to protein functionality, food processing, and safety. Comprehensive Reviews in Food Science and Food Safety 20:2, pages 2081-2105.
Crossref
N. Jennifer Michellin Kiruba & A. Joseph Thatheyus. 2021. Microbiome Stimulants for Crops. Microbiome Stimulants for Crops 305 314 .
Bassem A. Balbool, Fatma Ahmed Abo Nouh, Sara Atef Gezaf, Akram H. Mohamed & Ahmed M. Abdel-Azeem. 2021. Industrially Important Fungi for Sustainable Development. Industrially Important Fungi for Sustainable Development 347 375 .
Roberta Corsino Ferreira, Murillo Peterlini Tavares, Túlio Morgan, Yan da Silva Clevelares, Marina Quádrio Raposo Branco Rodrigues, Maria Catarina Megumi Kasuya, Tiago Antônio de Oliveira Mendes & Valéria Monteze Guimarães. (2020) Genome-Scale Characterization of Fungal Phytases and a Comparative Study Between Beta-Propeller Phytases and Histidine Acid Phosphatases. Applied Biochemistry and Biotechnology 192:1, pages 296-312.
Crossref
Vrishbhanu Handa, Diksha Sharma, Anupreet Kaur & Shailendra Kumar Arya. (2020) Biotechnological applications of microbial phytase and phytic acid in food and feed industries. Biocatalysis and Agricultural Biotechnology 25, pages 101600.
Crossref
Graciela C. Rollán, Carla L. Gerez & Jean G. LeBlanc. (2019) Lactic Fermentation as a Strategy to Improve the Nutritional and Functional Values of Pseudocereals. Frontiers in Nutrition 6.
Crossref
Genis Andrés Castillo Villamizar, Katrina Funkner, Heiko Nacke, Karolin Foerster & Rolf Daniel. (2019) Functional Metagenomics Reveals a New Catalytic Domain, the Metallo-β-Lactamase Superfamily Domain, Associated with Phytase Activity. mSphere 4:3.
Crossref
Nisar Ahmad Taliman, Qin Dong, Kohei Echigo, Victor Raboy & Hirofumi Saneoka. (2019) Effect of Phosphorus Fertilization on the Growth, Photosynthesis, Nitrogen Fixation, Mineral Accumulation, Seed Yield, and Seed Quality of a Soybean Low-Phytate Line. Plants 8:5, pages 119.
Crossref
Bhavana V. Mohite, Sunil H. Koli, Hemant P. Borase, Jamatsing D. Rajput, Chandrakant P. Narkhede, Vikas S. Patil & Satish V. Patil. 2019. Microbial Interventions in Agriculture and Environment. Microbial Interventions in Agriculture and Environment 353 380 .
Anna Piotrowska-Długosz. 2019. Biocatalysis. Biocatalysis 277 308 .
Karim Rocky-Salimi, Maryam Hashemi, Mohammad Safari & Maryam Mousivand. (2016) A novel phytase characterized by thermostability and high pH tolerance from rice phyllosphere isolated Bacillus subtilis B.S.46. Journal of Advanced Research 7:3, pages 381-390.
Crossref
Hervé Sanguin, Neil L. Wilson & Michael A. Kertesz. (2015) Assessment of functional diversity and structure of phytate-hydrolysing bacterial community in Lolium perenne rhizosphere. Plant and Soil 401:1-2, pages 151-167.
Crossref
B. Singh & T. Satyanarayana. (2015) Fungal phytases: characteristics and amelioration of nutritional quality and growth of non-ruminants. Journal of Animal Physiology and Animal Nutrition 99:4, pages 646-660.
Crossref
Shengpeng Zhang, Shao-an Liao, Xiaoyuan Yu, Hongwu Lu, Jian-an Xian, Hui Guo, Anli Wang & Jian Xie. (2015) Microbial diversity of mangrove sediment in Shenzhen Bay and gene cloning, characterization of an isolated phytase-producing strain of SPC09 B. cereus. Applied Microbiology and Biotechnology 99:12, pages 5339-5350.
Crossref
Mang Yan, Liufang Yu, Liang Zhang, Yuexia Guo, Kewei Dai & Yuru Chen. (2014) Phosphatase activity and culture conditions of the yeast Candida mycoderma sp. and analysis of organic phosphorus hydrolysis ability. Journal of Environmental Sciences 26:11, pages 2315-2321.
Crossref
Stafford Vigors, Torres Sweeney, Cormac J. O'Shea, John A. Browne & John V. O'Doherty. (2014) Improvements in growth performance, bone mineral status and nutrient digestibility in pigs following the dietary inclusion of phytase are accompanied by modifications in intestinal nutrient transporter gene expression. British Journal of Nutrition 112:5, pages 688-697.
Crossref
K. Bhavsar & J. M. Khire. (2014) Current research and future perspectives of phytase bioprocessing. RSC Adv. 4:51, pages 26677-26691.
Crossref
Irenus A. Tazisong, Zachary N. Senwo, Barbara J. Cade-Menun & Zhongqi He. 2014. Applied Manure and Nutrient Chemistry for Sustainable Agriculture and Environment. Applied Manure and Nutrient Chemistry for Sustainable Agriculture and Environment 191 209 .
K. Żyła, M. Mika, R. Duliński, S. Świątkiewicz, J. Koreleski, H. Pustkowiak & J. Piironen. (2012) Effects of inositol, inositol-generating phytase B applied alone, and in combination with 6-phytase A to phosphorus-deficient diets on laying performance, eggshell quality, yolk cholesterol, and fatty acid deposition in laying hens. Poultry Science 91:8, pages 1915-1927.
Crossref
Amol V. Shivange, Annegret Serwe, Alexander Dennig, Danilo Roccatano, Stefan Haefner & Ulrich Schwaneberg. (2011) Directed evolution of a highly active Yersinia mollaretii phytase. Applied Microbiology and Biotechnology 95:2, pages 405-418.
Crossref
Di Wu, M. Cameron Sullards, Charlie D. Oldham, Les Gelbaum, Jacob Lucrezi, Gerald S. Pullman & Sheldon W. May. (2011) Myo ‐inositol hexakisphosphate, isolated from female gametophyte tissue of loblolly pine, inhibits growth of early‐stage somatic embryos . New Phytologist 193:2, pages 313-326.
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
K. Żyła, M. Mika, S. Świątkiewicz, J. Koreleski & J. Piironen. (2011) Effects of phytase B on laying performance, eggshell quality and on phosphorus and calcium balance in laying hens fed phosphorus-deficient maize-soybean meal diets. Czech Journal of Animal Science 56:9, pages 406-413.
Crossref
So-Mi Yoon, So Young Kim, Kun Feng Li, Byung Hak Yoon, Senyon Choe & Mario Meng-Chiang Kuo. (2011) Transgenic microalgae expressing Escherichia coli AppA phytase as feed additive to reduce phytate excretion in the manure of young broiler chicks. Applied Microbiology and Biotechnology 91:3, pages 553-563.
Crossref
Bijender Singh & T. Satyanarayana. (2011) Phytases from thermophilic molds: Their production, characteristics and multifarious applications. Process Biochemistry 46:7, pages 1391-1398.
Crossref
P.F. Varley, B. Flynn, J.J. Callan & J.V. O'Doherty. (2011) Effect of phytase level in a low phosphorus diet on performance and bone development in weaner pigs and the subsequent effect on finisher pig bone development. Livestock Science 138:1-3, pages 152-158.
Crossref
P.F. Varley, T. Sweeney, M.T. Ryan & J.V. O'Doherty. (2011) The effect of phosphorus restriction during the weaner-grower phase on compensatory growth, serum osteocalcin and bone mineralization in gilts. Livestock Science 135:2-3, pages 282-288.
Crossref
Tsuyoshi Minami & Yuji Kubo. (2010) Fluorescence Sensing of Phytate in Water Using an Isothiouronium-attached Polythiophene. Chemistry - An Asian Journal 5:3, pages 605-611.
Crossref
Thanh H. Dao. 2011. Soil Enzymology. Soil Enzymology 75 102 .
S. Nitrayová, P. Patráš, M. Brestenský, J. Zelenka, J. Brož & J. Heger. (2009) Effect of microbial phytase and diet fermentation on ileal and total tract digestibility of nutrients and energy in growing pigs. Czech Journal of Animal Science 54:4, pages 163-174.
Crossref
Karen Cichy & Victor Raboy. 2009. Modification of Seed Composition to Promote Health and Nutrition. Modification of Seed Composition to Promote Health and Nutrition 177 200 .
Purva Vats, Bharat Bhushan & U.C. Banerjee. (2009) Studies on the dephosphorylation of phytic acid in livestock feed using phytase from Aspergillus niger van Teighem. Bioresource Technology 100:1, pages 287-291.
Crossref
Thanh H. Dao & Khanh Q. Hoang. (2008) Dephosphorylation and quantification of organic phosphorus in poultry litter by purified phytic-acid high affinity Aspergillus phosphohydrolases. Chemosphere 72:11, pages 1782-1787.
Crossref
Lisbeth Bohn, Anne S. Meyer & Søren. K. Rasmussen. (2008) Phytate: impact on environment and human nutrition. A challenge for molecular breeding. Journal of Zhejiang University SCIENCE B 9:3, pages 165-191.
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.