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Dr. Bijender Singh
Dr. Bijender Singh
Department of Biotechnology
在 cuh.ac.in 的电子邮件经过验证
标题
引用次数
引用次数
年份
Microbial phytases in phosphorus acquisition and plant growth promotion
B Singh, T Satyanarayana
Physiology and Molecular Biology of Plants 17, 93-103, 2011
2282011
Probiotics, prebiotics and synbiotics: Safe options for next-generation therapeutics
MK Yadav, I Kumari, B Singh, KK Sharma, SK Tiwari
Applied microbiology and biotechnology 106 (2), 505-521, 2022
1842022
Cellulosic and hemicellulosic fractions of sugarcane bagasse: Potential, challenges and future perspective
Alokika, Anu, A Kumar, V Kumar, B Singh
International Journal of Biological Macromolecules 169, 564-582, 2021
1802021
Developments in biochemical aspects and biotechnological applications of microbial phytases
B Singh, G Kunze, T Satyanarayana
Biotechnol Mol Biol Rev 6 (3), 69-87, 2011
1262011
Production, characteristics, and biotechnological applications of microbial xylanases
Alokika, B Singh
Applied microbiology and biotechnology 103 (21), 8763-8784, 2019
1172019
β-Propeller phytases: diversity, catalytic attributes, current developments and potential biotechnological applications
V Kumar, AN Yadav, P Verma, P Sangwan, A Saxena, K Kumar, B Singh
International journal of biological macromolecules 98, 595-609, 2017
1142017
Multifarious pretreatment strategies for the lignocellulosic substrates for the generation of renewable and sustainable biofuels: A review
Anu, A Kumar, A Rapoport, G Kunze, S Kumar, D Singh, B Singh
Renewable Energy, 2020
1082020
Phytase production by a thermophilic mould Sporotrichum thermophile in solid state fermentation and its potential applications
B Singh, T Satyanarayana
Bioresource Technology 99 (8), 2824-2830, 2008
1052008
Characteristics and biotechnological applications of bacterial phytases
J Jain, B Singh
Process Biochemistry 51 (2), 159-169, 2016
1012016
Fungal phytases: characteristics and amelioration of nutritional quality and growth of non‐ruminants
B Singh, T Satyanarayana
Journal of animal physiology and animal nutrition 99 (4), 646-660, 2015
1012015
Myceliophthora thermophila syn. Sporotrichum thermophile: a thermophilic mould of biotechnological potential
B Singh
Critical reviews in biotechnology 36 (1), 59-69, 2016
942016
Contribution of microbial phytases to the improvement of plant growth and nutrition: A review
B Singh, I Boukhris, V KUMAR, AN YADAV, A FARHAT-KHEMAKHEM, ...
Pedosphere 30 (3), 295-313, 2020
862020
Phytase production by thermophilic mold sporotrichum thermophile in solid-state fermentation and its application in dephytinization of sesame oil cake
B Singh, T Satyanarayana
Applied Biochemistry and Biotechnology 133, 239-250, 2006
862006
Characterization of a HAP–phytase from a thermophilic mould Sporotrichum thermophile
B Singh, T Satyanarayana
Bioresource technology 100 (6), 2046-2051, 2009
842009
A marked enhancement in phytase production by a thermophilic mould Sporotrichum thermophile using statistical designs in a cost‐effective cane molasses medium
B Singh, T Satyanarayana
Journal of applied microbiology 101 (2), 344-352, 2006
772006
Cellulolytic and xylanolytic enzymes of thermophiles for the production of renewable biofuels
A Bala, B Singh
Renewable Energy 136, 1231-1244, 2019
752019
Development of an environmental-benign process for efficient pretreatment and saccharification of Saccharum biomasses for bioethanol production
A Bala, B Singh
Renewable energy 130, 12-24, 2019
752019
Plant Growth Promotion by an Extracellular HAP-Phytase of a Thermophilic Mold Sporotrichum thermophile
B Singh, T Satyanarayana
Applied biochemistry and biotechnology 160, 1267-1276, 2010
732010
Improved phytase production by a thermophilic mould Sporotrichum thermophile in submerged fermentation due to statistical optimization
B Singh, T Satyanarayana
Bioresource Technology 99 (4), 824-830, 2008
732008
A review on biotechnological potential of multifarious enzymes in bread making
S Dahiya, BK Bajaj, A Kumar, SK Tiwari, B Singh
Process Biochemistry 99, 290-306, 2020
722020
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