About
Prof. Bhoopander Giri has pursued a Ph.D. in Mycorrhizal Research from the University of Delhi, Delhi, India, and is currently working as a Professor in the Department of Botany, University of Delhi, Delhi, India. He has worked as a Raman Postdoctoral Fellow in the Department of Plant Pathology at North Carolina State University, USA. Besides, Prof. Giri has worked as a post-doctoral fellow at the International Center for Genetic Engineering and Biotechnology, and as an Associate Fellow at The Energy and Resources Institute (TERI), New Delhi, India. He is a recipient of CSIR Research Associateship and DST Young Scientist Fellowship. Prof. Giri has published more than 45 papers in the national and international peer-reviewed journals and books having more than 5200 citations, and has edited six books, Root Biology (2018), Biofertilizers for Sustainable Agriculture and Environment (2019), Microorganisms in Saline Environments: Strategies and Functions (2019), Soil Health, Plant Stress Biology: Strategies and Trends Pedosphere: Structure and Functions which are published by Springer Nature. Prof. Giri is a life member of several prestigious academic societies. He has served as a General Secretary for the International Symbiosis Society (ISS), USA, and as a reviewer for several international and national journals,
Employment
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Department of Botany, University of Delhi Teaching and Research
Education
Education history is unavailable.
Projects & Funding
Projects & funding information is unavailable.
Publications (12)
- Resolving the species boundaries in wild edible Astraeus mushrooms using phylogeny, morphology and elemental profiling Save
- Synergy between Piriformospora Indica and Salicylic Acid Modulates Maize Stress Physiology, Ultrastructure, and Gene Expression Save
- Production of Phytase by Penicillium oxalicum in Solid State Fermentation Exhibiting Hydrolysis of Phytates and Haloperoxidase Activity Save
- Optimization of phytase production by Penicillium oxalicum in solid-state fermentation for potential as a feed additive Save
- Unraveling the Synergistic Potential of Mycorrhizal Consortium in Augmenting Salinity Stress Tolerance in Wheat by Advancing Physiological, Metabolic, Nutrient, and Ultrastructural Attributes Save
- Augmentative Role of Arbuscular Mycorrhizal Fungi, Piriformospora indica, and Plant Growth-Promoting Bacteria in Mitigating Salinity Stress in Maize (Zea mays L.) Save
- Microbial inoculants alter resilience towards drought stress in wheat plants Save
- Microbial inoculants improve growth in Zea mays L. under drought stress by up-regulating antioxidant, mineral acquisition, and ultrastructure modulations Save
- Role of microbial phytases in improving fish health Save
- Microbial inoculants alter resilience towards drought stress in wheat plants Save