About
My research centers on the role of phosphate-solubilizing microorganisms (PSMs) in promoting plant growth. I have biochemically and molecularly characterized various bacterial and fungal isolates, with a focus on developing PCR-based techniques to identify microbial community structures and screen for promising bioinoculant strains. Techniques such as RAPD analysis and gene-specific primer (GSP) amplification were employed to assess genetic diversity among isolates quickly and effectively.
During my PhD, I gained extensive experience in Microbiology, Molecular Biology, Biochemistry, Bioinformatics, Nanotechnology, and Environmental Biotechnology. Myconanotechnology formed a significant part of my work, involving cell culture (J774 and THP-1α), flow cytometry, and MTT-based cytotoxicity assays.
Currently, I am working on the application of nanoparticles in agriculture and allied sectors, exploring their potential to enhance crop productivity, soil health, and disease resistance.
I am an enthusiastic and adaptable researcher with a strong commitment to impactful science. My interdisciplinary expertise and problem-solving skills drive my passion for applying microbiological approaches to real-world challenges in agriculture, clinical research, and environmental sustainability.
Employment
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BNCET Assistant Professor2015 - 2015
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Integral University Associate Professor
Education
Education history is unavailable.
Projects & Funding
Projects & funding information is unavailable.
Publications (41)
- Hybrid Nanomaterials: Pioneering Sustainable Environmental Detection and Enhancing Agricultural Productivity Save
- Nanofertilizers for Plant Nutrition Save
- Nanomaterials in Action: Transformative Applications for Environmental Pollution Mitigation and Sustainable Agriculture Save
- Nanotechnology Advances in Composting Save
- Nanotechnology for Soil Health: Applications, Improvements, and Environmental Benefits Save
- Smart Carbon Nanomaterials: Transforming Technology and Industry Save
- Multi-omics approaches to decipher bioactive compounds in Ocimum spp Save
- Evaluation of Anticancer Potential in Human Colorectal Carcinoma HCT-116 Cells by Fungal-Mediated Zinc Oxide Nanoparticles Save
- Translational Applications of Natural Compounds in Combatting Neurodegenerative Diseases and Exploring Future Prospects Save
- Efficacy of mycosynthesized zinc oxide nanoparticles against bacterial infections and oxidative stress Save