Best Researcher Award
Shivani Tiwari
Sir Padampat Singhania University, India
| Shivani Tiwari | |
|---|---|
| Affiliation | Sir Padampat Singhania University |
| Country | India |
| Google Scholar ID | BeWAA2MAAAAJ |
| Documents | 14 |
| Citations | 30 |
| h-index | 4 |
| Subject Area | Biology and Life Sciences |
| Event | International Forensic Scientist Awards |
Shivani Tiwari is a researcher working in Biology and Life Sciences, with scholarly contributions spanning plant science, microbial biotechnology, molecular biology, agricultural science, and biologically mediated nanotechnology. Her recorded research output includes studies addressing phytochemicals, microbial disease control, plant stress-related gene families, and agricultural soil characteristics. The available bibliometric profile reports 14 documents, 30 citations, and an h-index of 4.
Contents
Abstract
Shivani Tiwari’s research profile reflects interdisciplinary engagement with biological and agricultural questions. Her documented work includes investigation of phytochemicals in Asparagus racemosus, biosynthesis of silver nanoparticles using Bacillus species, genome-wide characterization of glutathione S-transferase genes in quinoa, and assessment of soil properties in mango-growing orchards. These studies demonstrate the application of biochemical, microbiological, molecular, and agricultural approaches to research questions of biological relevance [1][2].
Keywords
Plant science; phytochemicals; microbial biotechnology; silver nanoparticles; quinoa; glutathione S-transferase; agricultural physics; soil science; molecular biology; Biology and Life Sciences.
Introduction
Research in contemporary life sciences increasingly connects molecular mechanisms with agricultural, environmental, and applied biological systems. Tiwari’s publication record reflects this interdisciplinary orientation, linking plant-derived compounds and microbial processes with molecular characterization and agricultural assessment. Her work therefore provides a research profile that crosses several complementary areas within biological science [3].
Research Profile
The research profile is characterized by a combination of experimental and computationally informed biological investigation. Topics represented in the available publications include phytochemical exploration of Shatavari, microbial synthesis of silver nanoparticles for disease-control applications, gene-family identification in quinoa, and characterization of orchard soil properties. Together, these areas indicate an emphasis on biological resources, plant systems, microbial applications, and agricultural sustainability.
Research Contributions
A notable contribution is the investigation of silver nanoparticle biosynthesis using Bacillus species, combining microbiological approaches with nanobiotechnology for potential microbial disease-control applications [2]. Another study examines the glutathione S-transferase gene family in quinoa, providing a molecular perspective on an agriculturally important crop [3]. Work on Shatavari phytochemicals further contributes to the documentation of plant-derived bioactive compounds [1].
Publications
- An Insight of Phytochemicals of Shatavari (Asparagus racemosus), 2023.
- Biosynthesis of silver nanoparticles using Bacillus sp. for Microbial Disease Control: An In-vitro and In-silico Approach, 2016.
- Genome-wide identification and characterization of glutathione S-transferase gene family in quinoa (Chenopodium quinoa Willd.), 2023.
- Appraisal of soil properties in the mango growing orchards of Malihabad, India, 2016.
Research Impact
The available scholarly profile records 14 documents, 30 citations, and an h-index of 4. These indicators provide a quantitative snapshot of documented research visibility and should be interpreted in relation to publication age, disciplinary citation practices, and the researcher’s broader scholarly activities. The publication topics also demonstrate relevance across plant biology, biotechnology, molecular research, and agricultural science [4].
Award Suitability
The Best Researcher Award category is supported by a documented body of multidisciplinary research and measurable scholarly output. Tiwari’s work addresses distinct biological problems through complementary approaches, including phytochemical investigation, microbial biotechnology, molecular genomics, and agricultural assessment. On the evidence available, the profile demonstrates sustained participation in research activities relevant to Biology and Life Sciences.
Conclusion
Shivani Tiwari presents a multidisciplinary research profile within Biology and Life Sciences, with publications addressing plant-derived compounds, microbial nanobiotechnology, crop genomics, and agricultural soil assessment. Her documented research output and citation indicators provide a suitable scholarly basis for consideration under the Best Researcher Award category.
External Links
References
- Pandey, V., Shri, M., Dubey, S., Saema, S., & Tiwari, S. (2023). An Insight of Phytochemicals of Shatavari (Asparagus racemosus). In Plants for Immunity and Conservation Strategies, 169–205.
- Tiwari, S., Gade, J., Chourasia, A., Aruna, J., et al. (2016). Biosynthesis of silver nanoparticles using Bacillus sp. for Microbial Disease Control: An In-vitro and In-silico Approach.
- Tiwari, S., Vaish, S., Singh, N., Basantani, M., Bhargava, A. (2023). Genome-wide identification and characterization of glutathione S-transferase gene family in quinoa (Chenopodium quinoa Willd.). 3 Biotech, 13(7), 230.
- Adak, T., Kumar, K., Singha, A., Pandey, G., Singh, V.K., Tiwari, S., & Vaish, S. (2016). Appraisal of soil properties in the mango growing orchards of Malihabad, India. Journal of Agricultural Physics, 16(1&2), 9–21.
- Author profile and publication metrics. Google Scholar author record for Shivani Tiwari.
https://scholar.google.com/citations?user=BeWAA2MAAAAJ&hl=en
