Innovative Research Award
Suchi Srivastava
CSIR-National Botanical Research Institute, India
| Suchi Srivastava | |
|---|---|
| Affiliation | CSIR-National Botanical Research Institute |
| Country | India |
| Scopus ID | 24400040000 |
| Documents | 85 |
| Citations | 2,332 |
| h-index | 25 |
| Subject Area | Plant–Microbe Interactions |
| Event | Global Genetics Awards |
Suchi Srivastava is a researcher at the CSIR-National Botanical Research Institute (CSIR-NBRI), India, recognized for her scientific contributions to plant–microbe interactions, environmental microbiology, plant biotechnology, and sustainable agricultural research. Her scholarly work focuses on understanding beneficial microbial associations with plants, biological nitrogen fixation, plant growth-promoting microorganisms, and environmentally sustainable approaches for crop productivity. With an extensive publication record, substantial citation impact, and an established international research presence, her work has contributed to advancing knowledge in plant sciences and microbial ecology.[1]
Abstract
This article summarizes the academic profile and scientific achievements of Suchi Srivastava in the field of plant–microbe interactions. Her research integrates microbiology, molecular biology, plant biotechnology, and environmental sciences to investigate beneficial microbial communities that improve plant growth, nutrient acquisition, stress tolerance, and sustainable agriculture. Through peer-reviewed publications and collaborative research, she has contributed to the understanding of microbial diversity and biological processes that support agricultural productivity while reducing environmental impacts.[2]
Keywords
Plant–Microbe Interactions, Rhizosphere Microbiology, Sustainable Agriculture, Plant Growth-Promoting Rhizobacteria, Environmental Microbiology, Biological Nitrogen Fixation, Plant Biotechnology, Soil Microbiology, Biofertilizers, Molecular Ecology
Introduction
Modern agricultural research increasingly relies on sustainable biological solutions that improve crop productivity while minimizing environmental degradation. Plant–microbe interactions represent one of the most significant research areas supporting this transition. Researchers working in this field investigate beneficial microbial communities, host–microbe signaling pathways, and microbial biodiversity to enhance plant health and resilience. Suchi Srivastava has contributed to these scientific developments through multidisciplinary studies involving microbiology, biotechnology, and molecular approaches.[3]
Research Profile
- Research specialization in plant–microbe interactions.
- Extensive publication record indexed in Scopus.
- Research interests include rhizosphere microbiology, microbial ecology, biotechnology, and sustainable agriculture.
- Strong citation performance demonstrating continued scientific relevance.
- Collaborative research with national and international scientific communities.
Research Contributions
Her research has explored microbial diversity associated with economically important plants, mechanisms underlying plant growth promotion, microbial-mediated nutrient cycling, and environmentally sustainable agricultural technologies. The integration of molecular biology, microbiology, and biotechnology has enabled improved understanding of beneficial plant-associated microorganisms and their ecological functions. These investigations support environmentally responsible farming systems and contribute to food security research.[2]
Publications
According to Scopus, Suchi Srivastava has authored or co-authored approximately 85 indexed scholarly publications with more than 2,300 citations and an h-index of 25. These publications span plant microbiology, environmental biotechnology, microbial ecology, and sustainable agricultural sciences, reflecting consistent academic productivity and multidisciplinary collaboration.[1]
Research Impact
The citation profile demonstrates broad recognition of her scientific work within plant sciences and microbiology. Her research findings have contributed to understanding microbial-assisted plant growth, sustainable biofertilizer development, soil microbial diversity, and ecological interactions relevant to agricultural sustainability. The combination of publication volume, citation impact, and collaborative research activity indicates sustained scholarly influence.[1]
Award Suitability
Based on publicly available scholarly indicators, Suchi Srivastava demonstrates qualifications commonly considered in academic recognition programs, including a substantial publication portfolio, measurable citation impact, interdisciplinary research, sustained contributions to plant–microbe interaction studies, and active participation in internationally recognized scientific research. These characteristics align with evaluation criteria frequently applied to Women Researcher Award programs that recognize scientific excellence, research quality, innovation, and contributions to sustainable development.[1]
Conclusion
Suchi Srivastava has established an academic profile characterized by consistent scientific productivity, impactful research, and contributions to sustainable agricultural biotechnology through investigations of plant–microbe interactions. Her publication record, citation metrics, and multidisciplinary research activities demonstrate continued engagement with globally relevant scientific challenges, making her profile appropriate for consideration within academic recognition initiatives dedicated to research excellence.
External Links
References
- Elsevier. (n.d.). Scopus author details: Suchi Srivastava, Author ID 24400040000. Scopus.https://www.scopus.com/authid/detail.uri?authorId=24400040000
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Antifungal potential of B. amyloliquefaciens NBRI-SN13 against R. solani: Parallels and contrast with epigenetic modifier.
https://www.sciencedirect.com/science/article/pii/S0957582026007834
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Soil amendment with fly ash and farmyard manure improves soil health growth and floral traits of tuberose (Polianthes tuberosa L.) in partially sodic soils.
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Arabidopsis MYB12 overexpression modulates flavonoid levels and confers enhanced fungal resistance in plants
https://www.sciencedirect.com/science/article/pii/S0885576526000226