Shalini Tiwari
University of the Ozarks, South Dakota State University, CSIR-National Botanical Research Institute, Oklahoma State University
About
My research journey is marked by a profound interest in deciphering the molecular mechanisms underlying plant stress tolerance. The focus extends to the interplay between plants and PGPR, exploring how these interactions can enhance resilience to abiotic stresses. One of my notable achievements lies in elucidating these mechanisms by employing cutting-edge techniques such as transcriptomics and comprehensive profiling of non-coding RNAs, including long non-coding RNAs (lncRNA) and microRNAs (miRNA), particularly under stressful conditions. Currently, I am engaged in metagenomic research aimed at comprehending the microbial presence within environmental samples. With a commitment to pushing the boundaries of knowledge, I aim to actively contribute to the scientific community's collective understanding of environmental microbiology, plant biology, stress response, and symbiotic relationships.
Employment
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University of the Ozarks Assistant Professor2025 - Present
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South Dakota State University Post doctoral Research Associate2024 - 2025
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Oklahoma State University Visiting Scholar2023 - 2024
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Jawaharlal Nehru University Postdoctoral Fellow2021 - 2023
Education
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CSIR-National Botanical Research Institute PhD2013 - 2020
Projects & Funding
Projects & funding information is unavailable.
Publications (46)
- Seed protein electrophoresis in plant genetics: Commemorating the pioneering contributions of Prof. Chittaranjan Kole and team to the foundation of plant proteomics Save
- Field Testing of Low-Cost PM Sensors in Animal Production Facilities Save
- mRNA ADENOSINE METHYLASE promotes drought tolerance through N6-methyladenosine-dependent and independent impacts on mRNA regulation in Arabidopsis Save
- Bioaerosols downwind from animal feeding operations: A comprehensive review Save
- A New Era of CRISPR Technology to Improve Climate Resilience in Rice Save
- An Outline of Plant–Microbe Interactions for Stress Management Save
- Novel nucleus-localized GRAM protein encoding OsGRAM57 gene enhances salt tolerance through ABA-dependent pathway and modulated carbohydrate metabolism Save
- Deciphering shared attributes of plant long non-coding RNAs through a comparative computational approach Save
- Identification of Bioactive Compounds in Berberis Species and In Vitro Propagation for Conservation and Quality Save
- Editorial: Plant-soil-microbes: A tripartite interaction for nutrient acquisition and better plant growth Save