Mahendar Thudi | Plant Genetics | Editorial Board Member

Dr. Mahendar Thudi | Plant Genetics | Editorial Board Member

Fort Valley State university | United States

Mahendar Thudi, PhD, is a distinguished plant geneticist and genomics researcher currently serving as a Research Professional at Fort Valley State University, Georgia, and Adjunct Professor at the University of Southern Queensland, Australia. He previously worked as Associate Professor at Dr. Rajendra Prasad Central Agricultural University and spent over a decade at ICRISAT contributing extensively to chickpea genomics and molecular breeding. Dr. Thudi holds a PhD in Plant Sciences (2010) from the University of Hyderabad, an MS in Plant Biotechnology, and a BS in Agriculture. His research spans genetics and plant breeding, genomics, multi-omics, biotic and abiotic stress biology, and crop improvement in chickpea, sorghum, pearl millet, lentils, peanut, and wheat. Dr. Thudi has received several honors, including the Fellow of Telangana Academy of Sciences and multiple Exceptional Scientific Article Awards. With active international collaborations and editorial roles in leading journals, he continues to advance genomics-based breeding and global food security.

Profile: Google Scholar

Featured Publications

Varshney, R. K., Song, C., Saxena, R. K., Azam, S., Yu, S., Sharpe, A. G., Cannon, S., … (2013). Draft genome sequence of chickpea (Cicer arietinum) provides a resource for trait improvement. Nature Biotechnology.

Varshney, R. K., Shi, C., Thudi, M., Mariac, C., Wallace, J., Qi, P., Zhang, H., Zhao, Y., … (2017). Pearl millet genome sequence provides a resource to improve agronomic traits in arid environments. Nature Biotechnology.

Varshney, R. K., Thudi, M., Nayak, S. N., Gaur, P. M., Kashiwagi, J., … (2014). Genetic dissection of drought tolerance in chickpea (Cicer arietinum L.). Theoretical and Applied Genetics.

Varshney, R. K., Thudi, M., Roorkiwal, M., He, W., Upadhyaya, H. D., Yang, W., … (2019). Resequencing of 429 chickpea accessions from 45 countries provides insights into genome diversity, domestication and agronomic traits. Nature Genetics.

Thudi, M., Upadhyaya, H. D., Rathore, A., Gaur, P. M., Krishnamurthy, L., … (2014). Genetic dissection of drought and heat tolerance in chickpea through genome-wide and candidate gene-based association mapping approaches.

Adane Gebeyehu | Plant Breeding | Best Researcher Award

Dr. Adane Gebeyehu | Plant Breeding | Best Researcher Award

Swedish University of Agricultural Sciences | Sweden

Dr. Adane Gebeyehu Demissie is a distinguished plant genomics and biotechnology researcher with over 12 years of experience advancing genomic innovations for crop improvement. He holds a PhD in Biotechnology from Addis Ababa University in collaboration with the Swedish University of Agricultural Sciences (SLU), an MSc in Plant Biotechnology from Wageningen University, and an MSc in Plant Breeding from Bahir Dar University. His research integrates genomics-assisted breeding, QTL mapping, GWAS, genomic selection, RNA-seq, and CRISPR-Cas9 gene editing to develop climate-resilient oilseed and cereal crops. With an h-index of 3, more than 23 citations, and over 4 scientific documents, Dr. Demissie has published extensively in high-impact journals including Scientific Reports, Frontiers in Plant Science, and Agronomy. His professional experience spans postdoctoral research at SLU, senior research roles at Ethiopia’s Bio and Emerging Technology Institute, and lecturing positions where he designed the first BSc curriculum in Agricultural Biotechnology in Ethiopia. He has secured competitive grants from Carl-Tryggers Foundation, Sida-SLU, and the Ethiopian Science Foundation, and received prestigious recognitions such as the Young Scientist Award from the Ethiopian Academy of Sciences. Passionate about mentoring and policy development, Dr. Demissie continues to bridge cutting-edge genomics with agricultural innovation to enhance global food security.

Profiles: Scopus | Orcid

Featured Publications

“Transcriptome analysis identifies genes regulating self-compatibility, flowering time, and oil biosynthesis in Noug (Guizotia abyssinica)”

“SNP-based linkage mapping reveals novel quantitative trait loci for yield traits in noug (Guizotia abyssinica (L. f.) Cass.)”

“Temperature affects major fatty acid biosynthesis in noug (Guizotia abyssinica) self-compatible lines”

“Sesame, an Underutilized Oil Seed Crop: Breeding Achievements and Future Challenges”

“RNA-Seq Provides Novel Genomic Resources for Noug (Guizotia abyssinica) and Reveals Microsatellite Frequency and Distribution in Its Transcriptome”