Professor of Horticultural Science | University of Tehran | Iran
Prof. Kourosh Vahdati is a distinguished researcher specializing in horticulture, plant tissue culture, and biotechnology, with a strong emphasis on walnut science and nut tree improvement. His research focuses on abiotic stress physiology, walnut breeding and genetics, micropropagation, orchard management, and rootstock development, integrating molecular, physiological, and agronomic approaches to enhance stress tolerance and productivity in perennial crops. He serves as a Professor of Horticulture and has held key academic leadership roles, contributing extensively to international research collaborations. Prof. Vahdati’s major contributions include advances in walnut micropropagation protocols, identification of physiological and genetic indicators of drought and salinity tolerance, and the development of improved breeding and rootstock strategies for nut trees. His work has informed sustainable orchard practices and breeding programs worldwide. His impact vision centers on translating plant stress biology into resilient horticultural systems that support climate-smart agriculture, food security, and long-term sustainability in nut crop production
Senior Scientist | Agricultural Research Council | South Africa
Prof. Abe Shegro Gerrano is a researcher specializing in Plant Breeding and Genetics, with a strong focus on crop improvement for food and nutrition security. His research centers on the genetic enhancement of underutilized leguminous, leafy, and fruit vegetables, including cowpea, Bambara groundnut, amaranth, okra, pigeonpea, and taro, with emerging interests in climate-resilient cultivars, nutritional quality, and the integration of molecular breeding and genomics tools. He serves as a Senior Research Scientist at the Agricultural Research Council – Vegetables, Industrial and Medicinal Plants (ARC-VIMP), Pretoria, and holds affiliated academic and research appointments with national and international institutions. Prof. Gerrano has contributed significantly to the development and evaluation of drought- and heat-tolerant genotypes, genetic diversity assessment, and seed system research, producing high-impact peer-reviewed outputs and book chapters. His impact vision emphasizes translating plant genetic resources into resilient crop solutions that advance sustainable agriculture, strengthen food systems, and support global innovation in climate-smart crop production.
Senior Scientist | World Vegetable Center | Taiwan
Dr. Assaf Eybishitz is a plant scientist specializing in tomato breeding and genetic improvement, with a strong focus on developing resilient, high-performing vegetable crops. His research centers on disease resistance breeding, quantitative trait loci (QTL) identification, and stress tolerance, particularly heat stress and multi-disease resistance using advanced genetic resources and MAGIC populations. Currently, he serves as Senior Scientist – Tomato Breeding at the World Vegetable Center, where he leads and contributes to strategic breeding programs aimed at enhancing yield stability and resistance to biotic and abiotic stresses. Dr. Eybishitz has made significant contributions through molecular screening of wild and cultivated germplasm, identification of key resistance loci, and development of tomato lines with improved resistance to viruses and insect-transmitted diseases. His impact vision emphasizes strengthening global food security, accelerating climate-resilient crop innovation, and translating genetic research into scalable solutions for sustainable agriculture worldwide.
PhD Student | Australian National University | Australia
Syamlal Sasi is a researcher and technology innovator specializing in aquaculture, agri-tech solutions, plasma technology, IoT-integrated farming systems, and sustainable agriculture, widely recognized for advancing modern farming practices through science-driven innovations. His research focus centers on applying cold atmospheric plasma for agricultural and aquaculture enhancement, hydroponic productivity improvement, and resource-efficient cultivation, alongside emerging interests in space-agriculture, nutrient-enriched water generation using extraterrestrial regolith, nano/micro-bubble systems, and plasma–plant metabolite synergy. Over the years, he has contributed significantly to the integration of advanced engineering with crop and aquaculture ecosystems, exploring next-generation farming tools aimed at scalability and climate resilience. Professionally, he has served in impactful leadership and R&D roles, including Director of Business and Product Research at BudMore PTY Ltd., Canberra, Australia, where he leads technology development for smart-farming platforms and commercial agri-solutions, and previously as CEO at Sygul Technologies Pvt. Ltd., Kochi, India, guiding product innovation and agricultural technology deployment. Earlier, he contributed in data and business technology domains at Cognizant, India, building a foundation for data-driven agri-intelligence systems that later shaped his research initiatives. His key contributions include the development of plasma-assisted aquaponics and hydroponics systems, research demonstrating enhanced plant growth on simulated Martian regolith through water chemistry optimization, and investigations into RONS-enhanced nutrient delivery using plasma-enabled irrigation, which have opened new perspectives in extraterrestrial farming possibilities. He has also explored antimicrobial enhancement through plasma-secondary metabolite interactions, presenting new pathways for reducing chemical usage in crop disease management. His work has produced influential publications across journals such as Chemical Engineering Journal Advances, International Journal of Molecular Sciences, Molecules, and Trends in Biotechnology, collectively strengthening scientific understanding of plasma-for-agriculture interfaces. Several of his studies contribute directly to circular bio-production and food security models, positioning his work as a foundation for future agri-technology transitions. Through his role in research and startup technology development, Syamlal has contributed to smart-farming digitization, remote monitoring systems, and AI-based aquaculture productivity enhancement, supported by grants including the Productization Grant 2022–23 (Kerala Startup Mission) and the Smart Farming to Improve Aquaculture Productivity RKVY-RAFTAAR Grant. His continued mission is to bridge agricultural science with scalable technology, fostering sustainable aquaculture systems, low-resource food production, and climate-adaptive cultivation solutions. With a strong commitment to innovation-driven agriculture, he envisions transforming farming into a tech-empowered, environmentally harmonious sector, enabling farmers to enhance yield with reduced input cost, expanding productivity through precision management tools, and exploring space-based cultivation for future food security. His work ultimately strives to the impact global agriculture by integrating plasma science, IoT frameworks, and smart agro-industries, shaping a future where technology amplifies natural growth potential while securing food sustainability for earth and beyond.
1. Sasi, S., Prakash, P., Poiré, R., Hu, T., Weerasinghe, J., Levchenko, I., Prasad, K., & Alexander, K. (2025). Can cold atmospheric plasma make water enriched with minerals from Martian or Lunar regolith more suitable for hydroponic plant growth? Chemical Engineering Journal Advances, 100904. https://doi.org/10.1016/j.ceja.2025.100904
2. Sasi, S., Prakash, P., Hayden, S., Dooley, D., Poiré, R., Hu, T., Weerasinghe, J., Levchenko, I., Prasad, K., & Alexander, K. (2025). Enhanced plant growth on simulated Martian regolith via water chemistry optimisation: The role of RONS and nano/micro-bubbles. International Journal of Molecular Sciences, 26, 78318. https://doi.org/10.3390/ijms26178318
3. Prasad, K., Sasi, S., Weerasinghe, J., Levchenko, I., & Bazaka, K. (2023). Enhanced antimicrobial activity through synergistic effects of cold atmospheric plasma and plant secondary metabolites: Opportunities and challenges. Molecules, 28, 27481. https://doi.org/10.3390/molecules28227481
4. Sasi, S., Prasad, K., Weerasinghe, J., Bazaka, O., Ivanova, E. P., Levchenko, I., & Bazaka, K. (2023). Plasma for aquaponics. Trends in Biotechnology, 41(1), 54–69. https://doi.org/10.1016/j.tibtech.2022.08.001
Assistant professor at Wolaita Sodo University , Ethiopia
Dr. Girma Gata Ganebo is an Ethiopian scholar and development expert specializing in Agricultural Economics and Development Economics. He was born in Wolaita/Shanto and is currently based in Boditi, Ethiopia.