Mohammad Faisal | Plant Sciences | Excellence in Plant Research

Prof. Dr. Mohammad Faisal | Plant Sciences | Excellence in Plant Research

King Saud University | Saudi Arabia

Dr. Mohammad Faisal is a Professor of Plant Biotechnology in the Department of Botany & Microbiology, College of Science, King Saud University, Saudi Arabia. He earned his Ph.D. in Botany from Aligarh Muslim University (AMU), India, specializing in plant tissue culture and biotechnology. With postdoctoral training in Spain and India, he brings over 16 years of experience in plant biotechnology research. Dr. Faisal is renowned for his work on in vitro plant regeneration, molecular characterization, and nanoparticle-plant interactions. His academic contributions include 172 peer-reviewed publications and editorial roles in reputed journals, reflecting his leadership in sustainable plant biotechnology.

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Education 

Dr. Faisal holds a BSc (Hons), MSc, MPhil, and PhD in Botany from Aligarh Muslim University, India, where his research focused on plant tissue culture and biotechnology. His PhD thesis explored tissue culture and regeneration in Tylophora indica and Rauvolfia tetraphylla. He completed two postdoctoral fellowships: one at AMU under the DST Fast-track scheme, and the other at Centro de Investigaciones Biológicas (CIB), Madrid, Spain, under Spain’s Ministry of Science & Innovation. He further expanded his expertise at Kangwon National University, South Korea, focusing on advanced techniques in plant genetic engineering and in vitro systems.

Professional Experience 

Dr. Faisal currently serves as a Professor at King Saud University since August 2023, following his roles as Associate Professor (2017–2023) and Assistant Professor (2011–2017). Prior to joining KSU, he held postdoctoral fellowships at CIB Madrid and AMU, and earlier research roles as SRF and Project Fellow at AMU. He has led and participated in various national and international research projects, contributing significantly to tissue culture protocols, crop improvement, and environmental biotechnology. With over 16 years of post-PhD experience, his work bridges academic research and applied biotechnology with a global impact in plant sciences.

Awards and Recognition 

Dr. Faisal has received multiple prestigious awards, including the Excellence of Research Award (2023) by ISAHRD and the Outstanding Scientist Award (2021) by VDGOOD Professional Association. He was honored with the Plant Biotechnologist Award (2017) and the Scientist of the Year Award (2015) by SESR and the National Environmental Science Academy, respectively. He is an elected Fellow of the Linnean Society of London, UK, and SESR, and serves as an international panel expert for the Czech Academy of Sciences. His academic excellence has also been recognized through editorial appointments in journals like Plant Cell, Tissue & Organ Culture and Plant Biotechnology Reports.

Research Skills 

Dr. Faisal specializes in plant tissue culture, in vitro morphogenesis, mass propagation, and genetic transformation of economically important plant species. He employs molecular, phytochemical, and anatomical tools to characterize tissue culture-derived plantlets. His pioneering work includes synthetic seed technology for germplasm conservation and evaluating plant responses to nanoparticles. He has led multiple funded projects in environmental biotechnology and crop improvement. With 172 publications and a strong citation record, his research is both foundational and applied, addressing biodiversity conservation, sustainable agriculture, and plant-environment interactions using cutting-edge biotechnological techniques.

Conclusion 

Prof. Mohammad Faisal exemplifies leadership in plant biotechnology through his impactful research, prolific publication record, and international collaborations. His contributions span fundamental studies and applied innovations in crop improvement, plant tissue culture, and nanotechnology applications. As a research leader, he continues to shape global discourse on sustainable agriculture and germplasm preservation. Through editorial work, professional memberships, and translational research, he actively promotes scientific progress. His expertise and dedication position him as a role model and mentor in the global scientific community, making him a worthy candidate for recognition in academic excellence and plant biotechnology advancement.

Publications

Cokuraj, M., Manokari, M., Faisal, M., Alatar, A.A., & Shekhawat, M.S. (2025). Synergistic effects of growth regulators and silicon nanoparticles on enhancing morpho-structural stability in Vitex agnus-castus L. plantlets. South African Journal of Botany, 2025

Munir, M., Ahmad, K., Khan, Z.I., Akhtar, S., Nadeem, M., Ashfaq, A., Faisal, M., Alatar, A.A., Nazir, H.M., & Malik, I.S. (2025). Trophic transfer of arsenic in the food chain from selected crops grown in long-term wastewater contaminated soil. Agricultural Water Management, 2025

Manokari, M., Faisal, M., Alatar, A.A., & Shekhawat, M.S. (2025). Unveiling the stimulatory effect of silicon nanoparticles on the direct regeneration and micro-structural developments in Cadaba trifoliata (Roxb.) Wight & Arn. Environmental Science: Nano, 2025

Fazal, U., Zada, A., Hanif, M., Lee, S.Y., Faisal, M., Alatar, A.A., Sultana, T., & Sohail. (2025). Green Myco-Synthesis of Zinc Oxide Nanoparticles Using Cortinarius sp.: Hepatoprotective, Antimicrobial, and Antioxidant Potential for Biomedical Applications. Microorganisms, 2025

Manokari, M., Faisal, M., Alatar, A.A., & Shekhawat, M.S. (2024). In vitro regeneration and micro-morpho-anatomical characterization of leaves towards epiphytic adaptation in Aechmea bracteata (Sw.) Griseb. In Vitro Cellular and Developmental Biology – Plant, 2024

Mani, M., Faisal, M., Alatar, A.A., & Shekhawat, M.S. (2024). In vitro propagation and assessment of the impact of nano silicon on growth and structural developments in Neomarica longifolia (Link & Otto) Sprague (Yellow Iris). South African Journal of Botany, 2024

Funian Zhao | Agroecology | Best Researcher Award

Dr. Funian Zhao | Agroecology | Best Researcher Award

Lanzhou Institute of Arid Meteorology of China Meteorological Administration | China

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🌟  Suitable for this Best Researcher Award

Dr. Funian Zhao is an Associate Researcher at the Institute of Arid Meteorology, China Meteorological Administration, specializing in Agroecology, ecological meteorology, and agricultural drought dynamics. With a Ph.D. in Ecological Meteorology and a solid foundation in Applied Meteorology and Soil Physics, Dr. Zhao integrates crop modeling, drought assessment, and vegetation-atmosphere interactions into real-world agricultural applications. His work directly informs climate-resilient farming and sustainable land use practices. His field-based innovations and simulation models provide actionable insights into drought-prone regions, particularly the Northern Agricultural-Pastoral Transition Zone. As a principal investigator for multiple national and provincial projects, he has significantly advanced our understanding of drought signal transmission and crop gas exchange processes. His interdisciplinary contributions in climate-smart agriculture position him as a leading researcher in Agroecology. Dr. Zhao’s ongoing work continues to shape agricultural resilience and environmental sustainability, making him an outstanding candidate for the Best Researcher Award.

🎓 Education 

Dr. Funian Zhao has a robust academic background with degrees from top agricultural and ecological institutions in China. He earned his Bachelor of Science in Applied Meteorology from Shenyang Agricultural University in 2009. His master’s degree in Soil Physics (2012) from Huazhong Agricultural University, under Prof. Chen Jiazhou, focused on soil-atmosphere interactions critical to crop performance. He completed his Ph.D. in Ecological Meteorology in 2020 at the Chinese Academy of Sciences’ Institute of Geographic Sciences and Natural Resources Research, supervised by Prof. Yu Qiang. His doctoral research integrated vegetation-atmosphere gas exchange modeling with environmental stress simulations to assess crop vulnerability under drought. This diverse academic training bridges meteorology, soil science, and ecological modeling. With advanced skills in R, Fortran, and Python, and hands-on experience in field instrumentation and modeling, Dr. Zhao’s education has uniquely positioned him to tackle multifaceted challenges in Agroecology and climate-adaptive agriculture.

 💼  Professional Experience

Dr. Zhao began his professional journey as a Research Intern in 2012 at the Institute of Arid Meteorology. Over the next decade, he evolved from Assistant Researcher to Associate Researcher, contributing to key climate-agriculture integration projects. Since 2020, he has also served as a Postdoctoral Researcher at Lanzhou University. His research focuses on agricultural drought mechanisms, vegetation-atmosphere interactions, and crop modeling, with practical applications in ecological forecasting and land-use planning. Dr. Zhao has led and collaborated on multiple high-stakes projects funded by the National Natural Science Foundation of China and regional meteorological bureaus. He has also designed and implemented large-scale field experiments using cutting-edge ecological instruments. A proficient programmer and model developer, he created the ACM-wheat model and gas exchange simulations for wheat and potatoes. As a peer reviewer and young editorial board member, his insights shape scientific discourse in Agroecology, climate-smart agriculture, and meteorological research.

🏅 Awards and Recognition 

Dr. Funian Zhao has received widespread recognition for his innovative research in Agroecology. He was awarded funding as a Principal Investigator for several prestigious national and provincial-level research projects, including a major sub-project under the National Natural Science Foundation Key Project (2023–2027). His contributions to agricultural drought modeling and eco-physiological simulation have been instrumental in advancing climate-smart agricultural practices. Dr. Zhao was named an Outstanding Reviewer for the Journal of Arid Agriculture in 2023, highlighting his commitment to scientific rigor and community engagement. Additionally, he serves as a Reviewer for leading journals such as Remote Sensing, Scientific Reports, and International Journal of Biometeorology, and sits on the editorial board of Climate Smart Agriculture. These accolades underscore his role as a thought leader in his field, reinforcing his eligibility for the Best Researcher Award in Agroecology.

🌍Research skills On Agroecology

Dr. Funian Zhao’s research skillset is diverse, practical, and data-driven. He excels in field-based ecological experiments using instruments like the Li-6400/6800 for photosynthesis, TDR sensors for moisture, and flux towers for meteorological monitoring. His technical proficiency spans multiple coding languages—R, Fortran, and Python—and extends to building simulation models such as ACM-wheat for crop development and gas exchange. Dr. Zhao has developed and applied drought indices tailored to regional agricultural climates, enhancing predictive capabilities in agroecological systems. He bridges observational data with modeling frameworks to assess environmental stress impacts on crops, with a focus on semi-arid regions. His skill in synthesizing remote sensing data and ground-based observations has supported effective decision-making tools for farmers and policymakers. These skills allow him to contribute significantly to sustainable agriculture, particularly in drought-prone zones, cementing his standing as a top-tier researcher in Agroecology.

📖Publications

📄 Establishing a Water-Use Boundary Function for Potato through Crop Modeling
🌧️ Environmental Factors Influence Potato Tuber Yield Under Precipitation Variability
🌿 Leaf Gas Exchange as a Predictor for Drought-Responsive Wheat Yield
🌡️ Spring Wheat Yield Determination in Climatic Transition Zones Under Warming
🔬 Quantifying Wheat Leaf Gas Exchange Model Parameters Under Varied Conditions
💧 Benchmarking Water-Use Efficiency at Leaf and Ecosystem Levels in Wheat
🌱 Water Use-Yield Production Function Modeling for Spring Wheat Yields
🌾 Statistical Models for Determining Agricultural Drought in Semi-Arid Wheat
🧪 Effect of Phosphorus Fertilizers on Yield in Wheat-Maize Rotation Systems
🌍 Soil Water Content’s Role in Spring Wheat Agricultural Drought Assessment
🍃 Quantifying Drought Severity Using Leaf Photosynthetic Responses