Md Arif Sakil | Plant Physiology | Best Researcher Award

Assoc. Prof. Dr. Md Arif Sakil | Plant Physiology | Best Researcher Award

Bangladesh Agricultural University | Bangladesh

Dr. Md. Arif Sakil is an accomplished Bangladeshi scientist and academic currently serving as an Associate Professor in the Department of Biochemistry and Molecular Biology at Bangladesh Agricultural University, Mymensingh. He earned his Ph.D. in Biological Sciences from Saitama University, Japan (2019–2022), and is presently a Post-Doctoral Fellow at Meiji University, Japan. His research focuses on plant stress biology, molecular mechanisms of autophagy, nanobiotechnology, and genome editing technologies such as CRISPR-Cas for improving plant resilience. Over his academic career, Dr. Sakil has published more than 30 peer-reviewed research articles and book chapters in reputed journals including Plant and Cell Physiology, Environmental and Experimental Botany, and CABI Agriculture and Bioscience. His outstanding scientific contributions have earned him multiple honors, including the prestigious President Gold Medal Award from Bangladesh Agricultural University (2023) and the Japanese Government (MEXT) Scholarship. Dr. Sakil’s work on autophagy and plant stress mechanisms bridges fundamental biology with agricultural innovation. With a strong passion for sustainable agriculture and food security, he continues to pursue advanced biotechnological research that contributes to global agricultural resilience and scientific advancement.

Profiles: Google Scholar | Orcid

Featured Publications

Roy, A. R., Jahan, I., Mou, S. J., Hasin, M. F., Angon, P. B., Sultana, R., Mazumder, B., & Sakil, M. A. (2025). Function of biochar: Alleviation of heat stress in plants and improvement of soil microbial communities. Phyton, Advance online publication.

Jahan, I., Angon, P. B., Mou, S. J., Zannat, M., Antu, U. B., Alam, M. M., Sweety, A. A., Islam, M. S., & Sakil, M. A. (2025). The potential of CRISPR-Cas genome editing technologies to mitigate biotic stress in plants. CABI Agriculture and Bioscience.

Sarkar, R., Khatun, M. K., Sultana, M. A., Mustary, S., Rahman, M., Akter, T., Mortuza, M. G., Hannan, M. A., Sakil, M. A., & Haque, M. R. (2024). Effects of soaking duration on nutritional composition and total phenolic content of some selected lentil varieties of Bangladesh. Probe – Plant & Animal Sciences.

Sakil, M. A., Mukae, K., Bao, J., Sadhu, A., Roni, M. S., Inoue-Aono, Y., & Moriyasu, Y. (2023). Autophagy promotes cell death induced by hydrogen peroxide in Physcomitrium patens. Plant and Cell Physiology.

Mukae, K., Sakil, M. A., Kotake, T., Inoue-Aono, Y., & Moriyasu, Y. (2023). Autophagy accelerates cell death after desiccation and hydration stress in Physcomitrium. Environmental and Experimental Botany.

Ruibin Hu | Plant Microbiology | Young Researcher Award

Assoc. Prof. Dr. Ruibin Hu | Plant Microbiology | Young Researcher Award

Xianghu laboratory | China

Dr. Ruibin Hu is an Associate Research Fellow at Xianghu Laboratory (Zhejiang Provincial Laboratory of Agriculture), Hangzhou, China. He earned his Ph.D. in Analytical Chemistry from the Institute of Chemistry, Chinese Academy of Sciences, followed by postdoctoral research at the Southern University of Science and Technology, Shenzhen. His research focuses on the controllable fabrication of nanomaterials and the development of novel, highly sensitive biosensors for the detection of biomarkers and pathogens. Dr. Hu has published 16 SCI-indexed research articles in reputable journals such as Journal of Nanobiotechnology, Nano Research, Analytica Chimica Acta, and Computers in Biology and Medicine. He has an h-index of 6, with over 137 citations and 13 documented research outputs across various databases. His innovative NIR-II nanobead-based COVID-19 test kit achieved 100-fold higher sensitivity than conventional assays and has been successfully commercialized, generating over 10 million CNY in revenue. Dr. Hu has also been granted one national invention patent and has another under review. His contributions have been recognized with a Bronze Award at the First Postdoctoral Innovation and Entrepreneurship Competition in China. Dedicated to advancing nanotechnology-driven diagnostics, Dr. Hu continues to pioneer intelligent detection platforms for applications in personalized medicine, food safety, and environmental monitoring.

Profile: Scopus

Featured Publication

Hu, R., (2025). Porous Na-doped g-C₃N₄ via supramolecular self-assembly for enhanced photocatalytic antibiotic removal and bacterial inactivation. Journal of Colloid and Interface Science.