Xuefeng Shen | Sustainable Crop Production Systems | Best Researcher Award | 3695

Prof. Xuefeng Shen | Sustainable Crop Production Systems | Best Researcher Award

Professor / Associate Dean at Guangdong Ocean University, China

Prof. Xuefeng Shen is a distinguished academic and researcher at Guangdong Ocean University, holding the position of Professor and Associate Dean. He earned his doctoral degree in agriculture from China Agricultural University, specializing in crop cultivation and stress physiology. Prof. Shen has led multiple research projects funded by the National Natural Science Foundation of China and the Provincial Natural Science Foundation. With over 60 published academic papers and 6 national invention patents, his contributions to agricultural research have been significant. He is also the author of two books, Agricultural Standardized System and Peanut High-efficiency Cultivation. In recognition of his work, Prof. Shen has received the third prize for agricultural technology promotion in Guangdong Province and an award for young teachers from the 16th Huo Yingdong Education Foundation. He actively participates in the cultivation of salt-tolerant crops and weed control, and serves as Vice Chairman of the Zhanjiang Tropical Agriculture Society.

Professional Profile :

Scopus Profile

Education :

Prof. Xuefeng Shen earned his doctoral degree in agriculture from China Agricultural University, one of the leading institutions in China. His academic journey has been focused on crop cultivation and stress physiology, areas in which he has made significant contributions through both research and innovation. Throughout his education, Prof. Shen developed a deep understanding of agricultural sciences, particularly the challenges and solutions related to crop growth under stress conditions. His educational foundation laid the groundwork for his successful career as a researcher and educator. Over the years, he has continued to build on his academic expertise, leading multiple research projects funded by both the National Natural Science Foundation of China and the Provincial Natural Science Foundation. His academic background has also enabled him to author several influential publications, including books on agricultural systems and high-efficiency cultivation, further solidifying his position as a leading figure in the field of agricultural research.

Professional Experience:

Prof. Xuefeng Shen is an accomplished academic with extensive experience in agricultural research, particularly in crop cultivation and stress physiology. He holds the position of Professor and Associate Dean at Guangdong Ocean University, where he has led several groundbreaking research projects. Prof. Shen has successfully presided over five projects funded by the National Natural Science Foundation of China and the Provincial Natural Science Foundation. He has published over 60 academic papers and holds six national invention patents, demonstrating his strong research capabilities and innovative approach. In addition to his research, Prof. Shen has authored books such as Agricultural Standardized System and Peanut High-efficiency Cultivation, contributing valuable knowledge to the field. His leadership extends beyond academia as he serves as the Vice Chairman and Executive Director of the Zhanjiang Tropical Agriculture Society. His recognition includes prestigious awards, such as the third prize for agricultural technology promotion in Guangdong Province and the Young Teacher Award from the Huo Yingdong Education Foundation.

Research Interest:

Prof. Xuefeng Shen’s research interests primarily focus on crop cultivation and stress physiology, with a particular emphasis on improving agricultural productivity under challenging environmental conditions. His work explores the mechanisms by which crops respond to abiotic stresses, such as drought, salinity, and extreme temperatures, aiming to develop more resilient and high-yielding crop varieties. Prof. Shen has been involved in several projects related to the cultivation of salt-tolerant crops and weed control in farmland, addressing key challenges in modern agriculture. He has contributed significantly to the development of agricultural technologies that enhance crop stress resistance and efficiency. In addition to his research on crop physiology, Prof. Shen’s work extends to the creation of agricultural standardized systems and the promotion of high-efficiency cultivation techniques, particularly in peanuts. His innovative approach is reflected in his numerous publications and national patents, which have the potential to revolutionize agricultural practices and improve food security.

Award and Honor:

Prof. Xuefeng Shen has received numerous prestigious awards and honors for his outstanding contributions to the field of crop cultivation and stress physiology. Notably, he was awarded the third prize for agricultural technology promotion in Guangdong Province, recognizing his significant impact on advancing agricultural practices. Additionally, Prof. Shen was honored with the Young Teacher Award from the 16th Huo Yingdong Education Foundation, which acknowledges his excellence in teaching and his dedication to nurturing the next generation of agricultural scientists. These accolades, alongside his impressive academic achievements, including over 60 published papers and six national invention patents, underscore his leadership in agricultural research. Prof. Shen’s work continues to influence the agricultural community, and his role as a member of the Youth Editorial Committee of Guangdong Agricultural Science and his position as Vice Chairman of the Zhanjiang Tropical Agriculture Society further solidify his standing as a respected figure in agricultural science.

Conclusion:

Prof. Xuefeng Shen is a distinguished researcher with a remarkable track record in crop cultivation and stress physiology. His leadership in multiple projects funded by the National Natural Science Foundation of China and the Provincial Natural Science Foundation underscores his expertise and ability to secure significant research funding. With over 60 published academic papers and six national invention patents, Prof. Shen has made notable contributions to the agricultural field. His recognition through awards such as the third prize for agricultural technology promotion in Guangdong Province and the Young Teacher Award from the Huo Yingdong Education Foundation further solidifies his reputation as an accomplished researcher and educator. While expanding his industry collaborations and international presence could enhance the practical impact of his work, Prof. Shen’s research has already made a substantial contribution to advancing agricultural science. He is undoubtedly a strong candidate for the Best Researcher Award, with the potential for even greater global influence.

Publications Top Noted:

  • Mitigation Effect of Exogenous Nano-Silicon on Salt Stress Damage of Rice Seedlings
    Authors: Xiong, J., Yang, X., Sun, M., Zhao, L., Shen, X.
    Year: 2025
    Citations: 0
  • Effects of Exogenous Spermidine on Seed Germination and Physiological Metabolism of Rice Under NaCl Stress
    Authors: Yang, X., Xiong, J., Du, X., Zheng, D., Shen, X.
    Year: 2024
    Citations: 0
  • Spermidine augments salt stress resilience in rice roots potentially by enhancing OsbZIP73’s RNA binding capacity
    Authors: Shen, X., Dai, S., Chen, M., Huang, Y.
    Year: 2024
    Citations: 2
  • Optimizing Nitrogen Dosage and Planting Density to Improve Japonica Rice Yield
    Authors: Zhao, L., Zhou, H., Tang, L., Feng, N., Shen, X.
    Year: 2024
    Citations: 0
  • Transcriptomic and Lipidomic Analysis Reveals Complex Regulation Mechanisms Underlying Rice Roots’ Response to Salt Stress
    Authors: Xue, Y., Zhou, C., Feng, N., Liu, Y., Zhang, R.
    Year: 2024
    Citations: 2
  • Integrated transcriptome and metabolome analysis of salinity tolerance in response to foliar application of choline chloride in rice (Oryza sativa L.)
    Authors: Huo, J., Yu, M., Feng, N., Zhao, L., Meng, F.
    Year: 2024
    Citations: 1
  • Plant growth regulators mitigate oxidative damage to rice seedling roots by NaCl stress
    Authors: Wang, Y., Zhao, L.-M., Feng, N., Lu, X., Deng, P.
    Year: 2024
    Citations: 1
  • Comparative transcriptome analysis of gene responses of salt-tolerant and salt-sensitive rice cultivars to salt stress
    Authors: Fang, X., Mo, J., Zhou, H., Xu, J., Yang, S.
    Year: 2023
    Citations: 9
  • Global Responses of Autopolyploid Sugarcane Badila (Saccharum officinarum L.) to Drought Stress Based on Comparative Transcriptome and Metabolome Profiling
    Authors: Yang, S., Chu, N., Feng, N., Shen, X., Zheng, D.
    Year: 2023
    Citations: 9
  • Physiological mechanisms of ABA-induced salinity tolerance in leaves and roots of rice
    Authors: Chen, G., Zheng, D., Feng, N., Meng, F., Huang, A.
    Year: 2022
    Citations: 49

 

Zahoor Ahmad | Crop Physiology | Best Researcher Award

Assoc Prof Dr Zahoor Ahmad |  Crop Physiology |  Best Researcher Award

Associate Professor at  University of Central Punjab, Pakistan

Associate Professor, Campus Coordinator University of Central Punjab, Constituent Punjab College Bahawalpur.

Profile:

Academic Qualifications:

  • Post-Doctorate: Department of Field Crops, Faculty of Agriculture, Cukurova University, Adana, Turkey (January 17 – September 17, 2020)
  • Ph.D. in Crop Physiology: University of Agriculture Faisalabad, Punjab, Pakistan (Completed on December 13, 2015)
    • Thesis Title: Maize (Zea mays L.) Responses to Supplemental Foliar Applied Phosphorus under Drought Stress
  • M.Sc. (Hons.) in Agriculture (Agronomy/Crop Physiology): University of Agriculture Faisalabad, Punjab, Pakistan (2011)
    • Thesis Title: Response of Cotton (Gossypium hirsutum L.) to Foliar Applied Potassium Sulphate (K2SO4)
  • B.Sc. (Hons.) in Agriculture (Agronomy/Crop Physiology): University of Agriculture Faisalabad, Punjab, Pakistan (2009)
  • Intermediate (F.Sc. Pre-medical): BISE Bahawalpur (2005)
  • Matric (Science): BISE Bahawalpur (2002)

Professional Experience:

  • Assistant Professor, Head of Botany Department: Constituent College of University of Central Punjab, Bahawalpur (October 2, 2020 – Present)
  • Post-Doctoral Researcher: Department of Field Crops, Faculty of Agriculture, Cukurova University, Adana, Turkey (January 17 – September 17, 2020)
  • Visiting Faculty Member: Department of Life Sciences (Botany), The Islamia University of Bahawalpur (October 4, 2017 – January 10, 2020)
  • Lecturer: Allama Iqbal College Bahawalpur (September 15, 2017 – December 31, 2019)
  • Assistant Professor: Cholistan Institute of Desert Studies (CIDS), The Islamia University of Bahawalpur, Punjab, Pakistan (July 19, 2016 – July 18, 2017)

Research Interests:

  • Understanding the physiological limitations to crop productivity under field and controlled conditions.
  • Exploring abiotic stress tolerance (drought, salinity, heavy metals, heat) through foliar application of nutrients and trace elements.
  • Identifying morphological, physiological, and biochemical traits for enhanced stress tolerance in crops.
  • Screening germplasm for stress tolerance traits and developing methodologies for productivity enhancement under abiotic stress conditions.

Conclusion:

Considering Dr. Zahoor Ahmad’s research focus, academic background, professional experience, publication record, and contribution to crop physiology under abiotic stress conditions, he seems to be a suitable candidate for the “Best Researcher Award.” His work is significant for improving crop resilience and productivity, making him a valuable contributor to agricultural sciences.

Citations:

  • 1,729 Citations from 1,395 documents
  • 91 Documents authored
  • h-index of 22

Publication Top Notes:

  • Modulating Physiological and Antioxidant Responses in Wheat Cultivars via Foliar Application of Silicon Nanoparticles (SiNPs) Under Arsenic Stress Conditions
    Ahmad, Z., Younis, R., Ahmad, T., Alharby, H.F., Alsamadany, H. (2024). Silicon, 16(12), 5199–5211.
  • Silicon-Mediated Improvement in Maize (Zea mays L.) Resilience: Unrevealing Morpho-Physiological, Biochemical, and Root Attributes Against Cadmium and Drought Stress
    Sabir, A., Waraich, E.A., Ahmad, M., Ahmad, Z., Bibi, S. (2024). Silicon, 16(7), 3095–3109. (1 Citation)
  • Improving Alkaline Stress Tolerance in Maize through Seed Priming with Silicon Nanoparticles: A Comprehensive Investigation of Growth, Photosynthetic Pigments, Antioxidants, and Ion Balance
    Alsamadany, H., Alharby, H.F., Ahmad, Z., Alzahrani, Y.M., Almaghamsi, A. (2024). Silicon, 16(5), 2233–2244.
  • Enhancing the Physiological and Biochemical Potential of Praecitrullus fistulosus L. through Synergistic Action of Biochar and Zinc Oxide Nanoparticles
    Sana, S., Binyamin, A., Ramzan, M., Avila-Quezada, G.D., Abd-Allah, E.F. (2024). Journal of Soil Science and Plant Nutrition.
  • Perspectives of Nanoparticles as Priming Agents for Amelioration of Abiotic Stresses in Crops
    Ahmad, Z., Waraich, E.A., Iqbal, M.A., Ahmed, S., Bano, S. (2024). In The Nanotechnology Driven Agriculture: The Future Ahead (pp. 117–137).
  • Prospects of Nanotechnology for Abiotic and Biotic Stresses Amelioration in Field Crops
    Ahmad, Z., Waraich, E.A., Barutçular, C., Ahmad, M., Bano, S. (2024). In The Nanotechnology Driven Agriculture: The Future Ahead (pp. 67–84).
  • Effect of Form of Silicon and the Timing of a Single Foliar Application on Sugar Beet Yield
    Siuda, A., Artyszak, A., Gozdowski, D., Ahmad, Z. (2024). Agriculture (Switzerland), 14(1), 86.
  • Ecofriendly Management of Insect Pests for Sustainable Agriculture
    Abbasi, A., Asif, A., Ahmad, Z., Saleha, A., Zafar, Z. (2023). In Climate-Resilient Agriculture, Volume 2, pp. 931–957. (1 Citation)
  • Climate Change and Global Crop Production
    Ahmad, Z., Ahmad, T., Abbasi, A., Sana, S., Jameel, J. (2023). In Climate-Resilient Agriculture, Volume 1, pp. 27–56. (1 Citation)
  • Silicon-Mediated Growth, Physiological, Biochemical and Root Alterations to Confer Drought and Nickel Stress Tolerance in Maize (Zea mays L.)
    Ishaq, H., Waraich, E.A., Hussain, S., Ahmad, Z., Saifullah. (2023). Silicon, 15(15), 6579–6589. (1 Citation)