zhanming tan | Agricultural | Editorial Board Member

Prof. zhanming tan | Agricultural | Editorial Board Member

Prof. Zhanming Tan | Tarim University | China 

Zhanming Tan has established a strong academic footprint through impactful research contributions, reflected in an h-index of 6, a collection of 25 scholarly documents, and 139 citations across the literature. His work spans key areas of horticultural science, including stress physiology of greenhouse vegetables, optimization of soilless cultivation systems, water–fertilizer coupling strategies, and advanced substrate innovations tailored for efficient vegetable production. These contributions have strengthened scientific understanding and practical applications in controlled-environment agriculture, particularly in improving tomato and cucumber growth performance, enhancing quality traits, and refining cultivation models for challenging environments. His research further integrates modern analytical methods, including machine learning-based crop quality assessment and physiological evaluation under light, water, and nutrient variability. Beyond journal articles, Zhanming Tan has also produced monographs, textbooks, and patented technologies that support the development of innovative planting devices, fertilization systems, and substrate management tools. The cumulative impact of his documented output—demonstrated through publication volume, citation count, and h-index performance—highlights his commitment to advancing sustainable and high-efficiency facility agriculture. His work continues to offer scalable solutions that enhance crop productivity, resource-use efficiency, and horticultural resilience in modern agricultural systems.

Profile: Scopus

Featured Publications

Li, Y., Tan, Z., Liu, Y., Peng, Y., & Liu, C. (2025). Root-specific overexpression of the CmDUF239-1 gene enhances heat tolerance in melon seedlings by upregulating antioxidant enzymes activities, proline content, and expression of heat shock protein-related genes. Horticulturae.

 Liu, Y., Tan, Z., Meng, L., Li, Y., & Peng, Y. (2025). CmDUF239-1 improves the salt tolerance of grafted melon by enhancing antioxidant capacity and Na+/K+ homeostasis. Plants

Ziqian Wang | Agricultural | Best Researcher Award

Mr. Ziqian Wang | Agricultural | Best Researcher Award

Mr. Ziqian Wang, Xinjiang Agricultural University, China

Ziqian Wang is a researcher at Xinjiang Agricultural University, China, specializing in soil-crop system water regulation, wheat water conservation, and drought resistance. He is currently pursuing a Bachelor’s degree in Crop Science under the mentorship of Shubing Shi. His research focuses on optimizing deficit irrigation management and improving water use efficiency in arid and semi-arid farmlands. He has published several SCI papers and participated in major scientific projects on sustainable agriculture. Skilled in data analysis, modeling, and research software, he has also won awards for innovation and academic excellence.

Profile

Scopus

Summary:

Mr. Ziqian Wang is an accomplished researcher with significant contributions to sustainable agriculture, particularly in water management for dryland farming. His work in deficit irrigation and wheat physiology is well-regarded, with multiple publications and participation in high-impact scientific projects. His technical expertise, innovative research, and academic contributions make him a strong candidate for the Best Researcher Award.

🎓 Education

Ziqian Wang is currently pursuing a Bachelor’s degree in Crop Science at Xinjiang Agricultural University, under the guidance of Shubing Shi, since September 2022. Prior to this, he completed his undergraduate studies in Agronomy at Gansu Agricultural University from September 2018 to June 2022, mentored by Juncheng Wang. His academic work includes research on saltgrass germination under drought stress and the effects of deficit-regulated irrigation on winter wheat yield and water use efficiency.

💼Experience

He has gained significant research experience as a research assistant at the Soil Fertilizer and Water Saving Agriculture Research Institute, Gansu Academy of Agricultural Sciences. His work involved soil physiology and biochemistry assessments, wheat area research, seed testing, and data analysis. Additionally, he participated in major scientific and technological projects in Xinjiang, focusing on efficient water use in modern agriculture and high-yield irrigation technologies, leading to the publication of SCI papers.

🔬Research Focus

His research is dedicated to soil-crop system water regulation, wheat water conservation, and drought resistance. His studies emphasize deficit irrigation management, optimization of wheat root growth dynamics under regulated irrigation, and improving water utilization efficiency in arid and semi-arid farmlands. His work contributes to the broader goal of enhancing sustainable agriculture in dryland ecosystems.

🛠️Skills

Ziqian Wang possesses strong skills in project applications, assisting with research grant proposals, and managing laboratory operations. He is proficient in various research tools, including R, Matlab, Adobe Illustrator, Mendeley, Origin, and SPSS. He has experience with model simulation techniques such as Logistic regression and RandomForest and is adept at using Win-RhizoProVision5.0 for root morphology analysis. He has passed the National English IV exam and scored 435 in the Level VI exam.

🏆Awards

He has won the First Prize at the Sixth China International “Internet Plus” Student Innovation and Entrepreneurship Competition. He has also received first and second prizes in calligraphy competitions during his postgraduate studies.

📚 Publications

  • Title: Cadmium (Cd) Tolerance and Phytoremediation Potential in Fiber Crops: Research Updates and Future Breeding Efforts
    Authors: A. Rasheed, P. He, L. Zhao, M. Z. Hashem, Y. Jie, Z. Wang, et al.
    Year: 2024
    Journal: Agronomy

Conclusion:

Mr. Ziqian Wang is a highly suitable candidate for the Best Researcher Award. While he has already demonstrated strong potential, further leadership in research projects, interdisciplinary collaborations, and funding acquisition would further solidify his standing as a top researcher in his field.