博士 副教授 硕士生导师
教育及工作经历
2020年12月至今,西南大学资源环境学院任教
2017年8月至2020年12月,西南大学农业资源与环境流动站博士后
2011年7月至2017年8月,中国农业大学硕士、博士
2007年9月至2011年6月,山东农业大学本科
学术兼职
第十届中国植物营养与肥料学会根际营养专业委员会委员、第十五届中国土壤学会委员
获奖荣誉
2026年3月,农业农村部全国农牧渔业丰收奖,排名第6
2025年6月,第六届教育教学成果奖一等奖,西南大学,排名3/5
2025年6月,实习先进工作者,西南大学
2024年9月,西南大学“优秀教师”
2018年,中国植物营养与肥料学会优秀博士论文
2017年,北京市优秀毕业生
主持科研项目
1、国家重点研发计划子课题,云贵高原坡耕地和中低产田产能提升综合技术模式与应用,2022YFD1901500,立项时间2022.11,2022.11-2026.10,60万元,主持;
2、国家重点研发计划子课题,中欧基于自然解决方案的农业养分管理和可持续转型(EU-China international cooperation on nature-based solutions for nutrient management in agriculture),2023YFE0105000,立项时间2023.6,2023.6-2026.11;
3、中央高校基本科研业务费能力提升项目,SWU-KT26050,立项时间2026.6,2026.6-2029.5,主持;
4、西南大学科研启动经费,SWU120071,立项时间2021.4,2021.10.1-2024.9.30,20万元,主持;
5、国家自然科学基金青年基金,酸性土壤上两种典型蔬菜的根际过程对根层磷素供应的响应机制,32002139,立项时间2020.9,2021.1.1-2023.12.30,24万元,主持;
6、国家重点研发计划子课题,南方山地玉米化肥农药减施技术集成研究与示范,2018YFD0200700,立项时间2018.6,2018.7-2020.12,70万元,主持;
7、中国博士后基金,紫色土上三种典型蔬菜磷高效利用的根际过程及调控机制,2018M643394,立项时间2018.10,2019.3-2021.12,5万元,主持;
8、中央高校基本科研业务费,酸性紫色土上典型蔬菜磷高效利用的根际过程及其调控,XDJK2019C062,立项时间2018.12,2019.3-2021.12,10万元,主持;
代表性学术成果
1. Li, M., He, YS., Mao, D., Wang, Y., Yu, Z., Zhao, ZX., Chen, XP., Yao, Z., Zhang, W. 2026. Data-driven multi-goal assessment of crop rotation: Synergizing resource, economic, environmental benefits in fragmented farmlands. Journal of Cleaner Production, 544: 147693.
2. Li, S., Herrmann, M. N., Sun, K., An, Y., Yu, Z., Liu, Q., Chen, P., Yu, E., Müller, T., Chen, X. & Zhang, W. 2026. Coordination of root morphological and rhizosphere traits drives phosphorus acquisition of pepper within a root economics space. Plant and Soil, 1-18.
3. Jiao, J., Sun, L., Wang, Y., Yao, Z., Chen, X., & Zhang, W. 2026. Global meta-analysis of micro-nano bubbles aeration irrigation to improve crop yield and quality by regulating soil physicochemical and microbial properties. Plant and Soil, 520: 1053-1069.
4. Zhou, C. X., Zhang, W., Yu, B. G., Yang, H. F., Wang, Y., Sun, K., Zhao, F.L., Yang, H.Y., Lakshmanan, P., Chen, X.P. & Zou, C. Q. 2026. Unraveling iron and zinc efficiency in pepper: integration of root architecture, uptake kinetics, and transcriptional regulation. Plant and Soil, 521, 691-704.
5. Wang, Z., Yun, S., An, Y., Shu, L., Li, S., Sun, K., & Zhang, W. 2025. Effect of fungicides on soil respiration, microbial community, and enzyme activity: A global meta-analysis (1975–2024). Ecotoxicology and Environmental Safety, 289: 117433.
6. Li, S., Wei, B., Sun, K., Cui, Y., Wang, Y., Li, H., Zhou, C., Wang, Z., Zhang, Z., Yang, H., Chen, X., & Zhang, W, 2025. Root-driven phosphorus mobilization in chinese cabbage: Rhizosphere adaptations and impacts on soil phosphorus dynamics. Plant Physiology and Biochemistry, 110445.
7. Zhang, Z., Cui, Y., Wang, Z., Li, S., Wei, B., Liu, Q., Yu, Z., & Zhang, W, 2025. Unlocking the potential of biofertilizer: Soil microbial contributions to nutrient availability and vegetable yield. Plant and Soil,515(2):1599-1612.
8. Wang, Y., Li, S., Wang, Y., Yao, Z., Yu, Z., Zhang, W., & Yang, J, 2025. Seed coatings as biofilm micro-habitats: Principles, applications, and sustainability impacts. Agronomy 15, 2854.
9. Du, L., Zhang, Z., Chen, Y., Wang, Y., Zhou, C., Yang, H., & Zhang, W. 2024. Heterogeneous impact of soil acidification on crop yield reduction and its regulatory variables: A global meta-analysis. Field Crops Research, 319: 109643.
10. He, Y., Su, R., Wang, Y., Li, S., Huang, Q., Chen, X., Zhang, W., & Yao, Z. 2024. Environmental impacts and nitrogen-carbon-energy nexus of vegetable production in subtropical plateau lake basins. Frontiers in plant science, 15.
11. Li, S., Chen, X., Wang, Z., Wu, D., Wang, M., Müeller, T., Zou, C., Chen, X., & Zhang, W. 2024. Phosphorus fertilizer management for high yields in intensive winter wheat-summer maize rotation system: Integrating phosphorus budget and soil available phosphorus. Field Crops Research, 313: 109410.
12. Sun, K., Cui, Y., Sun, L., Wei, B., Wang, Y., Li, S., Zhou, C., Wang, Y., & Zhang, W. 2024. Optimizing the manure substitution rate based on phosphorus fertilizer to enhance soil phosphorus turnover and root uptake in pepper (Capsicum). Frontiers in Plant Science, 15.
13. Sun, L., Wei, B., Wu, D., Sun, K., Jiao, J., & Zhang, W. 2024. The Effects of Struvite on Biomass and Soil Phosphorus Availability and Uptake in Chinese Cabbage, Cowpea, and Maize. Agronomy, 14(8): 1852.
14. Wang, Y., Cui, Y., Li, S., Yang, H., & Zhang, W. 2024. Spatial distribution and environmental risk of soil phosphorus under a long-term fertilizer strategy in a rice–wheat rotation system. Nutrient cycling in agroecosystems, 128(1): 73-88.
15. Zhou, C. X., Zhang, W., Yu, B. G., Yang, H. F., Zhao, Q. Y., Wang, Y., Sun, K., Lakshmanan, P., Chen, X. P., & Zou, C. Q. 2024. Global analysis of spatio-temporal variation in mineral nutritional quality of pepper (Capsicum spp.) fruit and its regulatory variables: A meta-analysis. Food Res Int, 193: 114855.
16. 李浩然, 魏冰丽, 孙凯, 王媛, 周程祥, 李顺晋, 崔玉涛, & 张伟. 2024. 种子磷肥包衣对辣椒育苗阶段根系发育和养分吸收的影响. 农业工程技术, 44(12): 36-42.
17. Wang, Y., Cui, Y., Wang, K., He, X., Dong, Y., Li, S., Wang, Y., Yang, H., Chen, X., & Zhang, W. 2023. The agronomic and environmental assessment of soil phosphorus levels for crop production: a meta-analysis. Agronomy for Sustainable Development, 43(2).
18. Wang, Y., Zhang, W., Müller, T., Lakshmanan, P., Liu, Y., Liang, T., Wang, L., Yang, H., & Chen, X. 2023. Soil phosphorus availability and fractionation in response to different phosphorus sources in alkaline and acid soils: a short-term incubation study. Scientific Reports, 13(1).
19. 张伟, 陈轩敬, 马林, 邓燕, 曹宁, 肖然, 张福锁, & 陈新平. 2023. 再论中国磷肥需求预测——基于农业绿色发展视角. 土壤学报, 60(05): 1389-1397.
20. 崔玉涛, 李顺晋, 王媛, 孙凯, 李浩然, & 张伟. 2023. 磷肥施用量和方式对辣椒产量及磷素吸收利用的影响. 植物营养与肥料学报, 29(12): 2322-2331.
21. 孙凯, 崔玉涛, 李顺晋, 魏冰丽, 王媛, 杨宏博, 王孝忠, & 张伟. 2023. 不同有机物料施用对菜地磷累积和转化的影响. 环境科学.
22. Guan, X., Liu, C., Li, Y., Wang, X., Liu, Y., Zou, C., Chen, X., & Zhang, W. 2022. Reducing the environmental risks related to phosphorus surplus resulting from greenhouse cucumber production in China. Journal of Cleaner Production, 332: 130076.
23. 安雨丽, 李顺晋, 张育文, 王媛, 崔玉涛, 李浩然, 陈新平, & 张伟. 2022. 有机肥施用年限对菜地重金属累积迁移的影响. 西南大学学报(自然科学版), 44(09): 41-51.
24. 张育文, 范子晗, 李顺晋, 安雨丽, 吴玥, 卢明, 陈新平, & 张伟. 2022. 基于辣椒产量、磷素累积及土壤磷环境风险的磷肥用量研究. 中国土壤与肥料(05): 34-42.
25. Zhang, W., Zhang, W., Wang, X., Liu, D., Zou, C., & Chen, X. 2021. Quantitative evaluation of the grain zinc in cereal crops caused by phosphorus fertilization. A meta-analysis. Agronomy for Sustainable Development, 41(1).
26. Zhang, W., Zhang, Y., An, Y., & Chen, X. 2021. Phosphorus fractionation related to environmental risks resulting from intensive vegetable cropping and fertilization in a subtropical region. Environmental Pollution, 269: 116098.
27. 李顺晋, 安雨丽, 崔玉涛, 李浩然, 陈新平, & 张伟. 2021. 中国小麦生产的磷肥用量优化潜力及其对产量、籽粒营养和环境效应的影响. 浙江农业学报, 33(08): 1358-1366.
28. 吴玥, 寇智瑞, 陈新平, 张育文, & 张伟. 2021. 氮肥供应对辣椒营养品质的影响及评价. 西南大学学报(自然科学版), 43(1): 87-94.
29. Zhang, W., Xue, Y., Chen, X., Zhang, F., & Zou, C. 2020. Zinc nutrition for high productivity and human health in intensive production of wheat. Advances in Agronomy, 163: 179-217.
30. Zhang, W., Zou, C., Chen, X., Liu, Y., Liu, D., Yang, H., Deng, Y., & Chen, X. 2020. Phosphorus application decreased copper concentration but not iron in maize grain. Agronomy, 10(11): 1716.
31. 薛艳凌, 陈新平, & 张伟. 2020. 振荡方式对土壤磷素分级的影响. 中国农学通报, 36(33): 80-86.
32. 张育文, 范子晗, 陈新平, 杨怀玉, 吴玥, & 张伟. 2019. 不同供磷水平对辣椒根系形态和根际特征的影响. 中国蔬菜(11): 49-55.
33. Chen, X., Zhang, W., Wang, Q., Liu, Y., Liu, D., & Zou, C. 2018. Zinc nutrition of wheat in response to application of phosphorus to a calcareous soil and an acid soil. Plant and Soil.
34. Zhang, W., Chen, X., Liu, Y., Liu, D., Chen, X., & Zou, C. 2018. The role of phosphorus supply in maximizing the leaf area, photosynthetic rate, coordinated to grain yield of summer maize. Field Crops Research, 219: 113-119.
35. Zhang, W., Liu, D., Li, C., Chen, X., & Zou, C. 2017. Accumulation, partitioning, and bioavailability of micronutrients in summer maize as affected by phosphorus supply. European Journal of Agronomy, 86: 48-59.
36. Zhang, W., Liu, D., Liu, Y., Chen, X., & Zou, C. 2017. Overuse of phosphorus fertilizer reduces the grain and flour protein contents and zinc bioavailability of winter wheat (Triticum aestivum L.). Journal of Agricultural and Food Chemistry, 65(8): 1473-1482.
37. Zhang, W., Liu, D., Liu, Y., Cui, Z., Chen, X., & Zou, C. 2017. Zinc uptake and accumulation in winter wheat relative to changes in root morphology and mycorrhizal colonization following varying phosphorus application on calcareous soil. Field Crops Research, 197: 74-82.
38. Zhang, W., Liu, D., Cui, Z., Chen, X., & Zou, C. 2016. Zinc accumulation and remobilization in winter wheat as affected by phosphorus application. Field Crops Research, 184: 155-161.
39. Zhang, W., Liu, D., Li, C., Cui, Z., Chen, X., Russell, Y., & Zou, C. 2015. Zinc accumulation and remobilization in winter wheat as affected by phosphorus application. Field Crops Research, 184: 155-161.