教育及工作经历
2023年7月至今,西南大学资源环境学院,副教授;
2020年9月至2023年6月,西南大学资源环境学院,讲师;
2015年7月至2020年2月,海南大学热带农林学院,讲师;
2012年10月至2014年10月,澳大利亚昆士兰大学农学与食品科学学院,博士联合培养
2008年9月至2015年6月,中国农业大学资源与环境学院,硕博连读
2004年9月至2008年6月,西南大学资源环境学院,本科
学术兼职
《中国糖料》编委会委员
Plant Cell Reports、Frontiers in Plant Science、Industrial Crops and Products等期刊审稿人
获奖荣誉
2021年西南大学第十六届教师课堂教学比赛二等奖
主持科研项目
1. 国家自然科学基金面上项目,施氮调控甘蔗根系碳分配驱动根-微生物互作反馈与氮转化吸收机制(32673592),2027.01-2030.12,50万元,在研
2. 国家重点研发计划项目子课题,基于农机农艺融合的甘蔗绿色智能肥料创制与应用(2022YFD2301105-06),2022.11-2025.12,40万元,结题
3. 洱海流域农业绿色发展研究院横向项目,甘蔗绿色智能肥创制与产业化,2023.01-2025.06,90万元,结题
4. 国家自然科学基金地区科学基金项目,钙素营养调控对“台农17号”菠萝裂柄的影响及作用机理(31860586),2019.01-2022.12,40万元,结题
代表性学术成果
1. Deng, J., Zhang, Z.F., Wang, Y.T., Ai, J., Zhao, Y., Li, B., Li, H.J., Deng, Y.*, Zhang, F.S.*, 2026. Organic fertilizer-mediated assembly of rhizosphere core microbiota contributes to increased sugarcane productivity. Frontiers in Plant Science, 16: 1689397.
2. Wang, H.Y., Yao, Y.H., Wang, H., Chen, J.X., Tang, X., Lakshmanan, P., Chen, X.P., Deng, Y.*, Zhang, F.S., 2026. Innovative integrated management achieves high productivity and profitability of sugarcane in China with low environmental costs. European Journal of Agronomy, 175: 127985.
3. Wang, H.Y., Chen, J.X., Wang, H., Yao, Y.H., Yang, L.S., Lakshmanan, P., Chen, X.P.*, Deng, Y.*, Zhang, F.S., 2025. Combined controlled-release urea and organic fertilizer boost sustainable sugarcane productivity by optimizing soil C-N properties and microbial communities. Industrial Crops and Products, 237: 122298.
4. Yang, L.S., Zhou, Y.F., Meng, B., Wang, H.Y., Liu, X.Y., Lakshmanan, P.*, Luo, T.*, Deng, Y.*, Chen, X.P., Zhang, F.S., 2025. Environmental trade-offs and productivity gains through sustainable nitrogen use in an intensive high-input sugarcane production system in China. Industrial Crops and Products, 232: 121288.
5. Zhan, J., Zhou, Y.F., Yang, L.S., Lakshmanan, P.*, Deng, K., Zhang, D., Meng, B., Wang, H.Y., Deng, Y.*, Chen, X.P., Zhang, F.S., 2025. Low ammonium and high nitrate input improves nitrogen use efficiency and growth in sugarcane through coordinated reprogramming of nitrogen and carbon metabolism. Plant Physiology and Biochemistry, 229: 110354.
6. Yang, L.S., Zhou, Y.F., Meng, B., Zhan, J., Xi, M., Deng, Y.*, Wu, W.G., Lakshmanan, P.*, Chen, X.P., Zhang, F.S., 2024. High sugarcane yield and large reduction in reactive nitrogen loss can be achieved by lowering nitrogen input. Agriculture Ecosystems & Environment, 369: 109032.
7. Yang, L.S., Wang, X.Z., Zhang, W.S., Lakshmanan, P.*, Deng, Y.*, Shi, X.J., Chen, X.P., Zhang, F.S., 2024. Greenhouse gas emissions mitigation and economic viability of sugar crops in China. Frontiers of Agricultural Science and Engineering, 11: 397-408.
8. Zhang, L., Zhang, F., He, X.Y., Dong, Y.H., Sun, K., Liu, S.L., Wang, X.Z., Yang, H.Y., Zhang, W., Lakshmanan, P., Chen, X.P.*, Deng, Y.*, 2024. Comparative metabolomics reveals complex metabolic shifts associated with nitrogen-induced color development in mature pepper fruit. Frontiers in Plant Science, 15: 1319680.
9. Zhang, L., Zhang, F., Wang, Y., Ma, X., Shen, Y.P., Wang, X.Z., Yang, H.Y., Zhang, W., Lakshmanan, P., Hu, Y.C., Xu, J.L., Chen, X.P.*, Deng, Y.*, 2023. Physiological and metabolomic analysis reveals maturity stage-dependent nitrogen regulation of vitamin C content in pepper fruit. Frontiers in Plant Science, 13: 1049785.
10. Yang, L.S., Zhou, Y.F., Meng, B., Li, H.J., Zhan, J., Xiong, H.Y., Zhao, H.Y., Cong, W.F., Wang, X.Z., Zhang, W.S., Lakshmanan, P.*, Deng, Y.*, Shi, X.J., Chen, X.P., Zhang, F.S., 2022. Reconciling productivity, profitability and sustainability of small-holder sugarcane farms: A combined life cycle and data envelopment analysis. Agricultural Systems, 199: 103392.
11. Yang, L.S.#, Deng, Y.#, Wang, X.Z., Zhang, W.S., Shi, X.J., Chen, X.P., Lakshmanan, P.*, Zhang, F.S.*, 2021. Global direct nitrous oxide emissions from the bioenergy crop sugarcane (Saccharum spp. inter-specific hybrids). Science of the Total Environment, 752: 141795.
12. He, H.S., Jin, X., Ma, H.Z., Deng, Y.*, Huang, J.Q.*, Yin L.Y., 2020. Changes of plant biomass partitioning, tissue nutrients and carbohydrates status in magnesium-deficient banana seedlings and remedy potential by foliar application of magnesium. Scientia Horticulture, 268: 109377.