Zaid Khan
Shenzhen Polytechnic University, South China Agricultural University, Huazhong Agricultural University
About
Works at Shenzhen Polytechnic University, China.
Plant and soil scientist specializing in rhizosphere engineering.
soil–plant–microbiome interactions, biochar and nanomaterial-based soil remediation, and plant adaptation to abiotic stress. I obtained my Ph.D. from Huazhong Agricultural University, China, and completed postdoctoral training at South China Agricultural University and Shenzhen Polytechnic University. My interdisciplinary research combines plant physiology, microbial ecology, metabolomics, and transcriptomics to advance climate-resilient agriculture, leading to over 50 peer-reviewed publications and two research grants as principal investigator, including funding from the National Natural Science Foundation of China and Shenzhen Polytechnic University.
Employment
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Shenzhen Polytechnic University Postdoctoral Researcher2024 - 2026
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South China Agricultural University Postdoctoral Fellow2022 - 2024
Education
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Huazhong Agricultural University Ph.D.2018 - 2021
Projects & Funding
Projects & funding information is unavailable.
Publications (51)
- Growth regulation mechanism of Rhododendron moulmainense to high-temperature stress: integrated physiological, transcriptomic, and metabolomic insights Save
- A review and case study of Rhododendron moulmainense highlights the feasibility and adaptation of evergreen Rhododedron plants to current environmental challenges Save
- Co-application of zinc and oligosaccharides enhances zinc bioavailability, yield and nutritional quality of rice Save
- Novel AP-SNPs mitigate cadmium stress by regulating carbon-nitrogen metabolism and antioxidant defense system in rice Save
- Impact of Different Cropping Methods Coupled with Nitrogen and Zinc on Growth Parameters and Total Yield in Rice Save
- Integrated ammonium and nitrate nitrogen supply alters the composition and functionalities of rice rhizosphere bacterial communities and enhances nitrogen use efficiency Save
- Mixed Ammonium-Nitrate Nutrition Regulates Enzymes, Gene Expression, and Metabolic Pathways to Improve Nitrogen Uptake, Partitioning, and Utilization Efficiency in Rice Save
- Protective Role of GABA in Aromatic Rice Under Lead and Cadmium Toxicity: Physiological and Biochemical Insights Save
- Recent advances in nano-enabled plant salt tolerance: Methods of application, risk assessment, opportunities and future prospects Save
- Extension of GIMMS3g on MODIS NDVI for long-term global vegetation trend analysis Save