
| 姓 名 |
冯璐 |
出生年月 |
1984年3月 |
| 性 别 |
女 |
博导/硕导 |
硕导 |
| 民 族 |
汉 |
最高学位 |
博士 |
| 办公电话 |
0372-2562293 |
邮 箱 |
fenglucri@126.com |
| 招生专业 |
作物栽培学与耕作学 |
研究方向 |
作物生理生态 |
| 工作经历: 2009.01-2011.12,中国农业科学院棉花研究所研究实习员 2012.01-2016.12,中国农业科学院棉花研究所助理研究员 2017.01-2024.12,中国农业科学元棉花研究所副研究员 2025.01至今,中国农业科学院棉花研究所研究员
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| 主要科研项目: 1. 国家重点研发计划专项子课题,2018-2022 年,主持 2. 新疆重点研发计划专项子课题,2025-2027 年,主持 3. 新疆自治区乡村振兴产业发展科技行动项目,2024-2025年,主持 4. 河南省科技厅科技攻关项目,2022-2024年,主持 5. 河南省自然基金面上项目,2026-2028年,主持 |
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| 代表性成果: 1. Cotton cultivation technology with Chinese characteristics has driven the 70-yr development of cotton production in China. Journal of Integrative Agriculture,2022, 第一作者 2. Inhibition of apical dominance affects boll spatial distribution, yield and fiber quality of field-grown cotton. Industrial crops and products,2021, 通讯作者 3. Water and heat resource utilization of cotton under different cropping patterns and their effects on crop biomass and yield formation. Agricultural and Forest Meteorology,2022, 通讯作者 4. Changes in within-boll yield components explain cotton yield and quality variation across planting dates under a double cropping system of cotton-wheat. Field crops Research,2023, 通讯作者 5. A Comprehensive Comparative Analysis of Deep Learning Based Feature Representations for Molecular Taste Prediction. Foods,2023, 通讯作者 6. Quantifying physiological contributions to yield loss in response to planting date in short-season cotton under a cotton-wheat double-cropping syste. European journal of Agronomy,2024, 通讯作者 7. Enhanced cotton yield and fiber quality by optimizing irrigation amount and frequency in Arid areas of Northwest China. Agronomy,2024, 通讯作者 8. Xinjiang cotton: Achieving super-high yield through efficient utilization of light, heat, water, and fertilizer by three generations of cultivation technology systems. Field crops Research,2024, 第一作者 9. Water dynamics and competition in cotton populations: Assessing soil moisture utilization and yield patterns under different planting densities using advanced spatial monitoring and analysis. Industrial crops and products,2024, 通讯作者 10. Water dynamics and competition in cotton populations: Assessing soil moisture utilization and yield patterns under different planting densities using advanced spatial monitoring analysis,Industrial Crops and Products,2025,通讯作者 11. A 5-year field study to assess interannual variability and determinants of cotton fiber quality in intercropping systems,European Journal of Agronomy,2025,通讯作者 |
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| 奖励情况: 1. 基于数量化栽培的轻简化植棉技术及产品研制与示范,2021年,河南省科技进步二等奖; 2. Innovation and Application of Key Cotton Production Technology for High Yield and High Efficiency in Oases,2020年,国际发明专利金奖 |
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技术支持:中国农业科学院农业信息研究所

