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    聂立孝
    2026年08月31日 13:41


一、基本情况

职称:教授、研究生导师、博士生导师

邮箱:lxnie@hainanu.edu.cn

研究领域:热带作物高产高效与绿色栽培

招生专业:博士:作物栽培学与耕作学

硕士:作物栽培学与耕作学


教育背景:

2003-09--2008-07华中农业大学 博士

2005-01--2007-07国际水稻研究所 博士论文研究

1995-09--1999-09河南科技学院 学士

学历:研究生

学位:博士


工作简历:

2019-04--至今 WilliamHill体育热带作物学院 教授

2017-01--2019-03华中农业大学 教授

2011-01--2016-12华中农业大学 副教授

2010-10--2011-04日本东北大学JSPS博士后

2008-07--2010-12华中农业大学 讲师


二、获奖情况

1.第六届全国教师教学创新大赛海南赛区三等奖,省级,2026年;

2.第五、六届全国教师教学创新大赛WilliamHill体育新农科正高组一等奖,校级,2025、2026年;

3.海南省优秀研究生指导教师,省级,2023年;

4.“WilliamHill体育热带作物品质育种及绿色生产团队”获得第六届全国专业技术人才先进集体(排第5),中共中央组织部,2021年;

5.“WilliamHill体育:智力支撑米更香”获得全国第四届省属高校精准帮扶典型项目,中华人民共和国教育部,2021年;

6.“机收再生稻丰产高效栽培技术集成与应用”湖北省科技进步奖,一等奖,省级,2018年.


三、科研概况

科研项目:

1. 国家自然科学基金面上项目,香稻香源主成分2-乙酰-1-吡咯啉合成对盐胁迫的响应机制研究,32672803,2027.01-2030.12,主持;

2. 国家自然科学基金面上项目,提高直播再生稻再生力的源库调节机制研究,31971840,2020.01-2023.12,主持;

3. 国家自然科学基金面上项目,种子引发处理对旱直播水稻种子萌发和幼苗生长的影响及其机理研究,31371571,  2014.01-2017.12,主持;

4. 国家自然科学基金地区项目,有色稻米花色苷合成对"全球暗化"背景下太阳辐射强度降低的响应机制研究,2360526,2024.01-2027.12,主持;

5. 国家自然科学基金地区项目,渍水胁迫下直播水稻萌发出苗对种子引发处理的响应机制研究,32060430,2021.01-2024.12,主持;

6. 海南省水稻产业技术体系岗位科学家项目(高效栽培岗),2024-2026;

7. 海南省重点研发计划,海南省冬季胶园大球盖菇和竹荪高效种植模式研究与示范,ZDYF2022XDNY175,2022.03-2024.3,主持;

8. 海南省重大专项,热带耐盐水稻新品种培育及配套关键技术研究与示范,ZDKJ202001,2020.12-2023.12,课题主持;

9. 国家重点研发计划,鄂东南双季稻周年规模机械化栽培技术集成与示范,2018YFD0301303, 2018.09-2020.08,子课题主持;

10. WilliamHill体育引进人才启动基金,300万元,2019.05-2024.04,主持


代表性成果:

论文(近三年)

1. Abbas H, ......Nie L*. 2026. The role of biochar as a microbial carrier in enhancing biogas production efficiency in anaerobic digestion systems. Renewable and Sustainable Energy Reviews, 226: 116335.(IF:18.0, 新锐一区)

2. Huang Z, ......Nie L*. 2026. Salt stress disrupts color stability in black rice pericarp: Integrated transcriptomic and physiological metabolism analyses reveal dual regulation of anthocyanin metabolism. Journal of Agricultural and Food Chemistry, 74: 429-442.IF:6.7, 新锐一区)

3. Li Y, ......Nie L*. 2026. Salt stress in rice: Morpho-physiological effects, nitrogen dynamics and integrated management strategies for yield improvement in saline soils. Pedosphere, 36(2): 402-415. IF:7.0, 新锐一区)

4. Zhang H, ......Nie L*. 2026. Deciphering anthocyanin biosynthesis: Shading-induced accumulation in black rice grains and its molecular regulation. Journal of Integrative Agriculture, Doi:10.1016/j.jia.2026.06.015IF:5.7, 新锐一区)

5. Song SK, ......Nie L*. 2026. Striking a balance: Grain yield and functional substances of black rice (Oryza sativa L.) under shading stress in tropical regions. European Journal of Agronomy, Doi:10.1016/j.eja.2026.128163IF:6.7, 新锐一区)

6. Li L, ......Nie L*. 2025. Foliar application of zinc oxide nanoparticles improved yield and 2-acetyl-1-pyrroline content in fragrant rice under salt stress. Crop and Environment, 4(2): 107-117.IF:8.6, 新锐一区)

7. Song SK, ......Nie L*. 2025 . Grain yield and functional substance content in colored ratoon rice system under low solar radiation stress in southern China. Field Crops Research, 334: 110162.IF:7.9, 新锐一区)

8. Huang Z, ......Nie L*. 2025. Imbalanced starch and protein accumulation during grain filling under salt stress leads to increased protein components in rice grains. Field Crops Research, 332: 110019.IF:7.9, 新锐一区)

9. Li L, ......Nie L*. 2025.Regulation of 2-acetyl-1-pyrroline (2-AP) biosynthesis and grain quality in fragrant rice under salt stress. Field Crops Research, 322: 109747.IF:7.9, 新锐一区)

10. Khan MN, ......Nie L*. 2025.Recent advances in nano-enabled plant salt tolerance: Methods of application, risk assessment, opportunities and future prospects. Journal of Integrative Agriculture, 24 (5): 1611-1630. IF:5.7, 新锐一区)

11. Song SK, ......Nie L*. 2025. Optimizing sowing date to enhance grain yield and quality formation of colored rice in tropical regions of China. Field Crops Research, 322: 109760.IF:7.9, 新锐一区)

12. Jin Z, ......Nie L*. 2024.Effect of water and nitrogen coupling on energy balance and production efficiency in rice production. Energy, 299:129739.IF:10.1, 新锐一区)

13. Mu Y, ......Nie L*. 2024. A comparative study on the role of conventional, chemical, and nanopriming for better salt tolerance during seed germination of direct seeding rice.
Journal of Integrative Agriculture, 23 (12) : 3998-4017.IF:5.7, 新锐一区)

14. Jin Z, ......Nie L*. 2024.Trade-off between grain yield and bioactive substance content of colored rice under coupled water and nitrogen conditions. Field Crops Research, 309: 109312.IF:7.9, 新锐一区)

15. Li L, ......Nie L*. 2024.Alternate wetting and drying maintains rice yield and reduces global warming potential: A global meta-analysis. Field Crops Research, 318: 109603.IF:7.9,新锐一区)

16. Zhao T, ......Nie L*. 2024.Coupling of reduced inorganic fertilizer with plant-based organic fertilizer as a promising fertilizer management strategy for colored rice in tropical regions. Journal of Integrative Agriculture, 23 (1): 93-107.IF:5.7,新锐一区)

17. Jin Z, ......Nie L*. 2024.Dry direct-seeded rice-wheat rotation system: Lower water and carbon footprint and higher carbon production efficiency and net ecosystem economic benefits. Field Crops Research, 309: 109323.IF:7.9,新锐一区)

18. Jin Z, ......Nie L*. 2023.Integrated assessment of water footprint and energy production efficiency in different rice-rape rotation systems. Energy, 266:126535.IF:10.1, 新锐一区)

19. Jin Z, ......Nie L*. 2023.Active compounds: A new direction for rice value addition. Food Chemistry-X, 19:100781.IF:9.2, 新锐一区)

20. Meng Y, ......Nie L*. 2023.Natural variation of OsML1, a mitochondrial transcription termination factor, contributes to mesocotyl length variation in rice. Plant Journal, 115: 910-925.IF:6.2, 新锐一区)


专著

1. 《Rice Production Worldwide》(第二章主编),(Springer International Publishing AG,2017);

2. CEREAL CROPS:Genetic Resources and Breeding Techniques,Edited by Tariq Shah,Lixiao Nie, Marcelo Teixeira Filho, and Rabia Amir. 2023;

3. Climate Change and Ecosystems: Challenges to Sustainable Development, Edited by Shah Fahad, Muhammad Adnan, Shah Saud, and Lixiao Nie. 2022.


专利

1. 聂立孝,彭少兵,黄见良,崔克辉.水稻“一种两收”全程机械化高产高效栽培技术. ZL 201310521643.6;

2. 聂立孝,王慰亲,刘宏岩,陶冶.一种提高旱直播水稻渍水胁迫下发芽率的种子处理方法. ZL 201510027475.4;

3. 聂立孝,彭少兵,黄见良,崔克辉.一种旱直播水稻高产高效栽培技术. ZL 201310409890.7;

4. 聂立孝,梅俊豪.一种促进湿直播水稻淹水条件下一播全苗的种子丸粒化方法. ZL 201610060639.8;

5. 聂立孝王慰亲.一种提高直播早稻低温胁迫下出苗率的种子处理方法. ZL 201610013766.2.

6. 何爱斌,聂立孝.一种快速获取不同萌发程度再生芽的方法, ZL 202211186309.5, 2023年11月;

7. 聂立孝,宋少坤.一种调温调湿双层食用菌栽培拱棚,ZL202320117531.3,2023年10月;

8. 聂立孝,宋少坤,穆逸雪,A Sustainable Cultivation Method for Promoting Anthocyanin Synthesis in Colored Rice,南非专利,2024;

9. 聂立孝,廖万杰,邹瑞龙.一种橡胶林下竹荪轻简化栽培的方法,尼日利亚专利,CRP:014335,2023年;

10. 聂立孝,穆逸雪.一种提高水稻种子耐盐发芽的纳米氧化锌引发技术,尼日利亚专利,CRP:013261,2023年;



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