李勇
博士生导师
硕士生导师
教师姓名:李勇
教师拼音名称:Li Yong
职称:教授
在职信息:在职
学历:博士研究生毕业
学位:农学博士学位
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毕业院校:南京农业大学
所属院系:植物科学技术学院
所在单位:植物科学技术学院
学科:作物栽培学与耕作学
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论文成果
- Huang GJ, Peng SB, Li Y*. 2022. Variation of photosynthesis during plant evolution and domestication: implications for improving crop photosynthesis. Journal of Experimental Botany, erac169, https://doi.org/10.1093/jxb/erac169.
- Huang GJ, Shu Y, Peng SB, Li Y*. 2022. Leaf photosynthesis is positively correlated with xylem and phloem areas in leaf veins in rice (Oryza sativa) plants. Annals of Botany 129: 619-631.
- Huang GJ, Fang Q, Peng SB, Li Y*. 2022. Genotypic variation of plant biomass under nitrogen deficiency is positively correlated with conservative economic traits in wheat. Journal of Experimental Botany 73: 2175-2189.
- Zhang QQ, Tang W, Peng SB, Li Y*. 2022. Limiting factors for panicle photosynthesis at the anthesis and grain filling stages in rice (Oryza sativa L.). The Plant Journal 109: 77-91..
- Zhang QQ, Yang YH, Peng SB, Li Y*. 2021. Nighttime transpirational cooling enabled by circadian regulation of stomatal conductance is related to stomatal anatomy and leaf morphology in rice. Planta 254: 12..
- Huang GJ, Yang YH, Zhu LL, Peng SB, Li Y*. 2021. Temperature responses of photosynthesis and stomatal conductance in rice and wheat plants. Agricultural and Forest Meteorology 300: 108322..
- Li Y*, Song X, Li S, Salter WT, Barbour MM. 2020. The role of leaf water potential in the temperature response of mesophyll conductance. New Phytologist, 225: 1193–1205..
- Yang YH, Zhang QQ, Huang GJ, Peng SB, Li Y*. 2020. Temperature responses of photosynthesis and leaf hydraulic conductance in rice and wheat. Plant, Cell and Environment, 43: 1437-1451..
- Ye M, Zhang ZC, Huang GJ, Xiong Z, Peng SB, Li Y*. 2020. High leaf mass per area (LMA) Oryza genotypes invest more leaf mass to cell wall and possess a low mesophyll conductance. AoB Plants, 12: DOI: 10.1093/aobpla/plaa028.
- Zhang QQ, Peng SB, Li Y*. 2019. Increase rate of light-induced stomatal conductance is related to stomatal size in the genus Oryza. Journal of Experimental Botany, 70: 5259–5269..