1、1. Chen Y, Liang K, Cui B, Hou J, Rosenqvist E, Fang L*, Liu F*. (2025). Incorporating the temperature responses of stomatal and non-stomatal limitations to photosynthesis improves the predictability of the unified stomatal optimization model for wheat under heat stress. Agricultural and Forest Meteorology, 362, 110381. (#共同通讯作者) (JCR 一区/中科院一区 top)
2、2. Fang L, Struik PC, Girousse C, Yin X, Martre P. (2024). Source–sink relationships during grain filling in wheat in response to various temperature, water deficit, and nitrogen deficit regimes. Journal of Experimental Botany, 75(20), 6563-6578. (JCR 一区/中科院二区 top)
3、3. Fang L, Martre P, Jin K, Du X, van der Putten PEL, Yin X, Struik PC. (2023). Neglecting acclimation of photosynthesis under drought can cause significant errors in predicting leaf photosynthesis in wheat. Global Change Biology, 29(2), 505-521. (JCR 一区/中科院一区 top)
4、4. Fang L, Yin X, van der Putten PEL, Martre P, Struik PC. (2022). Drought exerts a greater influence than growth temperature on the temperature response of leaf day respiration in wheat (Triticum aestivum). Plant, Cell & Environment, 45(7), 2062-2077. (JCR 一区/中科院一区 top)
5、5. Wei Z#, Fang L#, Li X, Liu J, Liu F. (2021). Endogenous ABA level modulates the effects of CO2 elevation and soil water deficit on growth, water and nitrogen use efficiencies in barley and tomato plants. Agricultural Water Management, 249, 106808. (#同等贡献第一作者) (JCR 一区/中科院一区 top)
6、6. Wei Z#, Fang L#, Li X, Liu J, Liu F. (2020). Effects of elevated atmospheric CO2 on leaf gas exchange response to progressive drought in barley and tomato plants with different endogenous ABA levels. Plant and Soil, 447(1), 431-446. (#同等贡献第一作者) (JCR 一区/中科院二区 top)
7、7. Fang L, Abdelhakim LOA, Hegelund JN, Li S, Liu J, Peng X, Li X, Wei Z, Liu F. (2019). ABA-mediated regulation of leaf and root hydraulic conductance in tomato grown at elevated CO2 is associated with altered gene expression of aquaporins. Horticulture Research, 6(1), 1-10. (JCR 一区/中科院一区 top)