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上海师范大学环境与地理科学学院导师教师师资介绍简介-宋佳博士/助理研究员Ph.D.AssistantProfessorJiaSONG

本站小编 Free考研考试/2021-01-18



宋佳Jia SONG
助理研究员(Assistant Professor
植物生理生态学,森林生态学
教育背景
博士(硕博连读),中国科学院大学,生态学
博士联培,美国加州大学洛杉矶分校,植物生理生态学
学士,河北农业大学,林学
Email: jiasong@shnu.edu.cn

宋佳博士的研究兴趣为树木水力结构和水分关系对其环境适应性的影响机制、树木全球变化响应的生物学机制等。即从树木抗逆生理和生理生态学角度入手,明确气候变化背景下森林生态系统功能形成和稳定维持的机制,探讨树木对人类活动干扰和重要全球变化因素的响应规律及其生物学机制。
研究项目
参与,国家优青青年科学基金项目“树木水力结构”
参与,国家自然科学基金面上项目“冬季栓塞抵抗和修复对长白山林区常见树种生产力和抗逆性影响的研究”
参与,美国National Science Foundation. Project Title: Functional and Genetic Basis of Leaf Venation: Testing and Expanding Theory and Core. Knowledge with Arabidopsis Vein Mutants and Ecotypes.
参与,国家自然科学基金面上项目“长白山森林优势树种对O3浓度升高的水分生理响应及机理研究”
参与,国家自然科学基金青年科学基金项目“不同染色体倍性桦木属树种水力结构研究”

荣誉嘉奖
2017年,获博士研究生国家奖学金
2016年,获中国科学院大学“三好学生”荣誉称号

论文著作
Da Yang, Yong-Jiang Zhang, Jia Song, Cun-Yang Niu and Guang-You Hao. Compound leaves are associated with high hydraulic conductance and photosynthetic capacity: evidence from trees in Northeast China. Tree Physiology, 2019. 35(5): 729-739. (SCI-Q1 TOP, IF = 3.655)
Jia Song, Da Yang, Cun-Yang Niu, Wei-Wei Zhang, Miao Wang and Guang-You Hao. Correlation between leaf size and hydraulic architecture in five compound-leaved tree species of a temperate forest in NE China. Forest Ecology and Management, 2018. 418:63-72.(SCI-Q1 TOP, IF = 3.170)
Wei-Wei Zhang, Jia Song, Miao Wang, Yan-Yan Liu, Na Li, Yong-Jiang Zhang, N. Michele Holbrook and Guang-You Hao. Divergences in hydraulic architecture form an important basis for niche differentiations between diploid and polyploid Betula species in NE China. Tree Physiology, 2017. 37(5):604-616.(共同第一作者,SCI-Q1 TOP, IF = 3.655)
Ai-Ying Wang, Miao Wang, Da Yang, Jia Song, Wei-Wei Zhang, Shi-Jie Han and Guang-You Hao. Responses of hydraulics at the whole-plant level to simulated nitrogen deposition of different levels in Fraxinus mandshurica. Tree Physiology, 2016, 36(8): 1045-1055. (SCI-Q1 TOP, IF = 3.655)
Yan-Yan Liu, Jia Song, Miao Wang, Na Li, Cun-Yang Niu and Guang-You Hao. Coordination of xylem hydraulics and stomatal regulation in keeping the integrity of xylem water transport in shoots of two compound-leaved tree species. Tree Physiology, 2015. 35(12):1333-1342. (SCI-Q1 TOP, IF = 3.655)





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