福建农林大学植物保护学院
李胜兰
发布时间 :2024-05-09      浏览:10

李胜兰,福建农林大学菌草与生态学院讲师,2021年获丹麦哥本哈根大学作物学博士学位。主要从事全球气候变化与植物水分生理生态相关研究,重点关注树木和农作物关键功能性状以及碳水耦合关系对环境变化的响应机制。主持国家自然科学基金青年项目,入选全国博士后交流计划引进项目、江苏省卓越博士后计划项目。近年来以第一作者或共同作者在Plant, Cell & EnvironmentCurrent Opinion in Plant BiologyEnvironmental and Experimental BotanyHorticulture Research等学术期刊上发表论文10余篇,参与《全球变化生态学》教材编写。

 

科研方向:

1.      化学信号和水力信号对气孔行为的调控;

2.      植物功能性状对环境变化的响应机制;

3.      气候变化下树木的碳水耦合过程

 

科研项目:

国家自然科学基金青年项目(42207153),2023-202530万元,主持

 

获奖情况:

2022年:入选博士后国际交流计划引进项目

2022年:入选江苏省卓越博士后计划

2018年:获国家建设高水平大学公派研究生项目奖学金

 

代表性论文

(1)   Shenglan Li, Evgenios Agathokleous, Zhaozhong Feng. Climate gradient and leaf carbon investment influence the effects of climate change on water use efficiency of forests: A meta. Plant, Cell & Environment. 2024, 47: 1070-1083.

(2)   Shenglan Li, Fulai Liu. Vapour pressure deficit and endogenous ABA level modulate stomatal responses of tomato plant to soil water deficit. Environmental and Experimental Botany. 2022, 199: 104889.

(3)   Shenglan Li, Andrew J. Thompson, Fulai Liu. Elevated CO2 and high endogenous ABA level alleviate PEG-induced short-term osmotic stress in tomato plants. Environmental and Experimental Botany. 2022, 194: 104763.

(4)   Lili Zhang, Yanjie Xu, Xuening Liu, Meizhu Qin, Shenglan Li, Bo Hong, Chao Ma. The chrysanthemum DEAD-box RNA helicase CmRH56 regulates rhizome outgrowth in response to drought stress. Journal of Experimental Botany. 2022, 73: 5671-5681.

(5)   Shenglan Li, Josefine Nymark Hegelund, Fulai Liu. Elevated CO2 modulates plant hydraulic conductance through regulation of PIPs under progressive soil drying in tomato plants. Frontiers in Plant Science. 2021, 12: 666066.

(6)   Shenglan Li, Xiangnan Li, Fulai Liu. ABA-mediated modulation of elevated CO2 on stomatal response to drought. Current Opinion in Plant Biology. 2020, 56: 174-180.

(7)   Liang Fang, Josefine Nymark Hegelund, Shenglan Li, Fulai Liu. 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. 2019, 6: 104.