新闻与活动 活动信息

生命科学专题学术讲座 | Hongtao Liu: Blue light and UV-B light signal transduction

时间

2021年6月28日星期一
16:00-17:30

地点

西湖大学云栖校区1号楼315会议室

主持

西湖大学生命科学学院研究员 李小波

受众

全体师生

分类

学术与研究

生命科学专题学术讲座 | Hongtao Liu: Blue light and UV-B light signal transduction

时间:6月28日星期一16:00-17:30    

Time4:00-5:30 PM,Mon.,June 28,2021

地点:西湖大学云栖校区1号楼315会议室

Venue: Room 315, 3F, Building 1,  Yunqi Campus

主持人:西湖大学生命科学学院研究员 李小波

Host:Dr. Xiaobo Li, School of Life Sciences



主讲嘉宾/Speaker:

Dr. Hongtao Liu

Professor of CAS Center for Excellence in Molecular Plant Sciences

Shanghai Institute of plant physiology and ecology


The molecular mechanism of light signal transduction is one of the most important questions in plant biology. Using Arabidopsis thaliana as a model, our lab is aiming to dissect the molecular mechanism of blue light and UV-B light signal transduction. Since 2011, the lab has made the following achievements: 1. Identify several novel UV-B signaling pathways. They show that the UV-B photoreceptor UVR8 directly interacts with transcription factors to regulate gene expression in response to UV-B. 2. Elucidate how blue light and temperature are integrated in plants. They find that CRY1 is critical for temperature responses. 3. Systematically study the CRY2-CIBs photoperiodic flowering pathway. Those results are published in leading journals, including Developmental Cell (2018), Nature Plants (2018), Nature Structure & Molecular Biology (2020), EMBO Journal (2020), PNAS (2013 and 2016), Plant Cell (2016, 2020 a,b) etc. These discoveries have been highlighted or commented in Preview, News & Views or Faculty 1000.


讲座摘要/Abstract:

The molecular mechanism of light signal transduction is one of the most important questions in plant biology. Using Arabidopsis thaliana as a model, our lab is aiming to dissect the molecular mechanism of blue light and UV-B light signal transduction. Since 2011, the lab has made the following achievements: 1. Identify several novel UV-B signaling pathways. They show that the UV-B photoreceptor UVR8 directly interacts with transcription factors to regulate gene expression in response to UV-B. 2. Elucidate how blue light and temperature are integrated in plants. They find that CRY1 is critical for temperature responses. 3. Systematically study the CRY2-CIBs photoperiodic flowering pathway. Those results are published in leading journals, including Developmental Cell (2018), Nature Plants (2018), Nature Structure & Molecular Biology (2020), EMBO Journal (2020), PNAS (2013 and 2016), Plant Cell (2016, 2020 a,b) etc. These discoveries have been highlighted or commented in Preview, News & Views or Faculty 1000.


联系人/Contact:

生命科学学院

于文越 yuwenyue@westlake.edu.cn