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蔡汉阳教授
发布时间 :2024-03-10    浏览:



蔡汉阳,教授,博士生导师。师承秦源教授,长期围绕植物雌配子体发育的遗传与表观遗传调控机制开展了系统性研究,先后主持国家自然基金面上项目(2项)、青年项目、福建省雏鹰计划青年拔尖人才项目、福建省杰出青年基金等项目,以通讯或第一作者(含共同)在Developmental CellPlant Cell2篇)Current BiologyPNAS(共一)New Phytologist5篇)Current Opinion in Plant BiologyPlant, Cell & Environment等期刊上发表论文35篇,其中2篇被Plant Cell专文评述,1篇入选高被引论文。论文被Annual Review of Plant BiologyAnnual Review of GeneticsDevelopmental CellNature Plants等高水平期刊2326次。入选福建省百千万人才工程省级人选和福建省高层次人才。荣获福建省自然科学奖二等奖1项、福建省2024年高等教育省级教学成果奖二等奖和第十六届福建省自然科学优秀学术论文三等奖1项。参编《生物化学》和《生物化学》数字教材各1部。应邀在国内外多次学术会议上作报告。担任Communications BiologyTropical Plant Biology期刊编委以及Seed Biology期刊青年编委,是Plant CellNew Physiologist等期刊的审稿人。近5年主要学术贡献、创新成果及其科学价值或社会经济意义详述如1

1.近五年来的主要研究成果概述


1. 揭示了植物激素和EPFLs-ERECTA模块形成母体位置效应调控大孢子母细胞特化的新机制(代表作:Developmental Cell 2025Plant Cell 2023Current Biology 2022)。发现植物激素(GACKBR)和EPFLs-ERECTA模块通过在早期胚珠原基建立浓度梯度和位置信号调控大孢子母细胞特化的机制,为大孢子母细胞特化研究领域提供新的借鉴。应邀在Current Opinion in Plant Biology2023)、Frontiers in Plant Science2025)、Seed Biology2022)等期刊上撰写综述文章,解析了植物激素如何调控大孢子母细胞特化的科学问题,在大孢子母细胞特化研究领域形成鲜明特色。Plant Cell科学编辑Jessica Franco撰写IN BRIEF点评:该研究(Plant Cell 2023)为雌性生殖系细胞特化的研究提供新的见解

2. 阐明了染色质重塑和组蛋白修饰协同调控大孢子母细胞特化的表观遗传机制(代表作:PNAS 2018New Phytologist 2023New Phytologist 2021aNew Phytologist 2019)。发现染色质重塑SWR1-KLU模块与组蛋白修饰遗传互作协同激活下游基因WRKY28在伴侣细胞中特异表达,从而调控大孢子母细胞特化。该成果为深入研究表观遗传参与细胞间的信号交流调控生殖细胞命运决定提供了良好的基础。应邀在Plant, Cell and Environment2025)上撰写综述文章,解析了表观遗传等如何调控功能大孢子发育的科学问题。曹晓风院士和朱健康院士在综述中指出该成果在染色质重塑调控生殖细胞特化中取得重要进展。Roger Deal教授在Annual Review of Plant Biology等评述论文中详细地介绍了该成果,认为是非常重要的进展,为植物生殖细胞特化提供了新的见解。PNAS2018)入选高被引论文。

3. 解析了染色质重塑和小RNA共同调控雌配子体发育和基因表达的分子机制(代表作:Plant Cell 2021New Phytologist 2021bNew Phytologist 2017)。发现染色质重塑、小RNA和细胞间通讯在胚珠协调孢子体和配子体同步发育中的重要作用,为研究雌配子体发育的分子机制提供了新的借鉴。Plant Cell期刊科学编辑Junpeng Zhan撰写IN BRIEF点评:这项工作(Plant Cell 2021)为雌配子体和胚珠发育的调控提供了许多有趣的见解。专家在Nature Reviews Molecular Cell Biology等评述论文中图文并茂地介绍了该成果,认为该成果对推动小RNA在细胞间移动提供新的线索,并总结归纳为两种新的RNA移动机制。王应祥教授评论认为:该项工作为研究小RNA在生殖发育中的分子机制提供了一个很好的例子。上述部分研究成果荣获2020年度福建省自然科学奖二等奖和第十六届福建省自然科学优秀学术论文三等奖。


代表性论文(#共同第一作者,*通讯作者)

2025

1). Hanyang Cai (*), Kaichuang Liu, Suzhuo Ma, Han Su, Jiahong Yang, Ling Sun, Ziqi Liu and Yuan Qin (*). (2025) Gibberellin and cytokinin signaling antagonistically control female-germline cell specification in Arabidopsis. Developmental Cell, 60(5), 706–722.e7.

2). Liping Liu, Yuan Qin, and Hanyang Cai (*). (2025). Understanding the Functional Megaspore Development: Current Status/Progress, Perspectives. Plant, Cell & environment, 10.1111/pce.15493.

2023

3). Youmei Huang (#), Liping Liu (#), Mengnan Chai (#), Han Su, Suzhuo Ma, Kaichuang Liu, Yaru Tian, Zhuangyuan Cao, Xinpeng Xi, Wenhui Zhu, Jingang Qi, Ravishankar Palanivelu, Yuan Qin (*), and Hanyang Cai (*). (2023). Epigenetic regulation of female germline development through ERECTA signaling pathway. New phytologist;240(3):1015-1033.

4). Hanyang Cai (#), Liping Liu (#), Suzhuo Ma, Mohammad Aslam and Yuan Qin (*). (2023). Insights into the role of phytohormones in plant female germline cell specification. Current Opinion in Plant Biology, 75, 102439.

5). Cai Hanyang (#), Huang Youmei (#), Liu Liping (#), Zhang Man (#), Chai Mengnan (#), Xi Xinpeng, Mohammad Aslam, Wang Lulu, Ma Suzhuo, Su Han, Liu Kaichuang, Tian Yaru, Zhu Wenhui, Qi Jingang, Thomas Dresselhaus, Qin Yuan (*). (2023). Signaling by the EPFL-ERECTA family coordinates female germline specification through the BZR1 family in Arabidopsis, The Plant Cell; 35(5), 1455–1473.

2022

6). Cai Hanyang (#), Liu Liping (#), Huang Youmei, Zhu Wenhui, Qi Jingang, Xi Xinpeng, Mohammad Aslam, Thomas Dresselhaus, and Qin Yuan (*). (2022). Brassinosteroid signaling regulates female germline specification in Arabidopsis. Current biology: CB, 32(5), 1102–1114.e5.

7). Hanyang Cai, Suzhuo Ma, Han Su, Kaichuang Liu, Mohammad Aslam and Yuan Qin (*). (2022). Positional signals establishment in the regulation of female germline specification. Seed Biology 1:6

2021

8). Cai Hanyang, Liu Liping, Zhang Man, Chai Mengnan, Huang Youmei, Chen Fangqian, Yan Maokai, Su Zhenxia, Ian Henderson, Ravishankar Palanivelu, Chen Xuemei, and Qin Yuan (*). (2021). Spatiotemporal control of miR398 biogenesis via chromatin remodeling and kinase signaling ensures proper ovule development. The Plant Cell, 33(5), 1530–1553.

9). Cai Hanyang (#), Huang Youmei (#), Chen Fangqian (#), Liu Liping (#), Chai Mengnan, Zhang Man, Yan Maokai, Aslam Mohammad, He Qing, and Qin Yuan (*). (2021). ERECTA signaling regulates plant immune responses via chromatin-mediated promotion of WRKY33 binding to target genes. New phytologist, 230(2), 737–756.

10). Cai Hanyang, Chai Mengnan, Chen Fangqian, Huang Youmei, Zhang Man, He Qing, Liu Liping, Yan Maokai, and Qin Yuan (*). (2021). HBI1 acts downstream of ERECTA and SWR1 in regulating inflorescence architecture through the activation of the brassinosteroid and auxin signaling pathways. New phytologist, 229(1), 414–428.

11). Liu Liping (#), Chai Mengnan (#), Huang Youmei (#), Qi Jingang, Zhu Wenhui, Xi Xinpeng, Chen Fangqian, Qin Yuan and Cai Hanyang (*). (2021). SDG2 regulates Arabidopsis inflorescence architecture through SWR1-ERECTA signaling pathway. iScience 24, 103236.

2020年之前

12). Cai Hanyang (#), Zhang Man (#), Chai Mengnan, He Qing, Huang Xinyu, Zhao Lihua, Qin Yuan (*). (2019). Epigenetic regulation of anthocyanin biosynthesis by an antagonistic interaction between H2A.Z and H3K4me3. New phytologist, 221(1):295-308.

13). Cai, Hanyang (#), Zhao, Lihua (#), Wang, Lulu, Zhang, Man, Su, Zhenxia, Cheng, Yan, Zhao, Heming, and Qin, Yuan (*). (2017). ERECTA signaling controls Arabidopsis inflorescence architecture through chromatin-mediated activation of PRE1 expression. New phytologist, 214(4), 1579–1596.

14). Zhao, Lihua (#), Cai, Hanyang (#), Su, Zhenxia (#), Wang, Lulu, Huang, Xinyu, Zhang, Man, Chen, Piaojuan, Dai, Xiaozhuan, Zhao, Heming, Palanivelu, Ravishankar, Chen, Xuemei (*), and Qin, Yuan (*). (2018). KLU suppresses megasporocyte cell fate through SWR1-mediated activation of WRKY28 expression in Arabidopsis. Proceedings of the National Academy of Sciences of the United States of America, 115(3), E526–E535.

15). Cai, Hanyang (#), Yang, Sheng (#), Yan, Yan, Xiao, Zhuoli, Cheng, Junbin, Wu, Ji, Qiu, Ailian, Lai, Yan, Mou, Shaoliang, Guan, Deyi, Huang, Ronghua, and He, Shuilin (*). (2015). CaWRKY6 transcriptionally activates CaWRKY40, regulates Ralstonia solanacearum resistance, and confers high-temperature and high-humidity tolerance in pepper. Journal of experimental botany 66, 3163-3174.


主持科研项目

1. 国家自然科学基金面上项目(32370377)2024.1-2027.12。主持,在研

2. 国家自然科学基金面上项目(32170352)2022.1-2025.12。主持,在研

3. 国家自然科学基金青年项目(31700279)2018.1-2020.12。主持,已结题

4. 福建省雏鹰计划青年拔尖人才计划项目。2022.12-2027.12。主持,在研

5. 福建省杰出青年基金项目(2022J06014)2022.8-2025.8。主持,在研

6. 福建农林大学百人攀登计划培育人选。2023.1-2025.12。主持,在研

7. 福建农林大学校杰出青年基金项目(xjq202108)2022.1-2024.12。主持,已结题

8. 福建农林大学生命科学学院青年创新人才项目。2022.1-2023.12。主持,已结题