苏小敏,女,汉族,1994年07月出生,河南安阳人,中共党员,理学博士,讲师
研究领域:花生功能基因组及高产、抗逆表观遗传分子机制
E
mail:suxiaomin@henau.edu.cn
办公地址:河南农业大学龙子湖校区第一实验楼南513
教育与研究/工作经历:
2012.09--2016.07 河南农业大学 生物技术专业 学士
2016.09--2018.12 华中农业大学 生物工程专业 硕士
2020.09--2025.01 北京师范大学&北京生命科学研究所 生物化学与分子生物学专业 博士
2025.11--至今 河南农业大学 农学院 讲师
发表论文:
1.
Xiao-Min Su, Dan-Yang Yuan, Na Liu, Zhao-Chen Zhang, Minqi Yang, Lin Li, She Chen, Yue Zhou, and Xin-Jian He. ALFIN-like proteins link histone H3K4me3 to H2A ubiquitination and coordinate diverse chromatin modifications in Arabidopsis[J].
Molecular Plant, 2025, 18(1): 130-150. (第一作者,中科院1区top,IF 27.1)
2. Jin-Xing Zhou*,
Xiao-Min Su*, Si-Yao Zheng, Chan-Juan Wu, Yin-Na Su, Zhao-Di Jiang, Lin Li, She Chen and Xin-Jian He. The Arabidopsis NuA4 histone acetyltransferase complex is required for chlorophyll biosynthesis and photosynthesis[J].
Journal of Integrative Plant Biology, 2022, 64(4): 901-914. ( *共同第一作者,中科院1区top,IF 11.4)
3. Nan Zhao,
Xiao-Min Su, Zhang-Wei Liu, Jin-Xing Zhou, Yin-Na Su, Xue-Wei Cai, Ling Chen, Zhe Wu, Xin-Jian He. The RNA recognition motif-containing protein UBA2c prevents early flowering by promoting transcription of the flowering repressor FLM in Arabidopsis[J].
New Phytologist, 2021, 233(2): 751-765. (中科院1区top,IF 7.4)
4. Jing Guo, Zhen-Zhen Liu,
Xiao-Min Su, Yin-Na Su and Xin-Jian He. The SAS chromatin-remodeling complex mediates inflorescence-specific chromatin accessibility for transcription factor binding[J].
Nucleic Acids Research, 2025, 53(8): gkaf316. (中科院1区top,IF 16.6)
5. Na Liu, Jia-Xin Li, Dan-Yang Yuan, Yin-Na Su, Pei Zhang, Qi Wang,
Xiao-Min Su, Lin Li, Haitao-Li, She Chen and Xin-Jian He. Essential angiosperm-specific subunits of HDA19 histone deacetylase complexes in Arabidopsis[J].
EMBO Journal, 2025, 44(12): 3521-3546. (中科院1区top,IF 11.6)
6. Pei-Lin Qi, Hao-Ran Zhou, Qiang-Qiang Zhao, Chao Feng, Yong-Qiang Ning, Yin-Na Su, Xue-Wei Cai, Dan-Yang Yuan, Zhao-Chen Zhang,
Xiao-Min Su, Shan-Shan Chen, Lin Li, She Chen, Xin-Jian He. Characterization of an autonomous pathway complex that promotes flowering in Arabidopsis[J].
Nucleic Acids Research, 2022, 50(13): 7380-7395. (中科院1区top,IF 16.6)