教育經曆:
2011年9月-2017年6月,碩、博士,中國農業大學農學與生物技術學院
2007年9月-2011年6月,學士,南京農業大學農學院
工作經曆:
2023年7月-至今,beat365官方网站,助理研究員
2022年5月-2023年7月,項目科學家,美國加州大學河濱分校
2019年11月-2022年4月,博士後,美國加州大學河濱分校
2018年4月-2019年10月,博士後,深圳大學生命與海洋科學學院
榮譽獎勵:
1.國家自然科學基金(青年基金),31900446,miR399及其靶基因參與玉米開花期調控網絡的機制研究,2020/01-2022/12, 26萬,主持。
2.中國博士後科學基金特别資助(站中), 2019T120753,玉米NAD-capped RNA的鑒定和非生物脅迫下表達變異研究, 2019/12-2021/12, 18萬元,主持。
3.中國博士後基金,011581,miR399介導玉米開花期調控網絡的解析和機制研究,2018/12-2020/12, 8萬元,主持。
4.國家自然科學基金(應用研究項目),玉米氮效率遺傳結構的系統解析,2013/01-2016/12, 80萬,參與。雜志任職:
無評審任職:
無會議發言與組織:
1.2023年8月,中國蘭州,植物細胞生物學大會
2.2021年1月,美國聖地亞哥,植物&動物基因組大會
3.2018年6月,中國甯波,第十屆全國核糖核酸(RNA)學術讨論會
4.2018年4月,中國青島,第三屆玉米生物學會議
5.2017年4月,中國安徽,第二屆玉米生物學會議 (海報展示)
6.2016年8月,中國北京,第七屆國際作物學會議 (海報展示)
7.2015年3月,美國芝加哥,第57屆國際玉米遺傳學大會 (大會報告)
8.2014年3月,中國北京,第56屆國際玉米遺傳學大會 (海報展示)雜志編輯:
無書籍編撰:
無教材編撰:
無執教課程:
無 主要以細菌、拟南芥為研究對象,結合遺傳學、生物化學、分子生物學、生物信息學等手段,進行非典型帽子修飾RNA的加帽、脫帽機制及其生物學功能研究。
1.Xufeng Wang*, Dan Yuan*, et al., (2023) INDETERMINATE1 autonomously regulates phosphate homeostasis upstream of the miR399-ZmPHO2 signaling module in maize. Plant Cell
2.Xufeng Wang*, Qiuyue Chen*, Yaoyao Wu*, et al. (2018) Genome-wide analysis of transcriptional variability in a large maize-teosinte population. Molecular Plant
3.Haijiao Dong*, Xufeng Wang*, et al., (2022) NAD+-capped RNAs are widespread in rice (Oryza sativa) and spatiotemporally modulated during development. Science China of Life Science (SCLS)
4.Dingyi Xu*, Xufeng Wang* et al., (2018) Directional selection on standing genetic variation at Glossy15 underlies the evolution of the vegetative transition in maize. Molecular Plant
5.Guanghui Xu*, Xufeng Wang*, et al., (2017) Complex genetic architecture underlies maize tassel domestication. New Phytologist
6.Yameng Liang*, Qiang Liu*, Xufeng Wang *, et al. (2019) ZmMADS69 functions as a flowering activator through the ZmRap2.7-ZCN8 regulatory module and contributes to maize flowering time adaptation. New Phytologist
7.Runlai Hang, Ye Xu, Xufeng Wang, et al. (2023) Arabidopsis HOT3/eIF5B1 constrains rRNA RNAi by facilitating 18S rRNA maturation. Proceedings of the National Academy of Sciences (PNAS)
8.Qi Xie, Xufeng Wang, et al., (2021) Distinct Evolutionary Profiles and Functions of microRNA156 and microRNA529 in Land Plants. International Journal of Molecular Sciences
9.Hailei Zhang*, Huan Zhong*, Xufeng Wang, et al., (2021) Use of NAD tagSeq II to identify growth phase-dependent alterations in E. coli RNA NAD + capping. Proceedings of the National Academy of Sciences (PNAS)
10.Hao Hu, Nora Flynn, Hailei Zhang, Chenjiang You, Runlai Hang, Xufeng Wang, et al., (2021) SPAAC-NAD-seq, a sensitive and accurate method to profile NAD+ -capped transcripts Proceedings of the National Academy of Sciences (PNAS)
11.Xiaoyu Yang, Chenjiang You, Xufeng Wang, et al., (2021) Widespread occurrence of microRNA-mediated target cleavage on membrane-bound polysomes. Genome Biology
12.Juan He, Zengming Jiang, Lei Gao, Chenjiang You, Xuan Ma, Xufeng Wang, et al., (2019) Genome-Wide Transcript and Small RNA Profiling Reveals Transcriptomic Responses to Heat Stress. Plant Physiology
13.Xue Wei, Anderson S., Xufeng Wang, et al. (2019) Hybrid Decay: A Transgenerational Epigenetic Decline in Vigor and Viability Triggered in Backcross Populations of Teosinte with Maize. Genetics
14.Yuhua Fu*, Guangui Xu*, Huafeng Chen, Xufeng Wang, et al. (2019) QTL mapping for leaf morphology traits in a large maize-teosinte population. Molecular Breeding
15.Guanghui Xu*, Jinjin Cao*, Xufeng Wang, et al. (2019) Evolutionary Metabolomics Identifies Substantial Metabolic Divergence between Maize and its Wild Ancestor, Teosinte. Plant Cell
16.Cheng Huang, Huayue Chen, Dingyi Xu, Qiuyue Chen, Yameng Liang, Xufeng Wang, et al. (2018) ZmCCT9 enhances maize adaptation to higher latitudes. Proceedings of the National Academy of Sciences (PNAS)
17.Qiuyue Chen*, Yingjia Hang*, Haijun Liu*, Xufeng Wang, et al. (2018) Genome-wide association analyses reveal the importance of alternative splicing in diversifying gene function and regulating phenotypic variation in maize. Plant Cell
18.Dan Li, Xufeng Wang, et al., (2016) The genetic architecture of leaf number and its genetic relationship to flowering time in maize. New Phytologist
19.Qiuyue Chen, Zhipeng Liu, Baobao Wang, Xufeng Wang, et al., (2015) Transcriptome sequencing reveals the roles of transcription factors in modulating genotype by nitrogen interaction in maize. Plant Cell Reports