本团队长期致力于对玉米新品种选育的工作,以及对重大农艺性状基因的挖掘的工作,涉及到玉米杂种优势机理研究,耐密株型研究,玉米光周期敏感以及玉米抗逆性的研究,旨在选育高产、稳产、宜机收玉米新品种。团队带头人为陈彦惠教授,团队成员主持完成国家自然科学基金重点项目、国家自然科学基金面上项目、国家自然科学基金联合基金项目、“863”、国家重点研发计划和河南省重大科技专项等国家和省部级重大科技课题40多项,获国家科技进步二等奖1项、国家教学成果二等奖1项、省部科技进步一等2项、二等奖4项、省部级自然科学奖二等奖1项,获国家发明专利和植物新品种权20多项,培育国家和省级审定新品种23个,在《NATURE GENETICS》、《PANS》、《MP》、《PBJ》、《JIPB》、《中国农业科学》等国内外权威期刊上发表论文170多篇。团队的发展理念是研以致用,作顶天立地的科研工作者,精诚协作,攻坚克难,追求卓越,成为一支创新能力强的服务于社会发展的高水平科技团队!
研究方向:
1、耐密高产株型基因组指导的分子设计育种。
2、光周期敏感的遗传进化机制的研究与应用。
3、玉米品质相关基因的挖掘与应用。
4、新型小肽的挖掘和抗逆相关基因相关机制研究和应用。
科研人员组成:
团队带头人:
陈彦惠
团 队 秘 书:
任真真
团 队 成 员:
库丽霞、
吴刘记、
吴连成、
姚文、
郑天慧、
王顺喜、
苏慧慧、
田磊、
罗威威。
代表成果:
1、豫综5号和黄金群玉米种质创制于应用,国家科技进步二等奖,2014
2、豫综5号等群体创制、改良与应用,河南省科技进步一等奖,2013
3、玉米黄早4姊妹种与改良单交种的技术研究和应用,河南省科技进步一等奖,2003
4、玉米杂种优势遗传基础解析和新品种研制,教育部科技进步一等奖,2019
5、2024年第十三届国家“挑战杯”大学生创业计划银奖
6、2022-2024连续三年获第十七届河南省“挑战杯”竞赛特等奖
代表性论著:
1.Xueyan Chen , Meirong Song , Lei Tian , Xinxin Shan , Changsi Mao , Minghui Chen , Jiaqi Zhao , Abdul Sami , Haoqiang Yin , Usman Ali , Jiawei Shi , Hehuan Li , Yuqian Zhang , Jinghua Zhang , Shunxi Wang , Chun-Lin Shi , Yanhui Chen , Xiang-Dang Du , Kui Zhu , Liuji Wu *. A plant peptide with dual activity against multidrug-resistant bacterial and fungal pathogens. Science Advances, 2025, 11(12):eadt8239.
2.Zeng H, Dou D, Yang Y, Yan Y, Sun Y, Yang S, Yao W, Zhao S, Wang M, Liu Z, Ren Z, Su H, Cao L, Ku L, Zheng X, Li C, Chen Y. The ZmFKF1b-ZmDi19-5 Regulatory Module Coordinates Drought Tolerance and Flowering Time in Maize. Plant Biotechnol J. 2025 Oct 8.
3.Yuqian Zhang, Hehuan Li, Yanting Shen, Shunxi Wang, Lei Tian, Haoqiang Yin,Jiawei Shi, Anqi Xing, Jinghua Zhang, Usman Ali, Abdul Sami, Xueyan Chen, Chenxuan Gao, Yangtao Zhao, Yajing Lyu, Xiaoxu Wang, Yanhui Chen, Zhixi Tian, Shu-Biao Wu, and Liuji Wu*. Readthrough events in plants reveal plasticity of stop codons. Cell reports, 2024, 43: 113723.
4.Usman Ali, Lei Tian, Ruihong Tang, Shunxi Wang, Weiwei Luo, Shanshan Liu,Jinghua Zhang, Liuji Wu*. A comprehensive atlas of endogenous peptides in maize. iMeta, 2024
5.Abdul Sami, Mengjia Fu, Haoqiang Yin, Usman Ali, Lei Tian, Shunxi Wang, JinghuaZhang, Xueyan Chen, Hehuan Li, Minghui Chen, Wen Yao and Liuji Wu*. NCPbook:A comprehensive database of noncanonical peptides. Plant Physiology, 2024, 196:67-76.
6. Wang B, Hou M, Shi J, Ku L, Song W, Li C, Ning Q, Li X, Li C, Zhao B, Zhang R, Xu H, Bai Z, Xia Z, Wang H, Kong D, Wei H, Jing Y, Dai Z, Wang HH, Zhu X, Li C, Sun X, Wang S, Yao W, Hou G, Qi Z, Dai H, Li X, Zheng H, Zhang Z, Li Y, Wang T, Jiang T, Wan Z, Chen Y, Zhao J, Lai J, Wang H. De novo genome assembly and analyses of 12 founder inbred lines provide insights into maize heterosis. Nat Genet. 2023;55(2):312-323.
7.Su H, Cao L, Ren Z, Sun W, Zhu B, Ma S, Sun C, Zhang D, Liu Z, Zeng H, Yang W, Liu Y, Zheng L, Yang Y, Wu Z, Zhu Y, Ku L, Chong L, Chen Y. ZmELF6-ZmPRR37 module regulates maize flowering and salt response. Plant Biotechnol J. 2024 Apr;22(4):929-945. doi: 10.1111/pbi.14236. Epub 2023 Nov 27. PMID: 38009862; PMCID: PMC10955496.
8.Dacheng Wang, Chun-Lin Shi, Liuji Wu*, Yiming Wang*. BTL2 phospho-switchsurveils plant immunity. Trendsin Plant Science. 2023, 28: 1337-1339.
9.Chunlin Shi and Liuji Wu*. O2-ZmGRAS11 coordinates cell expansion and endosperm filling. Molecular Plant, 2022, 15: 211-212.
10.Jinghua Zhang, Xingmeng Jia, Guan-Feng Wang, Shijun Ma, Shunxi Wang, Qin Yang, Xueyan Chen, Yuqian Zhang, Yajing Lyu, Xiaoxu Wang, Jiawei Shi, Yangtao Zhao, Yanhui Chen and Liuji Wu*. Ascorbate peroxidase 1 confers resistance to southern corn leaf blight in maize.Journal of Integrative Plant Biology, 2022, 64: 1196–1211.
11.Lei Tian, Xueyan Chen, Xingmeng Jia, Shunxi Wang, Xiaoxu Wang, Jinghua Zhang, Yuqian Zhang, Shubiao Wu, Yanhui Chen and Liuji Wu*. First report of antifungal activity conferred by non-conventional peptides. Plant Biotechnology Journal, 2021, 19:2147-2149.
12.Shunxi Wang , Lei Tian , Haijun Liu , Xiang Li , Jinghua Zhang , Xueyan Chen , Xingmeng Jia , Xu Zheng , Shubiao Wu , Yanhui Chen , Jianbing Yan , Liuji Wu*. Large-Scale Discovery of Non-conventional Peptides in Maize and Arabidopsis through an Integrated Peptidogenomic Pipeline. Molecular Plant. 2020, 13(7): 1078-1093.