头像
曾黎辉
教授
园艺学院
行政职务:
园艺植物遗传育种研究所所长
技术职称:
教授
最后学位:
博士学位
电    话:
13328676575
电子邮箱:
lhzeng@fafu.edu.cn
办公地点:
通讯地址:
福建农林大学园艺学院
邮    编:

您是第10 位访问者

  • (1) 1998-09 至 2002-06, 福建农林大学, 果树学, 博士

    (2) 1995-09 至 1998-06, 福建农业大学, 果树学, 硕士

    (3) 1991-09 至 1995-06, 福建农学院, 园艺, 学士



  • (1) 2011-11 至 今, 福建农林大学, 园艺学院, 教授

    (2) 2014-01 至 2015-01, 新西兰植物与食品研究所, 访问学者, 教授

    (3) 2007-08 至 2011-11, 福建农林大学, 园艺学院, 副教授

    (4) 2005-07 至 2007-08, 福建农林大学, 园艺学院, 副研究员

    (5) 2002-02 至 2003-02, 美国爱荷华大学,博士后研究

    (6) 2001-10 至 2005-07, 福建农林大学, 园艺学院, 助理研究员

    (7) 1995-07 至 2001-10, 福建农林大学, 园艺学院, 研究实习员


  • 福建省高等学校新世纪优秀人才,福建省高层次C类人才。中国热带作物学会理事,福建省遗传学会理事,福建省水果产业技术创新联盟副理事长。《果树学报》、《Frontiers in Plant Science》等期刊编委。


  • 国家级一流本科课程《园艺植物育种学总论》负责人,“十四五”规划教材《园艺植物育种学》副主编、《园艺植物种子学》编委,获校教学成果二等奖1项。


  • 研究领域

    主要从事亚热带果树(龙眼、百香果)、花卉遗传育种研究,在龙眼成花诱导分子机理、百香果品种选育与遗传背景、水仙花花色调控等方面有较深入的研究。

    开授课程

    《园艺植物育种学总论》(本科,主讲)

    《园艺学基础》(双语)(本科,主讲)

    《园艺植物遗传与生理生化》(硕士研究生,主讲)
    《园艺科学进展讨论》(博士研究生,主讲)
    《Advances in Modern Horticultural Sciences》(留学博士研究生,主讲)等


    科研项目

    l  “十四五”福建省种业创新与产业化工程项目专题,百香果品种引进与创新,2021-2025.

    l  中央引导地方科技发展项目,百香果抗茎基腐病关键基因的挖掘及抗病机理研究,2023-2026.

    l  福建农林大学科技创新基金,龙眼季节性成花诱导dlo-miR160d -DlARF18模块功能研究 ,2023-2026.

    l  福州市科技计划项目,福建道地中药材金线莲品种创新与产业化,2018-2021.

    l  福建省自然科学基金面上项目,中国水仙R2R3-MYB调控因子NtMYB2的功能与作用机制研究,2016-2019.

    l  国家自然科学基金面上项目,四季蜜龙眼LFY同源基因表达发生变异的分子机制研究,2010-2013.


    论文著作

    (1)Dayi He, Chunyan Wei, Fan Liang, Yuanyuan Huang, Ting Fang,Chaojun Deng, Lihui Zeng*.Genome-wide identification of CONSTANS-like genes in Dimocarpus longan and functional characterization of DlCOL9 revealing its role in floral induction.Plant Physiology and Biochemistry,2025(225):110017.

    (2)Ting Fang, Mengzhen Wang, Ruijie He, Qiaowen Chen, Dayi He, Xuerong Chen, Yongkang Li,Rui Ren, Weijun Yu, and Lihui Zeng*. A 224-bp Indel in the Promoter of PeMYB114 Accounts for Anthocyanin Accumulation of Skin in Passion Fruit(Passiflora spp.).J.Agric.Food Chem.2024,72,10138−10148.

    (3) Xiuqing Wei,Min Chen,Xijuan Zhang,Yinghao Wang,Liang Li,Ling Xu,Huanhuan Wang,Mengwei Jiang,Caihui Wang,Lihui Zeng*,Jiahui Xu*. The Haplotype-resolved Autotetraploid Genome Assembly Provides Insights into the genomic evolution and fruit divergence in Wax apple (Syzygium samarangense (BI.) Merr.et Perry), Horticulture Research,2023,10(12): 214.

    (4) Muhammad Anwar,Shuhua Duan, Mingjun Ma, Xuerong Chen, Lixuan Wua,Lihui Zeng*. NataMYB4, a flower specific gene, regulates the flavonoid biosynthesis in Chinese Narcissus. Scientia Horticulturae ,2023, 318: 112101.

    (5) Wenqiu Wang,Sarah M. A. Moss,Lihui Zeng,Richard V. Espley,Tianchi Wang,Kui Lin‐Wang,Bei‐ling Fu, Kathy E. Schwinn,Andrew C. Allan,Xue‐ren Yin.The red flesh of kiwifruit is differentially controlled by specific activation–repression systems,New Phytologist,2022,235(2): 630-645. 

    (6) Fan Liang,Yiyong Zhang,Xiaodan Wang,Shuo Yang,Ting Fang,Shaoquan Zheng,Lihui Zeng*.Integrative mRNA and Long Noncoding RNA Analysis Reveals the Regulatory Network of Floral Bud Induction in Longan (Dimocarpus longan Lour.), Frontiers in Plant Science, 2022, 13:923183. 

    (7) Yuxin Fan, Jiayu Peng, Jiacheng Wu, Ping Zhou, Ruijie He, Andrew C. Allan, and Lihui Zeng*. NtbHLH1, a JAF13-like bHLH, interacts with NtMYB6 to enhance proanthocyanidin accumulation in Chinese Narcissus. BMC Plant Biol, 2021, 21:275.

    (8) Ping Zhou,Jiayu Peng, Minjie Zeng, Lixuan Wu, Yuxin Fan, Lihui Zeng*.Virus-induced gene silencing (VIGS) in Chinese narcissus and its use in functional analysis of NtMYB3.November 2021. Horticultural Plant Journal, 7 (6): 565–572.

    (9) Saquib Waheed, Yuan Peng, Lihui Zeng*.Identification and Characterization of DlGI Promoter Involved in Photoperiod, Light Intensity, Hormone, and DlELF4 Response from Longan. J.AMER.SOC.HORT.SCI.2020, 145 (6): 340.

    (10) Yuan Peng, Ting Fang, Yiyong Zhang, Mengyuan Zhang, Lihui Zeng*.Genome-Wide Identification and Expression Analysis of Auxin Response Factor (ARF) Gene Family in Longan (Dimocarpus longan L.).Plants, 2020, 9, 221; doi:10.3390/plants9020221.

    (11) Saquib Waheed and Lihui Zeng*. The Critical Role of miRNAs in Regulation of Flowering Time and Flower Development. Genes, 2020, 11, 319; doi:10.3390/genes11030319.

    (12) B Yang,M Zhang,H Weng,Y Xu,L Zeng*. Optimization of Ultrasound Assisted Extraction (UAE) of Kinsenoside Compound from Anoectochilus roxburghii (Wall.) Lindl by Response Surface Methodology (RSM). Molecules, 2020, 25(1):193.

    (13) Muhammad Anwar, Weijun Yu, Hong Yao, Ping Zhou, Andrew C. Allan, Lihui Zeng*.NtMYB3, an R2R3-MYB from Narcissus, Regulates Flavonoid Biosynthesis.Int.J.Mol.Sci.2019,20:5456. 

    (14)Muhammad Anwar,Guiqing Wang,Jiacheng Wu,Saquib Waheed,Andrew C Allan, Lihui Zeng*. Ectopic Overexpression of a Novel R2R3-MYB, NtMYB2 from Chinese Narcissus Represses Anthocyanin Biosynthesis in Tobacco. Molecules, 2018, 23(4):781.

    (15) Guiqing Wang,Biyun Yang,Jiacheng Wu,Peng Luo,Muhammad Anwar, Andrew C. Allan,Kui Lin-Wang,Richard Espley,Lihui Zeng*. Identification of Genes Involved in Flavonoid Biosynthesis of Chinese Narcissus (Narcissus tazetta L. var. chinensis). Plant Molecular Biology Reporter, 2018, 36:812–821.

    (16) Fenna Huang, Zhiyuan Fu, Lihui Zeng*, Michael Morley-Bunker. Isolation and characterization of GI and FKF1 homologous genes in the subtropical fruit tree Dimocarpus longan. Molecular breeding, 2017, 37: 90.

    (17)Jia T,Wei D,Meng S,Allan AC,Zeng L*,Identification of regulatory genes implicated in continuous flowering of longan (Dimocarpus longan L.). PLoS One,2014,9(12):e114568. 

    (18)付志远,贾天琦,彭 媛,Saquib Weheed,曾黎辉*.龙眼ELF4 同源基因的克隆与功能研究.园艺学报,2018,45 (5):875–886.

    (19)吴嘉诚,王桂青,Muhammad Anwar,曾黎辉*.中国水仙R2R3-MYB基因NtMYB5的克隆和功能研究.园艺学报,2018,45(7): 1327-1337. 

    (20)吴立璇,周平,范雨昕,王桂青,曾黎辉*.中国水仙 NtMYB8 的分离及功能研究. 园艺学报,2021,48 (10):1895–1906



    科技成果

    授权专利:

    (1)   一种诱导水仙花产生花青素的方法及其应用,专利号ZL2019 1 1278661.X

    (2)一种金线莲苷的提取方法,专利号ZL 2018 1 0074076.7

    (3)一种金线莲长期离体保存方法,专利号ZL 2021 1 0417775.9

    (4)一种金线莲多倍体诱导方法,专利号ZL 2020 1 1414573.0

    (5)一种百香果离体快繁及遗传转化方法,专利号202011106774.4