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周平
讲师(高校)
园艺学院
行政职务:
技术职称:
讲师(高校)
最后学位:
农学博士学位
电    话:
电子邮箱:
zhoup@fafu.edu.cn
办公地点:
生物楼405
通讯地址:
福州市仓山区福建农林大学(仓山校区)
邮    编:
350002

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  • 福建龙岩人,农学博士,讲师,福建省级高层次引进人才(C类)。在Horticulture Research、Horticultural Plant Journal、Plant Journal等国内外学术期刊发表学术论文10余篇,授权发明专利一项。担任Journal of Agricultural and Food Chemistry、 Communications Biology和Plant Cell, Tissue and Organ Culture学术期刊审稿专家。



  • 2020.09~2024.06 南京农业大学 观赏园艺学 博士

    2017.09~2020.06 福建农林大学 花卉与景观园艺 硕士

    2013.09~2017.06 海南大学 植物保护 本科


  • 2024年9月至今于福建农林大学园艺学院就职


  • 研究领域

    研究方向一:观赏植物逆境生理与分子调控

    观赏植物在规模化栽培及自然生长过程中,常遭遇干旱、高温、低温、盐碱等非生物胁迫,导致其生长发育受阻、观赏品质下降,严重制约观赏植物产业的高质量发展。本研究方向聚焦观赏植物对非生物胁迫的响应机制,通过分子生物学、生理学等多学科技术手段,系统解析观赏植物响应非生物胁迫的分子调控网络,挖掘关键功能基因,为培育抗逆性强、适应范围广的观赏植物新品种提供理论支撑与技术依据,助力解决产业发展中的核心瓶颈问题。

    研究方向二:观赏植物功能代谢物的挖掘与产品开发

    自然界中诸多观赏植物兼具药用价值,其体内富含多种结构独特、功能多样的次生代谢物,这类代谢物是医药、化妆品、香精香料等领域的核心原料,具有极高的开发利用价值。本研究方向采用多组学(转录组、代谢组、蛋白质组等)联合分析技术,结合基因功能验证、生物活性检测等手段,精准挖掘观赏植物中具有应用潜力的特异性功能代谢物,明确其生物活性、合成途径及调控机制;同时基于代谢物的理化特性与功能优势,开展针对性产品研发(如功能性化妆品、天然香精香水等),推动观赏植物资源的多元化利用,实现科研成果向产业应用的转化。


    开授课程

    普通遗传学,观赏植物育种学,园艺实验Ⅱ(育种总论),基因工程(硕),园艺植物遗传学与生理生化(硕)


    科研项目

    福建省自然科学基金(面上项目),热激转录因子NtHSFA5和NtHSFB1调控多花水仙耐热性的机理研究,2025-2028,主持



    论文著作

    1. Zhou Ping, Li Jingwen, Jiang Huiyan, et al. NpCIPK6–NpSnRK1 module facilitates intersubgeneric hybridization barriers in water lily (Nymphaea) by reducing abscisic acid content. Horticulture Research, 2025, 12(1): uhae289.(JCR Q1 IF =8.2)

    2. Zhou Ping, Li Jingwen, Jiang Huiyan, et al. A transposon DNA/hAT-Ac insertion promotes the formation of yellow tepals in lotus (Nelumbo). International Journal of Biological Macromolecules, 2024, 283: 137724. (JCR Q1 IF =7.7)

    3. Zhou Ping, Li Jingwen, Jiang Huiyan, et al. Hormone and transcriptomic analysis revealed that ABA and BR are key factors in the formation of inter‐subgeneric hybridization barrier in water lily. Physiologia Plantarum, 2024, 176(1): e14177. (JCR Q1 IF =5.5)

    4. Zhou Ping, Li Jingwen, Jiang Huiyan, et al. Analysis of bZIP gene family in lotus (Nelumbo) and functional study of NnbZIP36 in regulating anthocyanin synthesis. BMC Plant Biology, 2023, 23(1): 429. (JCR Q1 IF =5.2)

    5. Zhou Ping, Jiang Huiyan, Li Jingwen, et al. Genome-wide identification reveals that BZR1 family transcription factors involved in hormones and abiotic stresses response of lotus (Nelumbo). Horticulturae, 2023, 9(8): 882. (JCR Q1 IF =4.2)

    6. Zhou Ping, Jin Qijiang, Qian Ping, et al. Genetic resources of lotus (Nelumbo) and their improvement. Ornamental Plant Research, 2022, 2(1): 1-16.

    7. Zhou Ping, Peng Jiayu, Zeng Minjie, et al. Virus-induced gene silencing (VIGS) in Chinese narcissus and its use in functional analysis of NtMYB3. Horticultural Plant Journal, 2021, 7(6): 565-572. (JCR Q1 IF =5.7)

    8. Jiang Huiyan#, Zhou Ping#, Jin Qijiang, et al. Transcriptomics and metabolomics analysis revealed the regulatory network of apical buds development in lotus (Nelumbo nucifera Gaertn.). Scientia Horticulturae, 2024, 331: 113096. (JCR Q1 IF =4.3) (共同一作)

    9. Chen Xuerong#, Zhou Ping#, Guo Nanhong, et al. The MADS-Box Transcription Factor ClAG2 Is a Key Regulator for the Formation of Double Flower in Clematis L. Horticulturae, 2024, 11(1): 19. (共同一作) (JCR Q1 IF =4.2)

    10. Li Jingwen, Zhou Ping, Hu Zhihang, et al. The transcription factor CsPAT1 from tea plant (Camellia sinensis) is involved in drought tolerance by modulating phenylpropanoid biosynthesis. Journal of Plant Physiology, 2025: 154474. (JCR Q1 IF =4)

    11. Li Jingwen, Zhou Ping, et al. CsPAT1, a GRAS transcription factor, promotes lignin accumulation by antagonistic interacting with CsWRKY13 in tea plants. The Plant Journal, 2024. (JCR Q1 IF =7.1)

    12. Li jingwen, Zhou Ping, Yang Ni, et al. CsBZR1 Family Transcription Factors in Wild and Cultural Tea Plants and Their Response to Hormone and Abiotic Stress. Journal of Plant Growth Regulation, 2023: 1-14. (JCR Q1 IF =4.7)

    13. Li jingwen, Zhou Ping, Deng, Yuanjie. et al. Overexpressing CsPSY1 Gene of Tea Plant, Encoding a Phytoene Synthase, Improves α-Carotene and β-Carotene Contents in Carrot. Molecular Biotechnology, 2023: 1-12. (JCR Q3 IF =2.6) 

    14. Sun Chunqing, Cao Jing, Wang Jinghua, Zhou Ping, Xu Yingchun, Chen Fadi, Pectin methylesterase regulates pollen germination on stigma after pollination in water lily. Scientia Horticulturae, 2023,320:112207. (JCR Q1 IF =4.3)

    15. Xu Yingchun, Jiang Junnan, Zeng Lihong, Liuhuan, Jin Qijiang, Zhou Ping, Wang Yanjiel. Genome-wide identification and analysis of ERF transcription factors related to abiotic stress responses in Nelumbo nucifera. BMC Plant Biology, 2024, 24(1): 1057.

    16. Jiang Huiyan, Chen Junjie, Liu Guangyang, Zhou Ping, et al. Screening of Early Flowering Lotus (Nelumbo nucifera Gaertn.) Cultivars and Effects of Different Cultivars on Flowering Period. Plants, 2023, 12(8), 1683. (JCR Q1 IF =4.4)

    17. Fan Yuxin, Peng Jiayu, Wu Jiacheng, Zhou Ping, He Ruijie, Allan, A. C,  Zeng Lihui. NtbHLH1, a JAF13-like bHLH, interacts with NtMYB6 to enhance proanthocyanidin accumulation in Chinese Narcissus. BMC Plant Biology2021, 21(1), 275.

    18. Liu Yuhui, Lin-Wang Kui, Espley Richard V , Wang Li, Li Yuanming, Liu Zhen, Zhou Ping, Zeng Lihui, Zhang Xiaojing, Zhang Junlian, Allan Andrew C, StMYB44 negatively regulates anthocyanin biosynthesis at high temperatures in tuber flesh of potato, Journal of Experimental Botany2019, 70(15) 2019, 3809–3824.

    19. Muhammad Anwar, Yu Weijun, Yao Hong, Zhou Ping, Allan Andrew C. , and Zeng Lihui. NtMYB3, an R2R3-MYB from Narcissus, Regulates Flavonoid Biosynthesis International Journal of Molecular Sciences, 2019, 20 (21): 5456.

    20. 吴立璇,周平,范雨昕,等.中国水仙NtMYB8的分离及功能研究.园艺学报,2021,48(10):1895-1906.

    21. 姚红,周平,范雨昕,等.中国水仙DFR基因启动子的克隆及功能.应用与环境生物学报,2019,25(04):993-998.

    22. 周平,范雨昕,姚红,等.中国水仙LAR基因启动子的克隆及功能初步分析.西北植物学报,2019,39(08):1353-1360.


    科技成果

    徐迎春,赵莹,姜慧,杨志娟,金奇江,王彦杰,周平,一种睡莲成熟胚愈伤组织诱导及增殖的方法 2022.07.26, CN114467760B(发明专利)