目录
更新日期:2025年2月27日
姓 名 赵杰堂 性 别
出生年月 1982年4月 籍贯 河南南阳市
民 族 汉族 政治面貌 民盟
最后学历 博士研究生 最后学位
技术职称 教授 导师类别 博导
行政职务 Email jtzhao@scau.edu.cn
工作单位 华南农业大学园艺学院 邮政编码 510642
通讯地址 广州市天河区五山路483号
单位电话 020-85287296
个人主页
个人简介
赵杰堂,男,博士,教授,博士生导师。博士毕业于中山大学,先后在中国科学院华南植物园和University of Florida(美国佛罗里达大学)从事博士后研究,主要研究领域为荔枝种质资源的评价与新品种选育、果实品质形成机理与调控方面的研究。近年来,主持国家自然科学基金(青年和面上)、国家重点研发计划子课题、广州市科技计划重点项目等科研项目9项,以第一作者或通讯作者在Molecular Ecology Resources、Plant and Cell Physiology、Horticulture Research等杂志发表论文25篇,参与审定果树品种5个,获得植物新品种权3项。2016年入选广州市珠江新星计划,以第一完成人获得广东省农业技术推广奖一等奖1项,参与获得省部级奖励2项。
工作经历
2023.6至今 ,华南农业大学,园艺学院,教授
2017.12- 2023.6,华南农业大学,园艺学院,副教授
2013/8 - 2017.12,华南农业大学,园艺学院,讲师
2010/8 - 2013/4,University of Florida,博士后
2009/8 - 2010/8,中国科学院华南植物园,助理研究员
教育经历
2004/9 - 2009/6,中山大学,生物技术专业,理学博士

2000/9 - 2004/7,河南师范大学,生物技术专业,理学学士
获奖、荣誉称号
2016年入选广州市珠江科技新星。
“荔枝高接换种提质增效技术研发与推广”获得2020年度广东省农业技术推广奖一等奖,排名第1。
“不同熟期优质荔枝系列新品种选育和高接换种技术创新及应用”获得2019年度广东省科技进步奖一等奖,排名第7。
“华南农业大学荔枝科技创新团队”获得2018-2019年度神农中华农业科技奖优秀创新团队奖,排名第12。
社会、学会及学术兼职
2024.12—— Frontiers in Plant Science Associate Editor 2024.1-2025.12 果树学报 青年编委
研究领域
1. 果树分子生物学
2. 果树生物技术
3. 果树资源评价及利用
科研项目
国家自然科学基金面上项目(32172528),转化酶抑制子LcINH1/2调控荔枝焦核形成的机制研究,2022.1—2025.12,58万元
广州市科技局重点研发计划项目(202103000057),耐贮运、 优质荔枝新品种选育及高效栽培技术研究,2021.4—2024.3,100万元
国家重点研发计划(子课题)(2019YFD1000902),荔枝、枇杷育种共性关键技术研究,2019.7—2022.12,62万元
荔枝细胞壁转化酶基因家族与焦核发生的相关性研究(31501734),国家自然科学基金青年基金,2016.1-2018.12,25.2万元
脱落酸(ABA)促进荔枝果皮花色素苷积累的生理生化及分子机理(201610010147),广州市珠江科技新星,2016.5-2019.4,30万元
荔枝酸性转化酶基因家族分析及与果实品质相关性研究,第48期教育部留学回国人员科研启动基金,2015.01-2016.12,3万元
发表论文
秦雅琪,胡桂兵,赵杰堂*. 2020. 发根农杆菌介导的荔枝 LcMYB1 转化烟草叶片的研究. 园艺学报,47(4): 635-642.
赵杰堂. 2016. 激素调控植物花青素合成分子机制的研究进展. 分子植物育种,14(7): 1884-1891
赵杰堂. 2016. 蔗糖转化酶在高等植物生长发育及胁迫响应中的功能研究进展. 热带亚热带植物学报,24(3): 352 ~ 358
Wu L, Fan S, Li S, Zhang Z, Qin Y, Hu G*, Zhao J*. 2024. LcINH1 as an inhibitor of cell wall invertase LcCWIN5 regulates early seed development in Litchi chinensis Sonn. International Journal of Biological Macromolecules, 278: 134497.
Huang M, Guo W, Wu X, Qin Y, Sabir·IA, Zhang Z, Qin Y, Hu G, Zhao J*. 2024. Somatic embryogenesis and plant regeneration of Litchi chinensis Sonn. cv. ‘Zili’ from immature zygotic embryos. Plant Cell, Tissue and Organ Culture, 156: 39.
Huang Q, Zhang B, Wang D, Zhao M, Chen L, Yang X, Yang Y, Wang M, Chen Z, Zhang Z, Qin Y, Zhao J*, Hu G*. 2024. Physiological, anatomical and transcriptome analyses reveal ‘Huaizhi’ as widely compatible rootstock in Litchi chinensis Sonn. Grafting. Scientia Horticulturae, 331: 113161.
Li S, Qin Y, Jing S, Wang D, Zhang Z, Qin Y, Hu G, Zhao J*. 2023. Metabolomeand transcriptome analyses reveal the molecular mechanisms of LcMYB1 regulating anthocyanin accumulation in litchi hairy roots, Plant Physiology and Biochemistry, 200: 107749.
Wang D, Chen L, Yang Y, Abbas F, Qin Y, Lu H, Lai B, Wu Z, Hu Bing, Qin Y, Wang H, Zhao J*, Hu G*. 2023. Integrated metabolome and transcriptome analysis reveals the cause of anthocyanin biosynthesis deficiency in litchi aril. Physiologia Plantarum 175: e13860.
Zhao J, Chen L, Ma A, Wang D, Lu H, Chen L, Wang H, Qin Y, Hu G. 2022. R3-MYB transcription factor LcMYBx from Litchi chinensis negatively regulates anthocyanin biosynthesis by ectopic expression in tobacco. Gene 812: 146105.
Qin Y, Wang D, Fu J, Zhang Z, Qin Y, Hu G*, Zhao J*. 2021. Agrobacterium rhizogenes-mediated hairy root transformation as an efficient system for gene function analysis in Litchi chinensis. Plant Methods 17: 103.
Fan S, Wang D, Xie H, Wang H, Qin Y, Hu G, Zhao J*. 2021. Sugar transport, metabolism and signaling in fruit development of Litchi chinensis Sonn.: A Review. International Journal of Molecular Sciences. 22(20):11231.
Ma A, Wang D, Lu H, Wang H, Qin Y, Hu G*, Zhao J*. 2021. LcCOP1 and LcHY5 control the suppression and induction of anthocyanin accumulation in bagging and debagging litchi fruit pericarp. Scientia Horticulturae 287: 110281.
Hu F, Chen Z, Wang X, Wang J,  Fan H, Qin Y, Zhao J*, Hu G*. 2021. Construction of high-density SNP genetic maps and QTL mapping for dwarf-related traits in Litchi chinensis Sonn. Journal of Integrative Agriculture, 20(11): 2900–2913.
Xie H, Wang D, Qin Y, Ma A, Fu J, Qin Y, Hu G, Zhao J*. 2019. Genome-wide identification and expression analysis of SWEET gene family in Litchi chinensis reveal the involvement of LcSWEET2a/3b in early seed development. BMC Plant Biology, 19:499.
Hu B, Lai B, Wang D, Li J, Chen L, Qin Y, Wang H, Qin Y, Hu G*, Zhao J*. 2019. Three LcABFs are involved in the regulation of chlorophyll degradation and anthocyanin biosynthesis during fruit ripening in Litchi chinensis. Plant and Cell Physiology, 60: 448-461.
Chen L, Hu B, Qin Y, Hu G, Zhao J*. 2019. Advance of the negative regulation of anthocyanin biosynthesis by MYB transcription factors. Plant Physiology and Biochemistry 136: 178–187.
Zhang J, Wu Z, Hu F, Liu L, Huang X, Zhao J*, Wang H*. 2018. Aberrant seed development in Litchi chinensis is associated with the impaired expression of cell wall invertase genes. Horticulture Research 5:39.
Hu B, Li J, Wang D, Wang H, Qin Y, Hu G, Zhao J*. 2018. Transcriptome profiling of Litchi chinensis pericarp in response to exogenous cytokinins and abscisic acid. Plant Growth Regulation, 84: 437-450
Liu R, Lai B, Hu B, Qin Y, Hu G, Zhao J*. 2017. Identification of microRNAs and their target genes related to the accumulation of anthocyanins in Litchi chinensis by high-throughput sequencing and degradome analysis. Frontiers in Plant Science, 7: 2059
Zhao J, Li Z, Chen J, Henny RJ, Gray DJ, Chen J. 2013. Purple-leaved Ficus lyrata plants produced by overexpressing a grapevine VvMybA1 gene. Plant Cell Reports, 32: 1783-1793
Zhao J, Li Z, Henny RJ, Gray DJ, Xie J, Chen J. 2013. Efficient somatic embryogenesis and Agrobacterium-mediated transformation of Epipremnum aureum ‘Jade’. Plant Cell Tissue and Organ Culture, 114: 237-247
Zhao J, Cui J, Liu J, Liao F, Henny RJ, Chen J. 2012. Direct somatic embryogenesis from leaf and petiole explants of Spathiphyllum ‘Supreme’ and analysis of regenerants using flow cytometry. Plant Cell, Tissue and Organ Culture, 110: 239-249
Zhao J, Zhang Q, Xie J, Hung CY, Cui J, Henny RJ, Chen J. 2012. Plant regeneration via direct somatic embryogenesis from leaf and petiole explants of Epipremnum aureum ‘Marble Queen’ and characterization of selected variants. Acta Physiologiae Plantarum, 34: 1461-1469
Zhao JT, Huang X, Chen YP, Chen YF, Huang XL. 2009. Molecular cloning and characterization of anortholog of NPR1 gene from Dongguan Dajiao (Musa spp. ABB). Plant Molecular Biology Reporter, 27: 243-249
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