赵磊

时间:2021-03-16 09:08:10 来源:园艺学院

  赵磊,副教授,硕士生导师

  性别:女

  E-mail:zhaolei_tea@163.com

  学习经历:

  2004/09 - 2008/06,山东农业大学生命科学学院生物技术专业,获理学学士学位

  2004/09 - 2008/06,山东农业大学外国语学院英语专业,获文学学士学位

  2008/09 - 2013/06,安徽农业大学茶与食品科技学院茶学专业,获农学博士学位

  2017/11-2018/12,美国马里兰大学访问学者

  工作经历:

  2013/07-至今,青岛农业大学,园艺学院茶学专业

  研究方向:

  1. 茶树抗性育种

  2. 茶树次生代谢调控

  3. 茶与健康

  主要任课:

  《茶叶生物化学》、《茶学专业英语》、《茶叶标准化生产》

  主要的科研项目:

  1. 国家自然科学基金青年基金,茶树csn-miR156e/h非生物胁迫应答机制的研究,主持。

  2. 山东省高等学校科技计划项目, miR164c响应茶树非生物逆境胁迫机理的研究,主持。

  3. 山东省自然科学基金博士基金, R2R3-MYB SG2基因响应茶树低温胁迫机理的研究,主持。

  4. 茶树生物学与资源利用国家重点实验室开放基金项目,茶树花青素还原酶基因的调控机制研究,主持。

  5. 国家自然科学基金面上项目,基于miRNA和mRNA双重表达谱的茶树抗寒及抗冻分子机制研究,参加(3/10)。

  6. 国家自然科学基金面上项目,利用肥胖小鼠模型研究内环境对基因组甲基化影响的跨代遗传及稳定性,参加(3/10)。

  7. 国家自然科学基金青年基金,绿茶鲜叶矿质元素指纹信息成因及变化机理,参加(4/10)。

  8. 国家自然科学基金青年基金,细胞质转化酶基因CsINV2和CsINV12调控茶树抗寒响应的作用机制,参加。

  9. 青岛农业大学高层次人才启动基金,茶树响应低温相关小 RNA 研究,主持。

  指导的学位论文奖励:

  2017年 青岛农业大学优秀学士论文茶树MYB10的表达模式及拟南芥遗传转化体系的建立

  近年主要发表论文:

  (1) Peiqiang Wang#, Lingjie Zhang#, Lei Zhao, Xinfu Zhang, Hanghang Zhang, Yahui Han, Xiaolan Jiang, YaJun Liu, Liping Gao*, Tao Xia*. Comprehensive Analysis of Metabolic Fluxes from Leucoanthocyanins to Anthocyanins and Proanthocyanidins (PAs). Journal of Agricultural and Food Chemistry 2020, 6851(51), 15142–15153.

  (2) Lei Zhao, Changsong Chen, Yu Wang, Jiazhi Shen, Zhaotang Ding*, Conserved microRNA act boldly during sprout development and quality formation in Pingyang tezaocha (Camellia sinensis). Frontier in Genetics 2019. 10:237. doi: 10.3389/fgene.2019.00237.

  (3) Taimei Di, Lei Zhao, Huimin Chen, Wenjun Qian, Peiqiang Wang, XinFu Zhang and Tao Xia, Transcriptomic and metabolic insights into the distinctive effects of exogenous melatonin and gibberellin on terpenoid synthesis and plant hormone signal transduction pathway in Camellia sinensis. Journal of Agricultural and Food Chemistry 2019, Apr 12;67(16):4689-4699. Epub 2019 Apr 12.

  (4) Xiaolan Jiang, Keyi Huang, Guangshun Zheng, Hua Hou, Peiqiang Wang, Han Jiang, Xuecheng Zhao, Mingzhuo Li, Shuxiang Zhang, Yajun Liu, Liping Gao, Lei Zhao**, Tao Xia*,CsMYB5a and CsMYB5e from Camellia sinensis differentially regulate anthocyanin and proanthocyanidin biosynthesis, Plant Science 2018,270:209-220.

  (5) Lei Zhao#, Xiaolan Jiang#, Yumei Qian, Peiqiang Wang, Deyu Xie*, Li-ping Gao*, Tao Xia*, Metabolic characterization of the anthocyanidin reductase pathway involved in the biosynthesis of flavan-3-ols in elite Shuchazao tea (Camellia sinensis) cultivar in the field, Molecules 2017, 22, 2241.

  (6) Taimei Di, Shaolan Yang, Fengyu Du, Lei Zhao, Tao Xia, Xinfu Zhang*, Cytotoxic and hypoglycemic activity of triterpenoid saponins from Camellia oleifera Abel. seed pomace, Molecules. 2017, 21, 22(10); doi: 10.3390/molecules22101562.

  (7) Chao Zheng, Yu Wang, Zhaotang Ding*, Lei Zhao, Global transcriptional analysis reveals the complex relationship between tea quality, leaf senescence and the responses to cold-drought combined stress in Camellia sinensis, Frontiers in plant science, 2016; 7: 1858, doi: 10.3389/fpls.2016.01858

  (8) Yumei Qian, Xianqian Zhao, Lei Zhao, Lilan Cui, Li Liu, Xiaolan Jiang, Yajun Liu, Liping Gao*, Tao Xia*, Analysis of stereochemistry and biosynthesis of epicatechin in tea plants by chiral phase high performance liquid chromatography. Journal of chromatography. B, 2015, 1006:1-7.

  (9) Chao Zheng, Lei Zhao, Yu Wang, Jiazhi Shen, Yinfei Zhang, Sisi Jia, Yusheng Li, Zhaotang Ding*, Integrated RNA-Seq and sRNA-Seq analysis identifies chilling and freezing responsive key molecular players and pathways in Camellia sinensis. PLoS One, 2015, doi: 10.1371/journal.pone.0125031.

  (10) Zhongwei Lu#, Yajun Liu#, Lei Zhao, Xiaolan Jiang, Mingzhuo Li, Yunsheng Wang, Yujiao Xu, Liping Gao*, Tao Xia*, Effect of low-intensity white light mediated de-etiolation on the biosynthesis of polyphenols in tea seedlings. Plant Physiology and Biochemistry, 2014, 80: 328-336.

  (11) Lei Zhao, Liping Gao*, Hongxue Wang, Xiaotian Chen, Yunsheng Wang, Hua Yang, Chaoling Wei, Xiaochun Wan, Tao Xia*, The R2R3-MYB, bHLH, WD40, and related transcription factors in flavonoid biosynthesis. Functional & integrative genomics, 2013, 13(1):75-98.

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