师资队伍

teaching staff

优秀青年学者

当前位置: 首页 > 师资队伍 > 杰出人才

张 阳

发布时间 :2024年03月15日 浏览量 :7323

张阳,博士,教授,博士生导师

e-mail: yang.zhang@scu.edu.cn

地址:四川大学生命科学学院A804

学术兼职:

生物资源与生态环境教育部重点实验室(四川大学)主任

中国植物学会植物整合组学专业委员会 副主任

中国植物生理与植物分子生物学学会植物代谢专业委员会 副主任

四川省细胞生物学会植物学专委会 主任

Journal of Integrative Plant Biology 编委

aBIOTECH编委

Synthetic and Systems Biotechnology编委

Science China Life Sciences 青年编委

学习及工作经历:

2005.09-2009.06 四川大学,生物技术,学士

2009.10-2014.07 英国约翰英纳斯中心/东安格利亚大学,生物学,博士

2014.08-2015.12 英国约翰英纳斯中心,博士后

2016.03-2018.08 四川大学生命科学学院,特聘研究员,博导

2018.09-2023.08 四川大学生命科学学院,研究员,博导

2023.09-至今 四川大学生命科学学院,教授,博导

学术荣誉:

中国植物生理与植物分子生物学学会“卫志明青年创新奖”(2024

四川省学术与技术带头人(2021

四川省教科文卫工会“劳模(职工技能人才)创新工作室(2018

四川省特聘专家(2017

研究方向:

本实验室致力于植物代谢的研究,主要关注以下几个方面:

  1. 解析重要植物代谢产物的合成途径,发现酶的新功能

  2. 解析植物代谢网络的调控机制,鉴定新的代谢调控因子

  3. 开展代谢工程及合成生物学研究,创制营养强化新种质

     

    近年来作为负责人主持的代表性科研项目:

    四川省自然科学基金创新研究群体,2023NSFSC19912023-2025

    科技部重点研发青年项目,2022YFF10019002022-2027

    国家自然科学基金面上项目,321702662022-2025

    国家自然科学基金青年项目,317012552018-2020

    国家自然科学基金面上项目,316703522017-2020

    近年来专利授权情况:

1.张阳张子昕;张昕;张静;江文倩 SlPIF4作为负调控因子在提升番茄果实褪黑素含量中的应用,2024-04-09,中国发明专利,ZL 2022 1 1391519.8

2.张阳;魏硕;付饶;多酚氧化酶的应用及合成黄酮的方法,2023-06-16,中国发明专利,ZL 2021 1 0448995.8

3.张阳;袁勇;吴钰;任思彦;番茄SlWRKY35基因在提高番茄类胡萝卜素类化合物或/和叶绿素含量中的应用,2023-04-28,中国发明专利,ZL 2021 1 0342002.9

4.张阳;李彦;周璐;付饶;参与调控番茄甾体生物碱合成转录因子的应用,2021-02-19,中国发明专利,ZL 2019 1 0847193.7

近五年代表性工作(*共同一作,#通讯作者)

  1. Wang, J., Wang, Z., Wang, H., Pai, M., Li, T., Zhang, H., Ye, B., Tang, L., Fu, R.#, Zhang, Y.# (2025) UDP-glucosyltransferases from UGT73 family catalyze 3-O-glucosylation of isosteroidal and steroidal alkaloids in Fritillaria unibracteata var. wabuensis. The Plant Journal 121:e70042

  2. You, S., Wu, Y., Li, W., Liu, X., Tang, Q., Huang, F., Li, Y., Wang, H., Liu, M., Zhang, Y.# (2024) SlERF.G3-Like mediates a hierarchical transcriptional cascade to regulate ripening and metabolic changes in tomato fruit. Plant Biotechnology Journal 22(1):165-180

  3. Zhang, Z., Zhang, X., Chen, Y., Jiang, W., Zhang, J., Wang, J., Wu, Y., Wang, S., Yang, X., Liu, M., Zhang, Y.# (2023) Understanding the mechanism of red light induced melatonin biosynthesis facilitates the engineering of melatonin-enriched tomatoes. Nature Communications 14:5525

  4. Shu, P.*, Zhang, Z.*, Wu, Y., Chen, Y., Li, K., Deng, H., Zhang, J., Zhang, X., Wang, J., Liu. Z., Xie, Y., Du, K., Li, M., Bouzayen, M., Hong, Y., Zhang, Y.#, Liu, M. # (2023) A comprehensive metabolic map reveals major quality regulations in red-flesh kiwifruit (Actinidia chinensis). New Phytologist 238(5):2064-2079

  5. Yuan, Y., Ren, R., Liu, X., Su, L., Wu, Y., Zhang, W., Li, Y., Jiang, Y., Wang, H., Fu R., Bouzayen, M., Liu, M., Zhang, Y.# (2022) SlWRKY35 positively regulates carotenoid biosynthesis by activating the MEP pathway in tomato fruit. New Phytologist 234(1):164-178

  6. Fu, R.#*, Zhang, P.*, Jin, G., Wei, S., Chen, J., Pei, J., Zhang, Y.# (2022) Substrate promiscuity of acyltransferases contributes to the diversity of hydroxycinnamic acid derivatives in purple coneflower. The Plant Journal 110: 802–813

  7. Wei, S., Xiang, T., Zhang, Y.#, Fu, R.# (2022) The unexpected flavone synthase-like activity of polyphenol oxidase in tomato. Food Chemistry 377:131958

  8. Zhang, J.*, Yang, X.*, Zhang, X.*, Zhang, L., Zhang, Z.,#, Zhang, Y. # and Yang, Q. # (2022) Linking environmental signals to plant metabolism: The combination of field trials and environment simulators. Molecular Plant 15:213-215

  9. Wu, Y.*, Yuan, Y.*#, Jiang, W., Zhang, X., Ren, S., Wang, H., Zhang, X., Zhang, Y.# (2022) Enrichment of health-promoting lutein and zeaxanthin in tomato fruit through metabolic engineering. Synthetic and Systems Biotechnology 7:1159-1166

  10. Ren, S.*, Yuan, Y.*, Wang, H., Zhang, Y.# (2022) G2-LIKE CAROTENOID REGULATOR (SlGCR) is a positive regulator of lutein biosynthesis in tomato. aBIOTECH 3:267–280

  11. Fu, R.*, Zhang, P.*, Jin, G., Wang, L., Qi, S., Cao, Y., Martin, C. and Zhang, Y.# (2021) Versatility in acyltransferase activity completes chicoric acid biosynthesis in purple coneflower. Nature Communications 12: 1563

  12. Fu, R.*, Li, J.*, Yu, H.*, Zhang, Y.#, Xu, Z. # and Martin, C.# (2021) The Yin and Yang of traditional Chinese and Western medicine. Medicinal Research Reviews 41(6):3182-3200

  13. Zhang, Z. and Zhang, Y.# (2021) Melatonin in plants: what we know and what we don’t. Food Quality and Safety 5: fyab009

  14. Zhang, Z and Zhang, Y#. (2020) A Transcriptional Network Makes Normal Tomato Fruit Not Purple. Molecular Plant 13: 11–13

  15. Li, Y.*, Chen, Y.*, You, S.*, Zhou, L.*, Deng, H., Chen, Y., Alseekh, S., Yuan, Y., Fu, R., Zhang, Z., Su, D., Fernie, A., Bouzayen, M., Ma, T., Liu, M. #, Zhang, Y.# (2020) MicroTom Metabolic Network: Rewiring Tomato Metabolic Regulatory Network throughout the Growth Cycle. Molecular Plant 13:1203-1218

  16. Ying, S*., Su, M*., Wu, Y., Zhou, L., Fu, R., Li, Y., Guo, H., Luo, J., Wang, S.# and Zhang, Y.# (2020) Trichome regulator SlMIXTA‐like directly manipulates primary metabolism in tomato fruit. Plant Biotechnology Journal 18:354-363

 

论文发表详细情况请见:https://scholar.google.com/citations?user=2zk_C0oAAAAJ&hl=en