廖茵茵 陈焕镛副研究员
职务:
电话: 020-37021938
地址: 广东省广州市天河区兴科路723号
学历/学位: 博士
电子邮件: honey_yyliao@scbg.ac.cn
邮政编码: 510650

学习工作简历:

2009.09-2013.06  华南理工大学生物工程专业并获学士学位

2013.07-2014.08  中山大学 研究助理

2014.09-2016.06  中山大学生物工程专业并获硕士学位

2016.07-2018.08  中国科学院华南植物园 研究助理

2018.09-2021.01  中国科学院大学生物化学与分子生物学专业并获博士学位

2021.01-2024.05  中国科学院华南植物园 博士后/中国科学院特别研究助理

2024.06至今     中国科学院华南植物园 陈焕镛副研究员

研究领域:

茶树逆境生物学研究及其抗逆性状的改良应用

承担科研项目情况:

(1) 国家自然科学基金青年科学基金项目,主持,2024.01-2026.12

(2) 广东省政府采购项目,主持,2025.02-2025.12

(3) 中国科学院特别研究助理项目,主持,2021.1-2022.12(已结题)。

(4) 中国科学院仪器设备功能开发技术创新项目,主持,2020.05-2022.09(已结题)。

(5) 中国博士后科学基金面上资助项目,主持,2021.08-2024.05(已结题)。

(6) 广东省自然科学基金面上项目,主持,2022.01-2024.10(已结题)。

社会任职:

(1) 担任《Plants》期刊的客座编辑;

(2) 担任Adv. Sci.J. Adv. Sci.Food Chem.Postharvest Biol. Technol.J. Agr. Food Chem.等期刊审稿人。

(3) 入选广东省驻镇帮镇扶村农村科技特派员,清远市农村科技特派员等。

获奖及荣誉:

(1) 创新清远科技进步奖二等奖(第4完成人),2023年。

(2) 首届中国茶科技创新大赛优秀奖(第1完成人),2022年。

(3) 潮州市农业技术推广奖一等奖(第7完成人),2022年。

(4) 第七届中国茶叶学会科技创新奖二等奖(第2完成人),2021年。

(5) 广东省农业科学院科学技术奖(第2完成人),2021年。

(6) 创新清远技进步奖二等奖(第2完成人),2021年。

(7) 2019年度广东省农业技术推广奖二等奖(第7完成人)2020年。

代表论著:

[1]   Zou, Z.Y., Fan, Q., Zhou, X.C., Fu, X.M., Jia, Y.X., Li, H.X., Liao, Y.Y.* Biochemical pathways of salicylic acid derived from L-phenylalanine in plants with different basal SA levels. Journal of Agricultural and Food Chemistry, 2024, 72(6): 2898-2910. (通讯作者).

[2]   Xiao, Y.Y.#, Qian, J.J.#, Hou, X.L., Zeng, L.T., Liu, X., Mei, G.G., Liao, Y.Y.* Diurnal emission of herbivore-induced (Z)-3-hexenyl acetate and allo-ocimene activates sweetpotato defense responses to sweetpotato weevils. Journal of Integrative Agriculture, 2023, 22(6): 1782-1796. (通讯作者).

[3]   Liao, Y.Y.#, Fu, X.M.#, Zeng, L.T., Yang, Z.Y.* Strategies for studying in vivo biochemical formation pathways and multilevel distributions of quality or function-related specialized metabolites in tea (Camellia sinensis). Critical Reviews in Food Science and Nutrition, 2022, 62: 429-442. (第一作者).

[4]   Liao, Y.Y., Zhou, X.C., Zeng, L.T.* How does tea (Camellia sinensis) produce specialized metabolites which determine its unique quality and function: a review. Critical Reviews in Food Science and Nutrition, 2022, 62(14): 3751-3767. (第一作者).

[5]   Liao, Y.Y., Zeng, L.T., Rao, S.F., Gu, D.C., Liu, X., Wang, Y.R., Zhu, H.B., Hou, X.L., Yang, Z.Y.* Induced biosynthesis of chlorogenic acid in sweetpotato leaves confers the resistance against sweetpotato weevil attack. Journal of Advanced Research, 2020, 24: 513-522. (第一作者).

[6]   Liao, Y.Y., Fu, X.M., Zhou, H.Y., Rao, W., Zeng, L.T., Yang, Z.Y.* Visualized analysis of within-tissue spatial distribution of specialized metabolites in tea (Camellia sinensis) using desorption electrospray ionization imaging mass spectrometry. Food Chemistry, 2019, 292: 204-210. (第一作者).

[7]   Liao, Y.Y.#, Tan, H.B.#, Jian, G.T., Zhou, X.C., Huo, L.Q., Jia, Y.X., Zeng, L.T., Yang, Z.Y.* Herbivore-induced (Z)-3-hexen-1-ol is an airborne signal that promotes direct and indirect defenses in tea (Camellia sinensis) under light. Journal of Agricultural and Food Chemistry, 2021, 69: 12608-12620. (第一作者).

[8]   Liao, Y.Y., Zeng, L.T., Tan, H.B., Cheng, S.H., Dong, F., Yang, Z.Y.* Biochemical pathway of benzyl nitrile derived from L-phenylalanine in tea (Camellia sinensis) and its formation in response to postharvest stresses. Journal of Agricultural and Food Chemistry, 2020, 68: 1397-1404. (第一作者).

[9]   Liao, Y.Y.#, Yu, Z.M.#, Liu, X.Y., Zeng, L.T., Cheng, S.H., Li, J.L., Tang, J.C., Yang, Z.Y.* Effect of major tea insect attack on the formation of quality-related non-volatile specialized metabolites in tea (Camellia sinensis) leaves. Journal of Agricultural and Food Chemistry, 2019, 67: 6716-6724. (第一作者).

[10] Liao, Y.Y.#, Zeng, L.T.#, Li, P., Sun, T., Wang, C., Li, F.W., Chen, Y.Y., Du, B., Yang, Z.Y.* Influence of plant growth retardants on quality of Codonopsis Radix. Molecules, 2017, 22: 1655. (第一作者).

[11] Liu, X.#, Wang, Y.R.#, Zhu, H.B.#, Mei, G.G.#, Liao, Y.Y.#, Rao, S.F., Li, S.Q., Chen, A., Liu, H.J., Zeng, L.T., Xiao, Y.Y., Li, X.M., Yang, Z.Y., Hou, X.L.* (2022). Natural allelic variation confers high resistance to sweet potato weevils in sweet potato. Nature Plants, 8(11), 1233-1244. (共同第一作者).

[12] Fu, X.M.#, Cheng, S.H.#, Liao, Y.Y.#, Huang, B.Z., Du, B., Zeng, W., Jiang, Y.M., Duan, X.W., Yang, Z.Y.* Comparative analysis of pigments in red and yellow banana fruit. Food Chemistry, 2018, 239: 1009-1018. (共同第一作者).

[13] Yu, Z.M.#, Liao, Y.Y.#, Zeng, L.T., Dong, F., Watanabe, N., Yang, Z.Y.* Transformation of catechins into theaflavins by upregulation of CsPPO3 in preharvest tea (Camellia sinensis) leaves exposed to shading treatment. Food Research International, 2020, 129: 108842. (共同第一作者).

[14] Qian, J.J.#, Liao, Y.Y.#, Jian, G.T., Jia, Y.X., Zeng, L.T., Gu, D.C., Li, H.X., Yang, Y.H.* Light induces an increasing release of benzyl nitrile against diurnal herbivore Ectropis grisescens Warren attack in tea (Camellia sinensis) plants. Plant, Cell & Environment, 2023, 46(11): 3464-3480. (共同第一作者).

[15] Yu, Z.M.#, Liao, Y.Y.#, Teixeira da Silva, J., Yang, Z.Y.*, Duan, J.* Differential accumulation of anthocyanins in Dendrobium officinale stems with red and green peels. International Journal of Molecular Sciences, 2018, 19(10): 2857. (共同第一作者).

[16] Zeng, L.T.#, Liao, Y.Y.#, Li, J.L., Zhou, Y., Tang, J.C., Dong, F., Yang, Z.Y.* α-Farnesene and ocimene induce metabolite changes by volatile signaling in neighboring tea (Camellia sinensis) plants. Plant Science, 2017, 264: 29-36. (共同第一作者).