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正高级人员

吴建强

研究员

所属部门:

中国科学院昆明植物研究所

研究方向:

植物多样性研究和保护

邮箱:

wujianqiang@mail.kib.ac.cn

通讯地址:

云南省昆明市盘龙区蓝黑路132号

简历介绍

教育经历

1995年,大连理工大学获理学学士学位;

1998年,中国科学院大连化学物理研究所获理学硕士学位;

2007年,德国马普化学生态学研究所分子生态学研究室获理学博士学位;

工作经历

1998年-2001年,在中国科学院大连化学物理研究所做研究实习员;

2007年-2012年,在德国马普化学生态学研究所坐课题负责人;

2012年至今,在中国科学院昆明植物研究所历任研究员四级、三级、二级。

学术任职

2020.06-2025.05,中国科学院昆明植物研究所学术委员会,副主任

2023.10-2028.10,中国植物学会,第十七届理事会理事

2024.08-2029.08,中国植物生理与植物分子生物学学会,第十三届常务理事

2022.10-2027.10,中国生态学学会第五届化学生态专业委员会,副主任委员

2011-2025.12  ,Journal of Integrative Plant Biology,编委

2020.8-2025.12,Plant Diversity,主编

2023.01-2024.12,Journal of Ecology and Environment,编委

2024.04-2028.12,Journal of Systematics and Evolution   ,编委

2023.12-2028.12,中国科学院大学第六届学位评定委员会生命科学学位评定分委员会,委员

研究方向

    长期从事植物与昆虫互作以及植物与寄生植物互作的研究。在PNAS 、Nature Communications、Plant Cell、Molecular Plant、New Phytologist、Annual Review of Plant biology等重要期刊上发表论文70多篇。

承担科研项目情况
  1. 中国烟草总公司科技计划重大项目合作项目,E45R7812C12024.01-2026.12  ,主持人
  2. NSFC-云南区域联合基金,E410281211,2024.01-2027.12 ,主持人
  3. 2023年云南省“兴滇英才支持计划”云岭学者项目,43F181261,2024.01-2026.12    ,主持人
  4. 国家任务/基地和人才专项(WRLJ) ,E211681271,  2022.01-2024.12    ,主持人
  5. 云南省基础研究计划项目,E234087261,2022.06-2025.05 ,主持人
  6. 云南省创新团队,E13O581261,2021.01-2023.12    ,主持人
  7. 云南省烟草公司科技计划项目,E15W1812B1,2021.10-2023.12 ,主持人
  8. 云南省烟草公司科技计划项目,E15V5812C1,2021.01-2023.12 ,主持人
  9. 对外合作重点项目,Y72N9811Q1,2018.01-2020.12  ,主持人
  10. 面上项目,Y91F881211   2020.01-2023.12    ,主持人
  11. 云南省基础研究专项重点项目,E03D781261,2020.09-2023.08 ,主持人
获奖及荣誉

国务院政府津贴

代表论著

2025

1. Zhao, M., Zheng, X., Su, Z., Shen, G., Xu, Y., Feng, Z., Li, W., Zhang, S., Cao, G., Zhang, J.*, Wu, J.*,icroRNA399s and strigolactones mediate systemic phosphate signaling between dodder-connected host plants and control the association of host plants with rhizosphere microbes. New Phytologist.2025245:1263-1276

2024

2. Wang, L., Ma, C., Wang, S., Yang F., Sun, Y., Tang, J., Luo, J., Wu, J.*,"Ethylene and jasmonate signaling converge on gibberellin catabolism during thigmomorphogenesis in Arabidopsis" . Plant Physiology.2024194 (2):758-773

2023

3. Shen, G., Zhang, J., Lei, Y., Xu, Y., Wu, J.* .Between-Plant Signaling. Annual Review of Plant Biology  Annual Review of Plant Biology.202374:367-386

4. Ma, C., Li, R., Sun, Y., Zhang, M., Li, S., Xu, Y., Song, J., Li, J., Qi, J., Wang, L.*, Wu, J.*.  ZmMYC2s play important roles in maize responses to simulated herbivory and jasmonate. Journal of Integrative Plant Biology .202365(4):1041-1058

5. Wu, J.*.Plant biology: Young maize leavessmella volatile danger signal. Current Biology.202333(17): R914R916

2022

6. Ma, C., Li, R., Sun, Y., Zhang, M., Li, S., Xu, Y., Song, J., Li, J., Qi, J., Wang, L.*, Wu, J.* .ZmMYC2s play important roles in maize responses to simulated herbivory and jasmonate. Journal of Integrative Plant Biology.(2022)65:1041-1058

7. "Yuxing Xu, Jingxiong Zhang, Canrong Ma, Yunting Lei, Guojing Shen, Jianjun Jin, Deren A.R. Eaton, Jianqiang Wu".Comparative genomics of orobanchaceous species with different parasitic lifestyles reveals the origin and stepwise evolution of plant parasitism. Molecular Plant.(2022)15:1384-1399

2021

8. Lei, Y., Xu, Y., Zhang, J., Song, J., Wu, J.*.Herbivory-induced systemic signals are likely evolutionarily conserved in euphyllophytes. Journal of Experimental Botany Journal of Experimental Botany.2021727274-7284

9. Malook, S.U., Xu, Y., Qi, J, Li, J., Wang, L., Wu, J.*.Mythimna separata herbivory primes maize resistance in systemic leaves   Journal of Experimental Botany.202172: 3792-3805

10. Zhang, C., Li, J., Li, S., Ma, C., Liu, H., Wang, L., Qi, J.*, Wu, J.*.ZmMPK6 and ethylene signaling negatively regulate the accumulation of anti-insect metabolites DIMBOA and DIMBOA-Glc in maize inbred line A188. New Phytologist 2021229:2273-2287

11. Zhang, J., Xu, Y., Xie, J., Zhuang, H., Liu, H., Shen, G.*, Wu, J.*.The parasite Cuscuta campestris enables transfer of bidirectional systemic nitrogen signals between host plants. Plant Physiology.2021185 1395-1410

12. Xu, Y.#, Lei, Y.#, Su, Z., Zhao, M., Zhang, J., Shen, G., Wang, L., Li, J., Qi, J., Wu, J.* .A chromosome-scale Gastrodia elata genome and large-scale comparative genomic analysis  indicate convergent evolution by gene loss in mycoheterotrophic and parasitic plants. Plant Journal.20211081609-1623

2020

13. Liu, N., Shen, G., Xu Y., Liu, H., Zhang, J., Li, S., Li, J., Zhang, C., Qi, J., Wang, L., Wu, J.*. Extensive inter-plant protein transfer between Cuscuta parasites and their host plants. Molecular Plant   .(2020)4: 573-585

14. Zhang, C., Lei, Y., Lu, C., Wang, L.*, Wu, J.* . MYC2, MYC3, and MYC4 function additively in wounding-induced jasmonic acid biosynthesis and catabolism. Journal of Integrative Plant Biology . (2020)229:2273-2287

15. Shen, G.#, Liu, N. #, Zhang, J., Xu, Y., Baldwin, I.T., Wu, J.*.Cuscuta australis (dodder) parasite eavesdrops on the host plantsFT signals to flower. Proceedings of the National Academy of Sciences of The United States Of America.(2020)117: 23125-23130

2019

16. Sun, G. #, Xu, Y. #, Liu, H. #, Sun, T., Zhang, J., Hettenhausen, C., Shen, G., Qi, J., Qin, Y., Li, J., Wang, L., Chang, W., Guo, Z., Baldwin, I.T., Wu, J.* . Large-scale gene losses underlie the genome evolution of parasitic plant Cuscuta australis. Nature Communications.(2018) 9:2683

17. Zhuang, H., Li, J., Song, J., Hettenhausen, C., Schuman, M., Sun, G., Zhang, C., Li, J., Song, D., Wu, J.*.Aphid (Myzus persicae) feeding on the parasitic plant dodder (Cuscuta australis) activates defense responses in both the parasite and soybean host. New Phytologist. (2018) 218: 1586-1596

18. Wu, Jianqiang .miRNAs as a secret weapon in the battlefield of haustoria, the interface between parasites and host plants.Molecular Plant. (2018) 11, 354356

2017

19. Hettenhausen, C.#, Li, J. #, Zhuang, H., Sun, H., Xu, Y., Qi, J., Zhang, J., Lei, Y., Qin, Y., Sun, G., Wang, L., Baldwin, I.T., Wu, J.*.The stem parasitic plant Cuscuta australis (dodder) transfers herbivory-induced signals among plants. Proceedings of National Academy of Sciences of the USA. (2017) 114: E6703-E6709