人物經歷
王良省,男,博士,教授,博士生導師,植物生理學與生物化學國家重點實驗室項目負責人(Principal Investigator)。2012年博士畢業於清華大學生命科學學院,2012 - 2016年在美國康奈爾大學博伊斯湯普遜研究所(Boyce Thompson Institute, Cornell University)從事植物單線態氧信號轉導機理研究,2016 - 2020年在德國的慕尼黑大學生物系(Department of Biology, University of Munich)從事植物表觀遺傳學研究。2020年以“傑出人才”引進中國農業大學,任生物學院教授。
學習工作
2001.09 - 2005.07,山東大學,生命科學學院,學士
2005.09 - 2008.07,清華大學,生命科學學院,碩士
2008.09 - 2012.07,清華大學,生命科學學院,博士
2012.09 - 2016.08,康奈爾大學,博伊斯湯普遜研究所,博士後
2016.09 - 2020.07,慕尼黑大學,生物系,博士後
2020.11 - 今,中國農業大學,生物學院,教授
研究方向
植物受到逆境影響時,葉綠體中活性氧的大量產生會損傷光合中心,降低光合作用,抑制植物生長甚至引起植株死亡。實驗室以擬南芥和玉米為研究對象,以葉綠體為突破口,探索植物光能高效利用效率的方式、方法,研究活性氧信號的產生、感知、傳遞過程,挖掘植物回響光破壞的關鍵基因,解析植物應對光氧化新途徑、新機制。
發表文章
= Co-first author, = Corresponding author.
1. Huan Zhao, Fan Zhang, Xinyue Wang, Kaiwei Liu, Lingling Zhang, Jingrui Li, Chanhong Kim* and Liangsheng Wang* (2025). The chloroplast translocon subunit TOC33 relays singlet oxygen-induced chloroplast-to-nucleus retrograde signaling in Arabidopsis. Molecular Plant.
2. Kaiwei Liu, Huan Zhao, Keun Pyo Lee, Qing Yu, Minghui Di, Liangsheng Wang*, Chanhong Kim* (2025). EXECUTER1 and Singlet Oxygen Signaling: A Reassessment of Nuclear Activity. The Plant Cell. 37(1):1–12 (koae296).
3. Atanasov V, Schumacher J, Muiño J, Larasati C, Wang L, Kaufmann K, Leister D, Kleine T* (2024). Arabidopsis BBX14 is involved in high light acclimation and seedling development. Plant Journal. 118(1):141-158.
4. Liu G, Zhang R, Sen Li, Ullah R, Yang F, Wang Z, Guo W, You M, Li B, Xie C, Wang L, Liu J, Ni Z, Sun Q & Liang R* (2023). TaMADS29 interacts with TaNF-YB1 to synergistically regulate early grain development in bread wheat. Science China Life Sciences.
5. Wang L, Xu D, Scharf K, Frank W, Leister D, Kleine T* (2021). The RNA-binding protein RBP45D of Arabidopsis promotes transgene silencing and flowering time. The Plant Journal. 109:1397-1415.
6. Wang L, Leister D, Kleine T* (2020). Chloroplast development and genomes uncoupled signaling are independent of the RdDM pathway. Scientific Reports. 10 (1): 15412.
7. Wang L*, Leister D, Guan L, Zheng Y, Schneider K, Lehmann M, Apel K, Kleine T (2020). The Arabidopsis SAFEGUARD1 suppresses singlet oxygen-induced stress responses by protecting grana margins. Proceedings of the National Academy of Sciences of the United States of America. 117 (12): 6918-6927.
8. Wang L*, Apel K (2019). Dose-dependent effects ofO2 in chloroplasts are determined by its timing and localization of production. Journal of Experimental Botany. 70:29-40.
9. Lee K, Lehmann M, Paul MV, Wang L, Luckner M, Wanner G, Geigenberger P, Leister D, Kleine T* (2019). Lack of FIBRILLIN6 in Arabidopsis thaliana affects light acclimation and sulfate metabolism. New Phytologist. 16246.
10. Sun L, Wang L, Zheng Z, Liu D* (2018). Identification and characterization of an Arabidopsis phosphate starvation-induced secreted acid phosphatase as a vegetative storage protein. Plant Science. 277: 278-284.
11. Wang L, Liu D* (2018). Functions and regulation of phosphate starvation-induced secreted acid phosphatases in higher plants. Plant Science. 271: 108-116.
12. Leister D, Wang L, Kleine T* (2017). Organellar gene expression and acclimation of plants to environmental stress. Frontiers in Plant Science. 8:387.
13. Wang L*, Liu D (2017). Analyses of root-secreted acid phosphatase activity in Arabidopsis. Bio-protocol. 7:7.
14. Wang D, Liu H, Zhai G, Wang L, Shao J, Tao Y* (2016). OspTAC2 encodes a pentatricopeptide repeat protein and regulates rice chloroplast development. Journal of Genetics and Genomics. 43: 601-608.
15. Wang L, Kim C, Xu X, Piskurewicz U, Dogra D, Singh S, Mahler H, Apel K* (2016).Singlet oxygen- and EXECUTER1-mediated signaling is initiated in grana margins and depends on the protease FtsH2. Proceedings of the National Academy of Sciences of the United States of America. 113: E3792-E3800.
16. Chen S, Kim C, Lee J, Lee H, Fei Z, Wang L, Apel K* (2015). Blocking the QB-binding site of photosystem II by tenuazonic acid, a non–host-specific toxin of Alternaria alternata, activates singlet oxygen-mediated and EXECUTER-dependent signaling in Arabidopsis. Plant, Cell & Environment. 38:1069–1080.
17. Wang L, Lu S, Zhang Y, Liu D* (2014). Comparative genetic analysis of Arabidopsis purple acid phosphatases AtPAP10, AtPAP12, and AtPAP26 provides new insights into their roles in plant adaptation to phosphate deprivation. Journal of Integrative Plant Biology. 56: 299-314.
18. Wang L, Dong J, Gao Z, Liu D* (2012). The Arabidopsis gene HYPERSENSITIVE TO PHOSPHATE STARVATION 3 encodes ETHYLENE OVERPRODUCTION 1. Plant & cell physiology.53(6): 1093–1105.
19. Wang L, Liu D* (2012). Arabidopsis purple acid phosphatase 10 is a component of plant adaptive mechanism to phosphate limitation. Plant signaling & behavior.7:3 1-5.
20. Wang L, Li Z, Qian W, Guo W, Gao X, Huang L, Wang H, Zhu H, Wu JW, Wang D, Liu D* (2011). The Arabidopsis purple acid phosphatase AtPAP10 is predominantly associated with the root surface and plays an important role in plant tolerance to phosphate limitation. Plant Physiology. 157: 1283-1299.
參編書籍
* = Corresponding author
1. Wang L*, Kleine T (2020). Singlet oxygen and protochlorophyllide detection in Arabidopsis thaliana. In Reactive Oxygen Species: Methods and Protocols, Methods in Molecular Biology. 2202: 63-69.
2. Wang L, Apel K* (2016) Chapter 39 Singlet Oxygen in Higher Plants. In Singlet Oxygen: Applications in Biosciences and Nanosciences, Vol 2. The Royal Society of Chemistry, pp 265-278.
雜誌專刊編寫
1. 2021-2022,應Int J Mol Sci雜誌邀請,組織編寫“Chloroplast and Stress Signaling”專刊。
申請專利
1. 2-氨基-3-吲哚基丁酸或3-甲基吡咯烷-2-羧酸作為植物免疫誘抗劑的套用,發明專利,2021年度,已授權,發明專利號:ZL202111511596.8,排序:3/5。
2. 2-氨基-3-羥基-3-甲基丁酸和/或2-氨基-3-(4-羥基苯基)丁酸的套用,發明專利,2021年度,已授權,發明專利號:ZL202111476337.6,排序:3/5。
3. 2-氨基-3-苯基丁酸或2,6-二氨基-3-甲基己酸作為植物免疫誘抗劑的套用,2021年度,已授權,發明專利號:ZL202111479142.7;排序:4/5。
4. 2-氨基-3-吲哚基丁酸在促進植物生長上的套用,發明專利,2022年度,申請號:202210150637.3,排序:3/5。
5. 3-甲基-2-甲氨基戊酸在促進植物生長上的套用,發明專利,2022年度,申請號:202210150971.9,排序:3/5。
6. 2-氨基-3-羥基-3-甲基丁酸在促進植物生長上的套用,發明專利,2022年度,申請號:202210150945.6,排序:3/5。
7. 2-氨基-3-苯基丁酸或其衍生物作為植物生長調節劑的套用,發明專利, 2022年度,申請號:202210150956.4,排序:3/5。
8. 1-甲基吡咯烷-2-羧酸在促進植物生長上的套用,發明專利,2022年度, 申請號:202210150957.9,排序:3/5。
9. 2-甲氨基-3-苯基丙酸或其衍生物在製備生長調節劑中的套用,發明專利,2022年度,申請號:202210165117.X,排序:3/5。