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2002年本科毕业于华中科技大学,2010年于中科院遗传发育所获博士学位留任助研,2013年升为副研,2014年6月至9月于美国Iowa State University访问, 2016年12月至今于中国农业科学院作物科学研究所任研究员,获国家优秀青年基金项目资助,入选中国农科院领军人才,科技部中青年科技创新领军人才,中国农学会青年科技奖。主要从事水稻重要农艺性状的分子遗传调控研究,以植物激素油菜素内酯和细胞分裂素为切入点,通过鉴定相关组分并构建其遗传调控网络,克隆了一系列高产性状基因,系统阐明了水稻重要产量性状受油菜素内酯调控的遗传与生化机制;揭示了高低浓度油菜素内酯对水稻株高的逆反调控机制,为作物生长的化学调控提供了参考;发现水稻籽粒大小和耐盐性受细胞分裂素转运协同调控的新机制,揭示了产量和抗性之间的平衡机制;探索利用油菜素内酯特异组分和优化细胞分裂素空间分布进行高产稳产分子设计的策略,并取得显著进展。以通讯或第一作者发表论文20余篇,包括Plant Cell (4篇)、Molecular Plant、Nature Plants、PNAS、Trends in Plant Science、Plant Physiology、Plant Journal等;参与发表Nature、Nature Communication、Plant Cell、Plant Journal等论文9篇;以第一发明人获得专利授权4项。
1. 主持人,国家自然科学基金面上项目,“DLT互作蛋白TLG1调控TLG2促进水稻粒重和耐盐性的机理研究”(31871587,起止时间:2019.1至2022.12),资助金额:60万元。
2. 主持人,国家自然科学基金优秀青年基金项目,“油菜素内酯调控水稻重要农艺性状的分子机制”(31722037,起止时间:2018.1-2020.12),资助金额:130万元。
3. 项目骨干,国家自然科学基金重大研究计划集成项目,“水稻籽粒大小调控的分子遗传网络解析”(91735302,起止时间:2018.1-2019.12),共450万元,骨干可支配金额:90万元。
4. 主持人,国家自然科学基金重大研究计划培育项目,“BG1控制水稻产量的分子机制”(起止时间:2015.1-2017.12),资助金额:100万元。
5. 主持人,自然科学基金面上项目,“DLT及其互作蛋白调控水稻油菜素内酯信号传导的机制”(起止时间:2012.1-2015.12),资助金额:55万元。
6. 主持人,国家重大科技专项转基因专项子课题任务,“高产性状关键基因克隆及功能验证”(起止时间:2011.1-2015.12),资助金额:年均~25万元,合计约125万元。
7. 主要参与人,国家自然科学基金重大研究计划重点项目,“油菜素内酯调控水稻籽粒大小的分子机制”(起止时间:2014.1-2016.12),资助金额:300万元。
8. 主持人,中科院青年创新与促进委员会人才专项(起止时间:2015.1-2018.12),资助金额:40万元。
第一/通讯(含共同)发表论文
1. LiuD#, Zhao H#, Xiao Y, Zhang G, Cao S, Yin W, Qian Y, Yin Y, Zhang J, Chen S, ChuC*, and Tong H* (2021). A Cryptic Inhibitor of Cytokinin Phosphorelay ControlsRice Grain Size. Mol. Plant. doi: 10.1016/j.molp.2021.09.010. (#first author,*corresponding author)
2. LiuD#, Yu Z#, Zhang G#, Yin W, Li L, Niu M, Meng W, Zhang X, Dong N, Liu J, YangY, Wang S*, Chu C*, and Tong H* (2021). Diversification of plant agronomictraits by genome editing of brassinosteroid signaling family genes in rice. Plant Physiol. doi:10.1093/plphys/kiab394
3. YinW#, Xiao Y, Niu M, Meng W, Li L, Zhang X, Liu D, Zhang G, Qian Y, Sun Z, HuangR, Wang S, Liu C, Chu C, and Tong H*(2020). ARGONAUTE2 Enhances Grain Length and Salt Tolerance by Activating BIG GRAIN3 to Modulate CytokininDistribution in Rice. Plant Cell32(7):2292-2306.
4. XiaoY#, Zhang J, Yu G, Lu X, Mei W, Deng H, Zhang G, Chen G, Chu C, Tong H*, and Tang W* (2020).Endoplasmic reticulum-localized PURINE PERMEASE1 regulates plant height andgrain weight by modulating cytokinin distribution in rice. Front. Plant Sci. 11:618560.
5. DongN#, Yin W, Liu D, Zhang X, Yu Z, Huang W, Liu J, Yang Y, Meng W, Niu M, and Tong H* (2020). Regulation ofbrassinosteroid signaling and salt resistance by SERK2 and potentialutilization for crop improvement in rice. Front. Plant Sci. 11:621859.
6. XiaoY#, Zhang G, # Liu D, Niu M, Tong H*,and Chu C* (2020). GSK2 stabilizes OFP3 to suppress brassinosteroid responsesin rice. Plant J.102(6):1187-1201.
7. YinW#, Dong N#, Niu M, Zhang X, Li L, Liu J, Liu B, Tong H* (2019) Brassinosteroid-regulated plant growth anddevelopment and gene expression in soybean. Crop J. 7:411-418.
8. XiaoY#, Liu D, Zhang G, Gao S, Liu L, Xu F, Che R, Wang Y, Tong H* and Chu C* (2019) BigGrain3, encoding a purine permease, regulates grain size via modulatingcytokinin transport in rice. J. Integr. Plant Biol. 61(5):581-597.
9. Tong H#and Chu C* (2018) Functional specificities of brassinosteroid and potentialutilization for crop improvement. Trends Plant Sci. 23(11):1016-1028.
10. XiaoY#, Liu D#, Zhang G, Tong H*, andChu C* (2018) Brassinosteroids regulate OFP1, a DLT interacting protein, tomodulate plant architecture and grain morphology in rice. Front. Plant Sci. 8:1698.
11. Tong H#and Chu C* (2017) Physiologicalanalysis of brassinosteroid responses and sensitivity in rice. MethodsMol. Biol. 1564, 23-29.
12. Tong H#,Chu C* (2016) Reply: Brassinosteroidregulates gibberellin synthesis to promote cell elongation in rice: Criticalcomments on Ross and Quittenden’s letter. Plant Cell 28(4): 833-835.
13. CheR#, Tong H#, Shi B, Liu Y, Fang S,Liu D, Xiao Y, Hu B, Liu L, Wang H, Zhao M*, Chu C* (2016) Controls of rice grain size and yield by GL2-mediatedbrassinosteroid responses. Nat Plants 2: 15195.
14. LiuL#, Tong H#, Xiao Y, Che R, Xu F, HuB, Liang C, Chu J, Li J*, Chu C* (2015)Activation of Big Grain1significantly improves grain size by regulating auxin transport in rice. Proc.Natl. Acad. Sci. USA 112(35): 11102-11107.
15. Tong H#,Xiao Y#, Liu D, Gao S, Liu L, Yin Y, Jin Y, Qian Q, Chu C* (2014) Brassinosteroid regulates cellelongation by modulating gibberellin metabolism in rice. Plant Cell. 26(1):4376-4393.
16. Tong H#,Liu L, Jin Y, Du L, Yin Y, Qian Q, Zhu L, Chu C* (2012) DWARF AND LOW-TILLERING acts as a direct downstream target ofa GSK3/SHAGGY-like kinase to mediate brassinosteroid responses in rice. PlantCell 24(6): 2562–2577.
17. Tong H#and Chu C* (2012) Brassinosteroidsignaling and application in rice, J. Genet. Genomics 39(1):3-9.
18. JinY#, Luo Q#, Tong H#, Wang A, ChengZ, Tang J, Li D, Zhao X, Li X, Wan J, Jiao Y, Chu C, Zhu L* (2011) An AT-hook gene is required forpalea formation and floral organ number control in rice, Dev. Biol. 359(2):277-288.
19. Tong H#and Chu C*. (2009) Roles of DLT infine modulation on brassinosteroid response in rice, Plant Signal. & Behav.4(5): 438-439.
20. Tong H#,Jin Y#, Liu W, Li F, Fang J, Yin Y, Qian Q, Zhu L, Chu C* (2009) DWARF AND LOW-TILLERING, a new member of GRAS family, playspositive roles in brassinosteroid signaling in rice. Plant J. 58(5):803-816.
参与发表论文
21. Liu Y#, Wang H#, Jiang Z, Wang W, Xu R,Wang Q, Zhang Z, Li A, Liang Y, Ou S, Liu X, Cao S, Tong H, Wang Y, Zhou F, Liao H, Hu B*, Chu C* (2021). Genomic basisof geographical adaptation to soil nitrogen in rice, Nature, 590:600-605.(#first author, *corresponding author)
22. He Y#, Hong G#, Zhang H, Tan X, Li L,Kong Y, Sang T, Xie K, Wei J, Li J, Yan F, Wang P, Tong H, Chu C, Chen J*, Sun Z* (2020). The OsGSK2 kinase integratesbrassinosteroid and jasmonic acid signaling by interacting with OsJAZ4, PlantCell, 32: 2806-2822
23. DuL#, Xu F#, Fang J#, Gao S, Tang J, Fang S, Wang H, Tong H, Zhang F, Chu J, Wang G, Chu C* (2018) Endosperm sugaraccumulation caused by mutation of PHS8/ISA1 leads to pre-harvest sprouting inrice. Plant J.95(3):545-556.
24. Tian X, Li X, Zhou W, Ren Y, Wang Z, LiuZ, Tang J, Tong H, Fang J, and Bu Q*(2017). Transcription factor OsWRKY53 positively regulates brassinosteroidsignaling and plant architecture. Plant Physiol. 175 (3) 1337-1349.
25. YeH#, Liu S, Tang B, Chen J, Xie Z, Nolan T, Jiang H, Guo H, Lin H, Li L, Wang Y,Tong H, Zhang M, Chu C, Li Z, AluruM, Aluru S, Schnable P, and Yin Y* (2017)RD26 mediates crosstalk between drought and brassinosteriod signaling pathways.Nat.Commun. 8: 14573.
26. ChenJ#, Nolan T, Ye H, Zhang M, Tong H,Xin P, Chu J, hu C, Li Z, and Yin Y*. (2017) Arabidopsis WRKY46, WRKY54, andWRKY70 transcription factors are involved in brassinosteroid-regulated plantgrowth and drought responses, Plant Cell 29: 1425–1439.
27. GaoT#, Wu Y, Zhang Y, Liu L, Ning Y, Wang D, TongH, Chen S, Chu C, Xie Q* (2011)OsSDIR1 overexpression greatly improves drought tolerance in transgenic rice. PlantMol. Biol. 76(1): 996-1007.
28. ChaiC#, Fang J#, Liu Y, Tong H, Gong Y,Wang Y, Liu M, Wang Y, Qian Q, Cheng Z, Chu C* (2011) ZEBRA2, encoding a carotenoid isomerase, is involved inphotoprotection in rice. Plant Mol. Biol. 75(3): 211-221.
29. LiF#, Liu W, Tang J, Chen J, Tong H,Hu B, Li C, Fang J, Chen M, and Chu C* (2010)Rice DENSE AND ERECT PANICLE 2 is essential for determining panicle outgrowthand elongation, Cell Res. 20(7): 838-849.
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