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生命科学进展(2021)第四讲:植物离子组学

发布时间:2021-10-11  阅读次数:10083

授课人:晁代印, 中科院分子植物卓越创新中心,研究员 

时间:10月11日,星期一,18:00-20:20

地点:陈瑞球楼219

 

 

授课教师简介

2001-2007  中科院上海植物生理生态研究所,博士

2007-2011 美国普度大学,博士后

2011-2013  英国阿伯丁大学  博士后

2013.5-至今  中科院上海生科院植物生理生态研究所  研究员

“青年千人计划”、“优秀青年基金”获得者。

 

研究领域

晁代印研究员主要研究方向为植物离子组学和环境适应性,即结合遗传学等手段,研究植物在矿质元素吸收积累和对土壤环境适应能力等方面的分子机制,以期为提高农作物的水肥利用效率,改善粮食营养质量,以及环境污染治理等方面提供理论基础。晁代印研究员在Science, Nature系列, Genes & Development,PLoS Biology以及Plant Cell等国际著名发表学术论文38篇,目前被他引3000余次。

 

代表性论文

1. Gao, Y.Q., Bu, L.H., Han, M.L., Wang, Y.L., Li, Z.Y., Liu, H.T., and Chao, D.Y. (2021). Long-distance blue light signalling regulates phosphate deficiency-induced primary root growth inhibition. Mol Plant 14, 1539-1553.

2.  Yi-Qun Gao, Jiu-Geng Chen, Zi-Ru Chen, Dong An, Qiao-Yan Lv, Mei-Ling Han, Ya-Ling Wang, David E. Salt, Dai-Yin Chao. (2017) A new vesicle trafficking regulator CTL1 plays a crucial role in ion homeostasis. PLoS Biol 15(12): e2002978.

3. Dong An, Jiu-Geng Chen, Yi-Qun Gao, Xiang Li, Zhen-Fei Chao, Zi-Ru Chen, Qian-Qian Li, Mei-Ling Han, Ya-Ling Wang, Yong-Fei Wang, Dai-Yin Chao. (2017) AtHKT1 drives adaptation of Arabidopsis thaliana to salinity by reducing floral sodium content. PLoS Genet13(10): e1007086.

4. Chao DY#, Chen Y, Chen J, Shi S, Chen Z, Wang C, Danku JM, Zhao FJ#, Salt DE#. (2014) Genome-wide Association Mapping Identifies a New Arsenate Reductase Enzyme Critical for Limiting Arsenic Accumulation in Plants. PLoS Biol. 12(12): e1002009.(#Corresponding author, *co-corresponding author)

5. Chao DY, Dilkes B, Luo H, Douglas A, Yakubova E, Lahner B, Salt DE. (2013) Polyploids Exhibit Higher Potassium Uptake and Salinity Tolerance in Arabidopsis. Science.341:658-659.

6. Chao DY*, Gable K*, Baxter I, Chen M, Dietrich CR, Cahoon EB, Guerinot ML, Lahner B, Lu SY, Markham JE, Morrissey J, Han GS, Gupta S, Harmon J, Jaworski JG, Dunn TM, Salt DE. (2011) Spingolipids in the Root Play an Important Role in Regulating the Leaf Ionome in Arabidopsis thaliana . Plant Cell. 23:1061-1081. (*Equal contribution)

7. Huang XY*, Chao DY*, Gao JP, Zhu MZ, Shi M, Lin HX. (2009) A previously unknown zinc finger protein, DST, regulates drought and salt tolerance in rice via stomatal aperture control. Genes Dev. 23(15):1805-1817. (*Equal contribution)

8. Sun SY*, Chao DY*, Li XM, Shi M, Gao JP, Zhu MZ, Yang HQ, Luan S, Lin HX. (2009).OsHAL3 mediates a new pathway in the light-regulated growth of rice. Nat Cell Biol. 11(7):845-851. (*Equal contribution)

9. Chao DY, Luo YH, Shi M, Luo D, Lin HX. (2005) Salt-responsive genes in rice revealed by cDNA microarray analysis. Cell Res. 15(10):796-810.

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