博士生导师
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胡玉欣
胡玉欣     研究员

1984年,河南师范大学获学士学位;

1987年,山西农业大学获硕士学位;

1988-1997年,河南大学生命科学学院讲师、副教授 ;

2000年,中国科学院遗传研究所获博士学位;

2001-2005年,新加坡国立大学Institute of Molecular Agrobiology和Temasek Life Scienceslaboratory做Research Fellow;

2005-至今,中国科学院植物研究所植物干细胞与器官发生研究组组长;

2006年起任国家植物基因研究中心(北京)项目科学家,2007-2017年任国家重大科学研究计划植物干细胞项目首席科学家。

联系方式:010-62836650 E-mail:huyuxin@ibcas.ac.cn
  • 研究方向
研究论文
Xu CY, Chang PJ, Guo SQ, Yang XN, Liu XC, Sui BF, Yu DX, Xin W, Hu YX*. 2023. Transcriptional activation by WRKY23 and derepression by removal of bHLH041 coordinately establish callus pluripotency in Arabidopsis regeneration. Plant Cell, https://academic.oup.com/plcell/advance-article/doi/10.1093/plcell/koad255/7296039?searchresult=1

Zhang SQ, Yu RX, Yu DX, Chang PJ, Guo SQ, Yang XN, Liu XC, Xu CY*, Hu YX*. 2022. The calcium signaling module CaM–IQM destabilizes IAA–ARFinteraction to regulate callus and lateral root formation. Proc. Natl. Acad. Sci. USA, 119(27): 2202669119

Xu EJ, Chai L, Zhang SQ, Yu RX, Zhang XX, Xu CY, Hu YX*. 2021. Catabolism of strigolactones by a carboxylesterase. Nature Plants, 7: 1495-1504

Xu CY, Hu YX*. 2020. The molecular regulation of cell pluripotency in plants. aBIOTCH, 1: 169-177

Liu C, Cui DY, Zhao JB, Liu N, Wang B, Liu J, Xu EJ, Hu ZB, Ren DT, Tang DZ, Hu YX*. 2019. Two Arabidopsis receptor-like cytoplasmic kinases SZE1 and SZE2 associate with the ZAR1-ZED1 complex and are required for effector-triggered immunity. Molecular Plant, 12: 967-983 

Wang ZC#, Cui DY#, Liu C, Zhao JB, Liu J, Liu N, Tang DZ,  Hu YX*. 2019. TCP transcription factors interact with ZED1-related kinases as components of the temperature-regulated immunity. Plant, Cell & Environment, 42: 2045-2056

Xu CY, Cao HF,  Zhang QQ, Wang HZ, Xin W, Xu EJ, Zhang SQ, Ruixue Yu RX,  Yu DX,  Hu YX*. 2018. Control of auxin-induced callus formation by bZIP59–LBD complex in Arabidopsis regeneration. Nature Plants, 4: 108-115

Xin W, Wang ZC, Liang Y, Wang YH, Hu YX*. 2017. Dynamic expression reveals a two-step patterning of WUS and CLV3 during axillary shoot meristem formation in Arabidopsis. Journal of Plant Physiology, 217: 1-6

Wang ZC#, Cui DY#, Liu J, Zhao JB, Liu C, Xin W, Li Y, Liu N, Ren DT, Tang DZ, Hu YX*. 2017. Arabidopsis ZED1-related kinases mediate the temperaturesensitive intersection of immune response and growth homeostas. New Phytologist, 255: 7211-7245

Shang BS#, Xu CY#, Zhang XX, Cao HF, Xin W, Hu YX*. 2016. Very-long-chain fatty acids restrict regeneration capacity by confining pericycle competence for callus formation in Arabidopsis. Proc. Natl. Acad. Sci.USA, 113: 5101-5106

Qin ZX, Zhang XR, Zhang X, Xin W, Li J, Hu YX*. 2014. The Arabidopsis transcription factor IIB-related protein BRP4 is involved in the regulation of mitotic cell-cycle progression during male gametogenesis. Journal of Experimental Botany, 65: 2521-2531

Cui DY, Zhao JB, Jing YJ, Fan MZ, Liu J, Wang ZC, Xin W, Hu YX*. 2013. The Arabidopsis IDD14, IDD15, and IDD16 cooperatively regulate lateral organ morphogenesis and gravitropism by promoting auxin biosynthesis and transport. PLoS Genetics, 9: e1003759

Fan MZ#, Xu CY#, Xu K, Hu YX*. 2012. LATERAL ORGAN BOUNDARIES DOMAIN transcription factors direct callus formation in Arabidopsisregeneration. Cell Research, 22: 1169-1180

Feng GP, Qin ZX, Yan J, Zhang X, Hu YX*. 2011. Arabidopsis ORGAN SIZE RELATED1 regulates organ growth and final organ size in orchestration with ARGOS and ARL. New Phytologist, 191: 635-646

Liu CM*, Hu YX*. 2010. Plant stem cells and their regulations in shoot apical meristem. Frontier Biology, 5: 417–423

Hu ZB, Zhang X, Qin ZX, Hu YX*. 2010. Arabidopsis SMO2 regulates seed germination and ABA response. Plant Signaling & Behavior, 5: 325-327

Hu ZB, Qin ZX, Wang M, Xu CY, Feng GP, Liu J, Meng Z, Hu YX*. 2010. The Arabidopsis SMO2, a homologue of yeast TRM112, modulates progression of cell division during organ growth. Plant Journal, 61: 600-610

Jing YJ, Cui DY, Bao F, Hu ZB, Qin ZX, Hu YX*. 2009. Tryptophan deficiency affects organ growth by retarding cell expansion in Arabidopsis. Plant Journal, 57: 511-521

Catala F, Ouyang J, Abreu IA, Hu YX, Seo H, Zhang X, Chua NH*. 2007. The Arabidopsis E3 SUMO ligase SIZ1 regulates plant growth and drought responses. Plant Cell, 19: 2952-2966 

Ge C, Cui X, Wang Y, Hu YX, Fu Z, Zhang D, Cheng Z, Li JY*. 2006. BUD2, encoding an S-adenosylmethionine decarboxylase, is required for Arabidopsis growth and development. Cell Research, 16: 446-456

Hu YX, Poh HM, Chua NH*. 2006. The Arabidopsis ARGOS-LIKE gene regulates cell expansion during organ growth. Plant Journal, 47: 1-9

Hu YX, Wang Y, Liu X, Li JY*. 2004. Arabidopsis RAV1 is down-regulated by brassinosteroid and may act as a negative regulator during plant development. Cell Research, 14: 8-15

Hu YX, Xie Q, Chua NH*. 2003. The Arabidopsis auxin-inducible gene ARGOS controls lateral organ size. Plant Cell, 15: 1951-1961 

Bao F, Hu YX, Li JY*. 2002. Identification of auxin responsive genes in Arabidopsis by cDNA array. Chinese Science Bulletin, 47: 548-552 

Mou Z., Wang X, Fu Z, Dai Y, Han C, Ouyang J, Bao F, Hu YX, Li JY*. 2002. Silencing of Phosphoethanolamine N-methyltransferase results in temperature-sensitive male sterility and salt hypersensitivity in Arabidopsis. Plant Cell, 14: 2031-2043

Hu YX, Wang Z, WangY, Li JY*. 2001. Identification of brassinosteroid responsive genes in Arabidopsis by cDNA array. Science China, 44: 637-643

Hu YX, Bao F, Li JY*. 2000. Promotive effect of brassinosteroids on cell division involves a distinct CycD3-induction pathway in Arabidopsis. Plant Journal, 24: 693-701
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