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学术报告-Environmental and Genetic Regulation of Plant Immunity: mechanisms revealed from autoimmune mutants
发表时间:2012-08-11 阅读次数:1262次

报 告 人: Dr. Jian Hua

Associate Professor, Department of Plant Biology

Director of Graduate Study, Graduate Field of Plant Biology

Cornell University, Ithaca, NY 14853

Tel: (607) 255-5554 Fax: (607) 255-5407

 

报告题目: Environmental and Genetic Regulation of Plant Immunity: mechanisms revealed from autoimmune mutants

报告时间: 2012年8月11日(星期六)上午09:00时

报告地点: 上海交通大学生命学院800号会议室

联系人:张大兵 教授

 

报告人背景介绍:

Education

Fudan University Biology B.A./B.S. 1989

Shanghai Institute of Plant Physiology Plant Molecular Biology M.S. 1992

California Institute of Technology Genetics Ph.D. 1998

Whitehead Institute, MIT Genetics Postdoc 1998-2001

 

Professional Appointments

2008-present Associate Professor, Department of Plant Biology, Cornell University, Ithaca, NY

2001-2008 Assistant Professor, Department of Plant Biology, Cornell University, Ithaca, NY

1998-2001 Postdoctoral Fellow, Whitehead Institute, MIT, Cambridge, MA

 

Publications

Zhu Y, Mang HG, Sun Q, Hipps A, and Hua J (2012) Gene discovery using mutagen-induced polymorphisms and deep sequencing: application to plant disease resistance. Genetics, in press

Mang HG, Qian W, Zhu Y, Qian J, Kang H, Klessig DF, and Hua J (2012) ABA deficiency antagonizes high temperature inhibition of disease resistance through enhancing nuclear accumulation of R proteins SNC1 and RPS4. Plant Cell, tpc.112.096198.

Guo M, Shi Z, Zhu Y, Bao Z, Wang G, and Hua J. (2012) The F-box protein CPR1/CPR30 negatively regulates R protein SNC1 accumulation. Plant J 69, 411-420

Zhu Y, Yang H, Mang HG, and Hua J (2011) Induction of BAP1 by a moderate decrease in temperature is mediated by ICE1 in Arabidopsis. Plant Physiol, 155, 580-588.

Zhu Y, Qian W, and Hua J (2010) Temperature modulates plant defense responses through NB-LRR proteins. PLoS Pathog, 6: e1000844.

Li Y, Gou M, Sun Q, and Hua J (2010) Requirement of calcium binding, myristoylation, and protein-protein interaction for the copine BON1 function in Arabidopsis. J Biol Chem, 285, 29884-29891.

Wang Y, Bao Z, Zhu Y, and Hua J (2009) Analysis of temperature modulation of plant defense against biotrophic microbes. MPMI, 22: 498-506.

Wang Y and Hua J (2009) A moderate decrease in temperature induces COR15a expression through the CBF signaling cascade and enhances freezing tolerance. Plant J, 60: 340-349.

Li Y, Pennington BO, and Hua J (2009) Multiple R-like genes are negatively regulated by BON1 and BON3 in Arabidopsis. MPMI, 22: 840-848.

Yang S, Yang H, Grisafi P, Sanchatjate S, Fink GR, Sun Q, and Hua J (2006). The BON/CPN gene family represses cell death and promotes cell growth in Arabidopsis. Plant J, 45: 166-179.

Yang H, Yang S, Li Y, and Hua J (2007) The Arabidopsis BAP1 and BAP2 genes are general inhibitors of programmed cell death. Plant Physiol, 145: 135-146.

Yang H, Li Y, and Hua J (2006) The small C2 protein BAP1 negatively regulates cell death and defense response in Arabidopsis. Plant J, 45: 166-179.

Yang S and Hua J (2004) A haplotype-specific resistance gene regulated by BON1 mediates temperature-dependent growth control. Plant Cell, 16: 1060-1071.

Hua J, Grisaffi P, Cheng, SH, Fink GR. (2001) Plant growth homeostasis is controlled by the Arabidopsis BON1 and BAP1 genes. Genes Dev 15:2263-2272.

Hua J, Meyerowitz EM. (1998) Ethylene responses are negatively regulated by a receptor gene family. Cell 94:261-271.

Hua J, Sakai H, Chen QG, Nourizadeh S, Bleecker AB, Ecker JR, Meyerowitz EM. (1998) EIN4 and ERS2 are two members of the putative ethylene receptor gene family. Plant Cell 10:1321-1332.

Sakai H, Hua J, Chen QG, Chang C, Mderano L, Bleecker AB, Meyerowitz EM. (1998) ETR2 is an ETR1-like gene involved in ethylene signaling in Arabidopsis. PNAS 95:5812-5817.

Hua J, Sakai H, Meyerowitz EM. (1997) The ethylene receptor gene family in Arabidopsis. in Biology and Biotechnology of the Plant Hormone Ethylene, 71-76. Kluwer Academic Publishers.

Hua J, Chang C, Sun Q, Meyerowitz EM. (1995) Ethylene insensitivity conferred by Arabidopsis ERS gene. Science 269:1712-1714.

 

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