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Dr.QIAO Yongli

Date:2016-07-04Author:AdminSource:ICS

Mailing address:

Rm320, National Key Facility for Crop Gene

Resources and Genetic Improvement Build

Institute of Crop Sciences of CAAS                                    

No.12 Zhongguancun South St., Haidian District

Beijing, P.R. China, 100081

 

Phone:    010-82106693

Fax: 010-82105919

Email:      qiaoyongli@caas.cn

 

Research Department

Crop Germplasm Resource Protection and Research Center

 

Education Background

B. S.        Sep. 1996—Jul. 2000   Agronomy, Northwest A&F University, China

M. S.       Sep. 2000—Jul. 2003   Crop genetics & breeding, Northwest A&F University, China

Ph.D.       Mar. 2004—Feb. 2008  Crop science and biotechnology, Seoul National University, Korea

 

 

Professional Experience

Mar. 2008----May. 2010 Postdoctoral Researcher        Seoul National University, Korea

Jun. 2010----Feb. 2013   Postdoctoral Researcher        University of California at Riverside, USA

Mar. 2013----Sep. 2014  Assistant researcher       University of California at Riverside, USA

Oct. 2014----Present      Professor                          Institute of Crop Sciences of CAAS, China

 

Research Interests

My group research focuses on the molecular mechanisms underlying microbial pathogenesis. In particular, we are interested in elucidating the strategies employed by fungi and oomycete pathogens to facilitate the establishment and maintenance of symbiotic relationship with plant hosts. Our research aims to define the fungi and oomycete pathogens effectors required to cause plant disease and regulate specific physiological processes in host cells using reverse genetic, genomics and bioinformatics techniques. Recently we are mainly working on the role of small non-coding RNA and both plant and fungal endogenous RNA silencing machineries in host-microbe interactions by screening suppressor of RNA silencing in plant pathogenic oomycete effectors.

 

Selected Publications

Qiao Y, Shi J, Zhai Y, Hou Y, Ma W (2015) Phytophthora effector targets a novel component of small RNA pathway in plants to promote infection. PNAS 112 (18):5850-5855.

Qiao Y, Liu L, Xiong Q, Flores C, Wong J, Shi J, Wang X, Liu X, Xiang Q, Jiang S, Zhang F, Wang Y, Judelson HS, Chen X, Ma W (2013) Oomycete pathogens encode RNA silencing suppressors. Nature Genetics 45 (3):330-333.

Qiao Y, Jiang W, Lee J, Park B, Choi MS, Piao R, Woo MO, Roh JH, Han LZ, Paek NC, Seo HS, Koh HJ (2010) SPL28 encodes a clathrin-associated adaptor protein complex 1, medium subunit mu 1 (AP1M1) and is responsible for spotted leaf and early senescence in rice (Oryza sativa). New Phytologist 185 (1):258-274.

Qiao Y, Piao R, Shi J, Lee SI, Jiang W, Kim BK, Lee J, Han LZ, Ma WB, Koh HJ (2011) Fine mapping and candidate gene analysis of dense and erect panicle 3, DEP3, which confers high grain yield in rice (Oryza sativa L.). Theoretical and Applied Genetics 122 (7):1439-1449.

Qiao Y, Lee SI, Piao R, Jiang W, Ham TH, Chin JH, Piao Z, Han LZ, Kang SY, Koh HJ (2010) Fine mapping and candidate gene analysis of the floury endosperm gene, FLO(a), in rice. Molecules and Cells 29 (2):167-174.

Qiao Y, Jiang W, Rahman ML, Chu SH, Piao R, Han L, Koh HJ (2008) Comparison of molecular linkage maps and QTLs for morphological traits in two reciprocal backcross populations of rice. Molecules and Cells 25 (3):417-427

Xiong Q, Ye W, Choi D, Wong J, Qiao Y, Tao K, Wang Y, Ma W (2014) Phytophthora suppressor of RNA silencing 2 is a conserved RxLR effector that promotes infection in soybean and Arabidopsis thaliana. Molecular Plant-Microbe Interactions 27 (12):1379-1389.

Kong G, Zhao Y, Jing M, Huang J, Yang J, Xia Y, Kong L, Ye W, Xiong Q, Qiao Y, Dong S, Ma W, Wang Y (2015) The activation of Phytophthora effector Avr3b by plant cyclophilin is required for the nudix hydrolase activity of Avr3b. Plos Pathogens 11 (8). e1005139

Jing M, Guo B, Li H, Yang B, Wang H, Kong G, Zhao Y, Xu H, Wang Y, Ye W, Dong S, Qiao Y, Tyler BM, Ma W, Wang Y (2016) A Phytophthora sojae effector suppresses endoplasmic reticulum stress-mediated immunity by stabilizing plant binding immunoglobulin proteins. Nature Communications. 7:11685. doi: 10.1038/ncomms11685.

 

Full publication list can be viewed here:

https://scholar.google.com/citations?user=djT9_0AAAAAJ&hl=zh-CN

 

Honors and Scholarships

Award for outstanding poster in Korean Breeding Society (KBS), July 2009

Korea Science and Engineering Foundation, KOSEF, September 2004- 2007;

 

The National Science Foundation for Excellent Youth Foundation of China,2016-2018

Thousand Youth Talents Plan Project of Thousand Youth Talents,2016-2018

 

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