Upload Avatar (500 x 500)
Zhao Yu
zhaoyu@mail.hzau.edu.cn
Chinese, English
Hubei
Huazhong Agricultural University
Life Sciences
  • 2004.9-2009.6 PhD: Huazhong Agricultural University
  • 1997.9-2000.7 Master's: Northwest A&F University
  • Education Ministry Course Ideological and Political Demonstration Teaching Master
  • Education Ministry First-Class Undergraduate Course Review Expert
  • 2016.01-present - Huazhong Agricultural University - Professor
  • 2000.7-present - Huazhong Agricultural University - Assistant, Lecturer, Associate Professor
  • Not mentioned - Université Paris-Sud - Senior Visiting Scholar
  • Second Prize in National and Hubei Province Teaching Achievements
  • Second and Special Prize in National and Hubei Province University Teacher Teaching Innovation Competition
  • Special Prize in the Second 'Smart Tree Cup' Course Ideological and Political Demonstration Case Teaching Competition
  • Outstanding Ideological and Political Case in the Agricultural and Forestry Higher Education Course Ideological and Political Alliance Seminar
  • First Prize in Teaching Quality at Huazhong Agricultural University
  • Seventh 'Top Ten Young Post Talents' and Outstanding Female Worker at Huazhong Agricultural University
  • Outstanding Teaching Internship and University Student Science and Technology Innovation Excellent Guidance Teacher
Rice Developmental Biology and Epigenetics
  • Transcription factors WOX11 and LBD16 function with histone demethylase JMJ706 to control crown root development in rice., Geng L, Tan M, Deng Q, Wang Y, Zhang T, Hu X, Ye M, Lian X, Zhou DX and Zhao Y*, 2024
  • Paternal DNA methylation is remodeled to maternal levels in rice zygote., Liu Q, Ma X, Li X, Zhang X, Zhou S, Xiong L, Zhao Y*, Zhou DX, 2023
  • Dynamic DNA methylation modification in peanut seed development., Li Z, Liu Q, Zhao K, Cao D, Cao Z, Zhao K, Ma Q, Zhai G, Hu S, Li Z, Wang K, Gong F, Ma X, Zhang X, Ren R, Qiu D, Zhao Y*, Yin D*, 2023
  • DELLA-mediated gene repression is maintained by chromatin modification in rice., Li J, Li Q, Wang W, Zhang X, Chu C, Tang X, Zhu B, Xiong L, Zhao Y*, Zhou DX*, 2023
  • The F-box protein SHORT PRIMARY ROOT modulates primary root meristem activity by targeting SEUSS-LIKE protein for degradation in rice., Ma N, Li N, Yu Z, Chen C, Zhou DX, Zhao Y*, 2023
  • Transcription factor WOX11 regulates protein translation via ribosome protein acetylation in rice roots., Xu Q, Wang Y, Yue Y, Chen Z, Zhou DX, Zhao Y*, 2023
  • WUS-RELATED HOMEOBOX 14 boosts de novo plant shoot regeneration., Wang J, Tan M, Wang X, Jia L, Wang M, Huang A, You L, Li C, Zhang Y, Zhao Y*, Wang G, 2023
  • ROS-stimulated protein lysine acetylation is required for crown root development in rice., Xu Q, Wang Y, Chen Z, Yue Y, Huang H, Wu B, Liu Y, Zhou DX, Zhao Y*, 2023
  • A coiled-coil protein associates Polycomb Repressive Complex 2 with KNOX/BELL transcription factors to maintain silencing of cell differentiation-promoting genes in the shoot apex., Tan FQ #, Wang W#, Li J, Lu Yue, Zhu B, Hu F , Li Q, Zhao Y*, and Zhou DX*, 2022
  • WOX11 and CRL1 act synergistically to promote crown root development by maintaining cytokinin homeostasis in rice., Geng L#, Li Q#, Jiao L, Xiang Y, Deng Q, Zhou DX and Zhao Y*, 2022
  • A Non-Canonical MITE in the WOX11 Promoter Is Associated with Robust Crown Root development in Rice., Zhang T, Xiang Y, Geng L, Jiang W, Cheng S, Zhao Y*, 2022
  • Understanding epigenomics based on the rice model., Lu Y, Zhou DX, Zhao Y*, 2020
  • MERISTEM ACTIVITYLESS (MAL) is involved in root development through the maintenance of meristem size in rice., Jiang W, Shaoli Zhou, Honglin Huang, Huazhi Song, Qinglu Zhang, Zhao Y*, 2020
  • New Insight into Comprehensive Analysis of INDETERMINATE DOMAIN (IDD) Gene Family in Rice., Zhang T, Tan M, Jiajia Li, Geng L, Xiang Y, Zhang B, Zhao Y*, 2020
  • uORFs: important cis-regulatory elements in plants., Zhang T, Wu A, Yue Y, Zhao Y*, 2020
  • Distribution pattern of histone marks potentially determines their roles in transcription and RNA processing in rice., Hu Y,* Lai Y, Chen X, Zhou DX, Zhao Y*, 2020
  • Mechanisms of ROS Regulation of Plant Development and Stress Responses., Huang H, Ullah F, Zhou DX, Yi M, Zhao Y*, 2019
  • WOX11 recruits a histone H3K27me3 demethylase to promote gene expression during shoot development in rice., Cheng S, Tan F, Lu Y, Liu X, Li T, Yuan W, Zhao Y*, Zhou DX*, 2018
  • Rice homeodomain protein WOX11 recruits a histone acetyltransferase complex to establish programs of cell proliferation of crown root meristem., Zhou S, Jiang W, Long F, Cheng S, Yang W, Zhao Y*, Zhou DX*, 2017
  • Transcriptional regulatory network of WOX11 involved in the control of crown root development, cytokinin signals, and redox in rice., Jiang W, Zhou S, Zhang Q, Song H, Zhou DX, Zhao Y*, 2017
  • WUSCHEL-related homeobox gene WOX11 increases rice drought resistance by controlling root hair formation and root system development., Cheng S, Zhou D-X, Zhao Y*, 2016
  • The interaction between rice ERF3 and WOX11 promotes crown root development by regulating gene expression involved in cytokinin signaling., Zhao Y*, Cheng S, Song Y, Huang Y, Zhou S, Liu X, Zhou D-X, 2015
  • SHOEBOX modulates root meristem size in rice through dose-dependent effects of gibberellins on cell elongation and proliferation., Li J, Zhao Y*, Chu H, Wang L, Fu Y, Liu P, Upadhyaya N, Chen C, Mou T, Feng Y, Kumar P, and Xu J*, 2015
  • The R2R3-type MYB gene OsMYB91 has a function in coordinating plant growth and salt stress tolerance in rice., Zhu N, Cheng S, Liu X, Du H, Dai M, Zhou D-X, Yang W, Zhao Y*, 2015
  • The rice WUSCHEL-related homeobox genes are involved in reproductive organ development, hormone signaling and abiotic stress response., Cheng S, Huang Y, Zhu N, Zhao Y*, 2014
  • Analysis of rice Snf2 family proteins and their potential roles in epigenetic regulation., Hu Y, Zhu N, Wang X, Yi Q, Zhu D, Lai Y, Zhao Y*, 2013
  • Epigenomic modification and epigenetic regulation in rice., Zhao Y,Zhou D-X*, 2012
  • The Wuschel-related homoeobox gene WOX11 is required to activate shoot-borne crown root development in rice., Zhao Y, Hu Y, Dai M, Huang L, Zhou D-X*, 2009
Rice Developmental Biology Epigenetics Crown Root Development Histone Modification Dna Methylation Gene Expression Transcription Factors Plant Physiology Genomics

Contact us

Let's talk!
* Required
* Required
* Required
* Invalid email address
By submitting this form, you agree that IoT ONE may contact you with insights and marketing messaging.
No thanks, I don't want to receive any marketing emails from IoT ONE.
Submit

Thank you for your message!
We will contact you soon.