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Yang Kezhen
Life Science
University of Chinese Academy of Sciences
Beijing
Language: Chinese, English
Contact
Plant Epidermal Development Regulation Biology Botany Research Mechanisms Control Processes
Areas of Focus
  • Plant Epidermal Development and Regulation
Work Experience
  • 2016-04~2017-12 - Rutgers, The State University of New Jersey - Visiting Scholar
  • 2009-07~Present - Institute of Botany, Chinese Academy of Sciences - Researcher
  • 2000-07~2004-08 - Southwest Agricultural University (now Southwest University) - Work
Academic Background & Achievements
  • 2004-09--2009-06 PhD: China Agricultural University
  • 1996-09--2000-06 Bachelor's Degree: Southwest Agricultural University (now Southwest University)
Publications
  • Arabidopsis ERdj3B coordinates with ERECTA-family receptor kinases to regulate ovule development and the heat stress response, Third Author, 2022
  • Connected function of PRAF/RLD and GNOM in membrane trafficking controls intrinsic cell polarity in plants, Third Author, 2022
  • Arabidopsis F-BOX STRESS INDUCED 4 is required to repress excessive divisions in stomatal development, Twelfth Author, Corresponding Author, 2022
  • The functional specificity of ERECTA-family receptors in Arabidopsis stomatal development is ensured by molecular chaperones in the endoplasmic reticulum, First Author, Corresponding Author, 2022
  • Cell polarity: Regulators and mechanisms in plants, First Author, Corresponding Author, 2020
  • A conserved but plant-specific CDK-mediated regulation of DNA replication protein A2 in the precise control of stomatal terminal division, First Author, 2019
  • A2-type cyclin is required for the asymmetric entry division in rice stomatal development, Fifth Author, 2018
  • Revisiting the phosphatidylethanolamine-binding protein (pebp) gene family reveals cryptic flowering locus t gene homologs in gymnosperms and sheds new light on functional evolution, Second Author, 2016
  • Organ-specific effects of brassinosteroids on stomatal production coordinate with the action of TOO MANY MOUTHS, Second Author, 2015
  • Phosphorylation of Serine 186 of bHLH Transcription Factor SPEECHLESS Promotes Stomatal Development in Arabidopsis, First Author, 2015
  • Organ-specific effects of brassinosteroids on stomatal production coordinate with the action of TOO MANY MOUTHS, Second Author, 2015
  • Transcriptional regulation of PIN genes by FOUR LIPS and MYB88 during Arabidopsis root gravitropism, Second Author, 2015
  • A new loss-of-function allele 28y reveals a role of ARGONAUTE1 in limiting asymmetric division of stomatal lineage ground cell, First Author, 2014
  • Auxin transport and activity regulate stomatal patterning and development., Third Author, 2014
  • Signaling to stomatal initiation and cell division, Third Author, 2014
  • Requirement of A-type cyclin-dependent kinase and cyclins for the terminal division in the stomatal lineage of Arabidopsis., Sixth Author, 2014
  • Requirement for A-type cyclin-dependent kinase and cyclins for the terminal division in the stomatal lineage of Arabidopsis, First Author, 2014
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