TRICHOMELESS1 regulates trichome patterning by suppressing GLABRA1 in Arabidopsis

Shucai Wang, Su Hwan Kwak, Qingning Zeng, Brian E. Ellis, Xiao Ya Chen, John Schiefelbein, Jin Gui Chen

Research output: Contribution to journalArticlepeer-review

163 Scopus citations

Abstract

The patterning of epidermal cell types in Arabidopsis is a simple and useful model for studying the molecular basis of cell specification in plants. The distribution of different cell types in the Arabidopsis epidermis is regulated by a lateral inhibition mechanism that relies on interactions between transcription factors. However, it is unclear how temporal- or organ-specific differences in epidermal patterning are achieved. Here we identify TRICHOMELESS1 (TCL1) as a new and major single-repeat MYB-type transcription factor that negatively regulates trichome formation in the inflorescence epidermis. A dominant mutant with elevated expression of TCL1 has a glabrous (trichomeless) phenotype, whereas a loss-of-function mutation in TCL1 uniquely confers ectopic trichome formation on inflorescence stem and pedicels. Genetic analyses demonstrate that TCL1 and CAPRICE work synergistically to regulate trichome patterning on these organs. Interestingly, overexpression of TCL1 specifically suppresses the expression of GLABRA1 (GL1), a crucial component in the trichome initiation complex, whereas loss-of-function of TCL1 enhances GL1 expression. Chromatin immunoprecipitation results show that TCL1 can be recruited to the cis-acting regulatory elements of GL1. These results provide the first molecular and genetic evidence that an R3 MYB may negatively regulate trichome cell specification in a novel manner by directly suppressing the transcription of GL1.

Original languageEnglish
Pages (from-to)3873-3882
Number of pages10
JournalDevelopment (Cambridge)
Volume134
Issue number21
DOIs
StatePublished - Nov 2007
Externally publishedYes

Keywords

  • Lateral inhibition
  • MYB
  • Pattern formation
  • TRICHOMELESS1
  • Trichome

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