International Journal of Molecular Sciences (Feb 2024)

Identification of bZIP Transcription Factors That Regulate the Development of Leaf Epidermal Cells in <i>Arabidopsis thaliana</i> by Single-Cell RNA Sequencing

  • Rui Wu,
  • Zhixin Liu,
  • Susu Sun,
  • Aizhi Qin,
  • Hao Liu,
  • Yaping Zhou,
  • Weiqiang Li,
  • Yumeng Liu,
  • Mengke Hu,
  • Jincheng Yang,
  • Jean-David Rochaix,
  • Guoyong An,
  • Luis Herrera-Estrella,
  • Lam-Son Phan Tran,
  • Xuwu Sun

DOI
https://doi.org/10.3390/ijms25052553
Journal volume & issue
Vol. 25, no. 5
p. 2553

Abstract

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Epidermal cells are the main avenue for signal and material exchange between plants and the environment. Leaf epidermal cells primarily include pavement cells, guard cells, and trichome cells. The development and distribution of different epidermal cells are tightly regulated by a complex transcriptional regulatory network mediated by phytohormones, including jasmonic acid, and transcription factors. How the fate of leaf epidermal cells is determined, however, is still largely unknown due to the diversity of cell types and the complexity of their regulation. Here, we characterized the transcriptional profiles of epidermal cells in 3-day-old true leaves of Arabidopsis thaliana using single-cell RNA sequencing. We identified two genes encoding BASIC LEUCINE-ZIPPER (bZIP) transcription factors, namely bZIP25 and bZIP53, which are highly expressed in pavement cells and early-stage meristemoid cells. Densities of pavement cells and trichome cells were found to increase and decrease, respectively, in bzip25 and bzip53 mutants, compared with wild-type plants. This trend was more pronounced in the presence of jasmonic acid, suggesting that these transcription factors regulate the development of trichome cells and pavement cells in response to jasmonic acid.

Keywords