Skip to main navigation Skip to search Skip to main content

Interplay between ABA and GA Modulates the Timing of Asymmetric Cell Divisions in the Arabidopsis Root Ground Tissue

  • Shin Ae A. Lee
  • , Sejeong Jang
  • , Eun Kyung K. Yoon
  • , Jung Ok Heo
  • , Kwang Suk S. Chang
  • , Ji Won W. Choi
  • , Souvik Dhar
  • , Gyuree Kim
  • , Jeong Eun Choe
  • , Jae Bok B. Heo
  • , Chian Kwon
  • , Jae Heung Ko
  • , Yong Sic Hwang
  • , Jun Lim

Research output: Contribution to journalArticlepeer-review

57 Citations (Scopus)

Abstract

In multicellular organisms, controlling the timing and extent of asymmetric cell divisions (ACDs) is crucial for correct patterning. During post-embryonic root development in Arabidopsis thaliana, ground tissue (GT) maturation involves an additional ACD of the endodermis, which generates two different tissues: the endodermis (inner) and the middle cortex (outer). It has been reported that the abscisic acid (ABA) and gibberellin (GA) pathways are involved in middle cortex (MC) formation. However, the molecular mechanisms underlying the interaction between ABA and GA during GT maturation remain largely unknown. Through transcriptome analyses, we identified a previously uncharacterized C2H2-type zinc finger gene, whose expression is regulated by GA and ABA, thus named GAZ (GA- AND ABA-RESPONSIVE ZINC FINGER). Seedlings ectopically overexpressing GAZ (GAZ-OX) were sensitive to ABA and GA during MC formation, whereas GAZ-SRDX and RNAi seedlings displayed opposite phenotypes. In addition, our results indicated that GAZ was involved in the transcriptional regulation of ABA and GA homeostasis. In agreement with previous studies that ABA and GA coordinate to control the timing of MC formation, we also confirmed the unique interplay between ABA and GA and identified factors and regulatory networks bridging the two hormone pathways during GT maturation of the Arabidopsis root.

Original languageEnglish
Pages (from-to)870-884
Number of pages15
JournalMolecular Plant
Volume9
Issue number6
DOIs
Publication statusPublished - 2016

Bibliographical note

Publisher Copyright:
© 2016 The Author

Keywords

  • ABA
  • GA
  • GRAS
  • ground tissue
  • root development
  • transcription factor

Fingerprint

Dive into the research topics of 'Interplay between ABA and GA Modulates the Timing of Asymmetric Cell Divisions in the Arabidopsis Root Ground Tissue'. Together they form a unique fingerprint.

Cite this