Arabidopsis ATXR2 represses de novo shoot organogenesis in the transition from callus to shoot formation

  • Lee, Kyounghee
  • Park, Ok-Sun
  • Go, Ji Yun
  • Yu, Jihyeon
  • Han, Jun Hee
  • 외 4명
Citations

WEB OF SCIENCE

39
Citations

SCOPUS

39

초록

Plants exhibit high regenerative capacity, which is controlled by various genetic factors. Here, we report that ARABIDOPSIS TRITHORAX-RELATED 2 (ATXR2) controls de novo shoot organogenesis by regulating auxincytokinin interaction. The auxin-inducible ATXR2 Trithorax Group (TrxG) protein temporally interacts with the cytokinin-responsive type-B ARABIDOPSIS RESPONSE REGULATOR 1 (ARR1) at early stages of shoot regeneration. The ATXR2-ARR1 complex binds to and deposits the H3K36me3 mark in the promoters of a subset of type-A ARR genes, ARR5 and ARR7 , thus activating their expression. Consequently, the ATXR2/ ARR1-type-A ARR module transiently represses cytokinin signaling and thereby de novo shoot regeneration. The atxr2-1 mutant calli exhibit enhanced shoot regeneration with low expression of ARR5 and ARR7 , which ultimately upregulates WUSCHEL (WUS) expression. Thus, ATXR2 regulates cytokinin signaling and prevents premature WUS activation to ensure proper cell fate transition, and the auxin-cytokinin interaction underlies the initial specification of shoot meristem in callus.

키워드

Auxin-cytokinin interactioncallusde novo shoot organogenesishistone modificationplant regenerationREGENERATIONROOTCYTOKININBIOSYNTHESISPROTEINSIDENTIFICATIONACTIVATIONCOMPETENCEINDUCTIONEXPLANTS
제목
Arabidopsis ATXR2 represses de novo shoot organogenesis in the transition from callus to shoot formation
저자
Lee, KyoungheePark, Ok-SunGo, Ji YunYu, JihyeonHan, Jun HeeKim, JungmookBae, SangsuJung, Yu JinSeo, Pil Joon
DOI
10.1016/j.celrep.2021.109980
발행일
2021-11
유형
Article
저널명
Cell Reports
37
6
페이지
1 ~ 13+e4

파일 다운로드