Local induction of IAA5 and IAA29 promotes DNA damage-triggered stem cell death in Arabidopsis roots
Takahashi, N.; Ogita, N.; Koike, T.; Nishimura, K.; Inagaki, S.; Umeda, M.
Show abstract
Plants generate organs continuously during post-embryonic development, thus how to preserve stem cells in changing environments is crucial for their survival. Genotoxic stress threatens genome stability in all somatic cells, whereas, in the meristem, only stem cells undergo cell death in response to DNA damage, followed by stem cell replenishment. It was previously shown that inhibition of downward auxin flow in roots participates in DNA damage-induced stem cell death; however, how cell death is confined to stem cells in tissues with reduced auxin content remains elusive. Here we show that, in response to DNA double-strand breaks, the Aux/IAA family members IAA5 and IAA29, which encode the negative regulators of auxin signaling, were locally induced in vascular stem cells and their daughters in Arabidopsis roots. This is an active response to DNA damage in which the transcription factor SUPPRESSOR OF GAMMA RESPONSE 1 directly induces their expression. In the iaa5 iaa29 double mutant, DNA damage-induced stem cell death was significantly suppressed, while it was fully restored by the expression of a stable form of IAA5 in vascular stem cells. Our genetic data revealed that both the suppression of auxin signaling and reduced auxin content are prerequisite for cell death induction, suggesting the central role in maintaining genome integrity in stem cells. One-sentence summaryThe induction of IAA5 and IAA29 promotes stem cell death in Arabidopsis roots under DNA stress.
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Cell cycle dynamics and window of MUTE action during the terminal division of stomata and ramification of its loss-of-function on the cell cycle of an uncommitted precursor 94%
- Inducible expression of the restriction enzyme uncovered genome-wide distribution and dynamic behavior of histones H4K16ac and H2A.Z at DNA double-strand breaks in Arabidopsis 93%
- Mapping of the Classical Mutation rosette Highlights a Role for Calcium in Wound-induced Rooting 93%
Similar papers in this journal
- The multi-BRCT domain protein DDRM2 is required for homologous recombination in plants 95%
- Lysine 27 of histone H3.3 is a fine modulator of developmental gene expression and stands as an epigenetic checkpoint for lignin biosynthesis in Arabidopsis 94%
- Phosphorylation-Dependent Activation of the bHLH Transcription Factor ICE1/SCRM Promotes Polarization of the Arabidopsis Zygote 94%
Similar papers in this journal
- The Class VIII myosin ATM1 is required for root apical meristem function 95%
- HD-Zip II transcription factors control distal stem cell fate in Arabidopsis roots by linking auxin signaling to the FEZ/SOMBRERO pathway 95%
- Cytokinins control secondary cell wall formation in the inflorescence stem of Arabidopsis 94%
Similar papers in this journal
- Control of Arabidopsis shoot stem cell homeostasis by two antagonistic CLE peptide signalling pathways 94%
- Natural variation in salt-induced changes in root:shoot ratio reveals SR3G as a negative regulator of root suberization and salt resilience in Arabidopsis 93%
- Vernalization-triggered expression of the antisense transcript COOLAIR is mediated by CBF genes 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.