Lateral organ diversification in plants mediated by the ALOG protein family of transcription factors
Naramoto, S.; Jones, V. A. S.; Trozzi, N.; Sato, M.; Toyooka, K.; Shimamura, M.; Ishida, S.; Nishitani, K.; Ishizaki, K.; Nishihama, R.; Kohchi, T.; Dolan, L.; Kyozuka, J.
Show abstract
Land plant shoot structures evolved a diversity of lateral organs as morphological adaptations to the terrestrial environment, in which lateral organs independently evolved in each lineage in the sporophyte or gametophyte generation. The gametophyte meristem of the basally-diverging plant Marchantia polymorpha produces axes with non-photosynthetic scale-like lateral organs instead of leaves. Here we report that an ALOG (Arabidopsis LSH1 and Oryza G1) family protein in Marchantia, MpTAWAWA1 (MpTAW1), regulates meristem maintenance and lateral organ development. A mutation in MpTAW1, preferentially expressed in lateral organs, induces lateral organs with mis-specified identity and increased cell number, and furthermore, causes defects in apical meristem maintenance. Remarkably, MpTAW1 expression rescued the elongated-spikelet phenotype of a rice mutant of MpTAW1 homologue. This suggests that ALOG genes are co-opted to specify lateral organ identities in both gametophyte and sporophyte shoots by repressing lateral organ growth. We propose that the recruitment of ALOG-mediated lateral organ modification was in part responsible for the convergent evolution of independently-evolved lateral organs among highly divergent plant lineages and contributed to the morphological diversification of land plants.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- High-order mutants reveal an essential requirement for peroxidases but not laccases in Casparian strip lignification 96%
- SAGA1 and SAGA2 promote starch formation around proto-pyrenoids in Arabidopsis chloroplasts 96%
- Suberin plasticity to developmental and exogenous cues is regulated by a set of MYB transcription factors 96%
Similar papers in this journal
- Establishing Physalis as a new Solanaceae model system enables genetic reevaluation of the inflated calyx syndrome 96%
- Evolutionary variation in MADS-box dimerization affects floral development and protein degradation dynamics in maize 95%
- Major components in the KARRIKIN INSENSITIVE2-ligand signaling pathway are conserved in the liverwort, Marchantia polymorpha 95%
Similar papers in this journal
Similar papers in this journal
- Comparative mutant analyses reveal a novel mechanism of ARF regulation in land plants 96%
- Rapid local and systemic jasmonate signalling drives initiation and establishment of plant systemic immunity 94%
- Armadillo repeat-containing kinesin represents the versatile plus-end-directed transporter in Physcomitrella 94%
Similar papers in this journal
- A conserved gene regulatory network controls root epidermal cell patterning in superrosid species 96%
- The microRNA476a/RFL module regulates adventitious root formation through a mitochondria-dependent pathway in Populus 94%
- Processes essential for Physcomitrium patens protonemal development require distinct levels of total activity provided by functionally redundant PpROP GTPases 94%
"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.