A molecular framework for control of oriented cell division in the Arabidopsis embryo
Vaddepalli, P.; de Zeeuw, T.; Strauss, S.; Buerstenbinder, K.; Liao, C.-Y.; Smith, R.; Weijers, D.
Show abstract
Premitotic control of cell division orientation is critical for plant development, as cell walls prevent extensive cell remodelling or migration. Whilst many divisions are proliferative and add cells to existing tissues, some divisions are formative, and generate new tissue layers or growth axes. Such formative divisions are often asymmetric in nature, producing daughters with different fates. We have previously shown that in the Arabidopsis thaliana embryo, developmental asymmetry is correlated with geometric asymmetry, creating daughter cells of unequal volume. Such divisions are generated by division planes that deviate from a default "minimal surface area" rule. Inhibition of auxin response leads to reversal to this default, yet the mechanisms underlying division plane choice in the embryo have been unclear. Here we show that auxin-dependent division plane control involves alterations in cell geometry, but not in cell polarity or nuclear position. Through transcriptome profiling, we find that auxin regulates genes controlling cell wall and cytoskeleton properties. We confirm the involvement of microtubule (MT)-binding proteins in embryo division control. Topology of both MT and Actin cytoskeleton depend on auxin response, and genetically controlled MT or Actin depolymerization in embryos leads to disruption of asymmetric divisions, including reversion to the default. Our work shows how auxin-dependent control of MT- and Actin cytoskeleton properties interacts with cell geometry to generate asymmetric divisions during the earliest steps in plant development.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- The neuroblast timer gene nubbin exhibits functional redundancy with gap genes to regulate segment identity in Tribolium 94%
- Arabidopsis root responses to salinity depend on pectin modification and cell wall sensing 93%
- Robust organ size in Arabidopsis is primarily governed by cell growth rather than cell division patterns 93%
Similar papers in this journal
Similar papers in this journal
- Exploring the evolution and function of Canoes intrinsically disordered region in linking cell-cell junctions to the cytoskeleton during embryonic morphogenesis 93%
- Linking Expression and Function of Drosophila Type-I TGF-b Receptor Baboon Isoforms: Multiple Roles of BaboA Isoform in Shaping of the Adult Central Nervous System 93%
- The evolutionarily conserved PhLP3 is essential for sperm development in Drosophila melanogaster 93%
Similar papers in this journal
- Endosomes deliver ceramide phosphoethanolamine with unique acyl chain anchors to the cleavage furrow during male meiotic cytokinesis 93%
- Single-cell RNA sequencing of adult Drosophila ovaryidentifies transcriptional programs governing oogenesis 93%
- Trans-generational inheritance of centromere identity requires the CENP-A N-terminal tail in the C. elegans maternal germ line 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.