PpRPK2 modulates auxin homeostasis and transport to specify stem cell identity and plant shape in the moss Physcomitrella
Nemec Venza, Z.; Madden, C.; Stewart, A.; Liu, W.; Novak, O.; Penik, A.; Cuming, A. C.; Kamisugi, Y.; Harrison, C. J.
Show abstract
Plant shape is determined by the activity of stem cells in the growing tips, and evolutionary changes in shape are linked to changes in stem cell function. The CLAVATA pathway is a key regulator of stem cell function in the multicellular shoot tips of Arabidopsis, acting via the WUSCHEL transcription factor to modulate hormone homeostasis. Broad scale evolutionary comparisons have shown that CLAVATA is a conserved regulator of land plant stem cell function, but CLAVATA acts independently of WUSCHEL-like (WOX) proteins in bryophytes, raising questions about the evolution of stem cell function and the role of the CLAVATA pathway. Here we show that the moss (Physcomitrella) CLAVATA pathway affects stem cell activity and overall plant shape by modulating hormone homeostasis. CLAVATA pathway components are expressed in the tip cells of filamentous tissues, regulating cell identity, filament branching patterns and plant spread. The PpRPK2 receptor-like kinase plays the major role and is expressed more strongly than other receptor-encoding genes. Pprpk2 mutants have abnormal responses to cytokinin, and auxin transport inhibition and show reduced PIN auxin transporter expression. We propose a model whereby PpRPK2 modulates PIN activity to determine stem cell identity and overall plant form in Physcomitrella. Our data indicate that CLAVATA-mediated auxin homeostasis is a fundamental property of plant stem cell function likely exhibited by the last shared common ancestor of land plants.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Oil body formation in Marchantia polymorpha is controlled by MpC1HDZ and serves as a defense against arthropod herbivores 96%
- Uclacyanin proteins are required for lignified nanodomain formation within Casparian strips 95%
- Conditional Stomatal Closure in a Fern Shares Molecular Features with Flowering Plant Active Stomatal Responses 95%
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
- Maize Brittle Stalk2-Like3, encoding a COBRA protein, functions in cell wall formation and carbohydrate partitioning 95%
- Spatial transcriptional signatures define margin morphogenesis along the proximal-distal and medio-lateral axes in complex leaf species Solanum lycopersicum (tomato) 95%
- Interplay of EXO70 and MLO proteins modulates trichome cell wall composition and powdery mildew susceptibility 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.