Redundant PLETHORA activity promotes development of early embryonic cell lineages in Arabidopsis
Kerstens, M.; Galinha, C.; hofhuis, H.; Nodine, M. D.; Scheres, b.; Willemsen, V.
Show abstract
The BABY BOOM/PLETHORA4 (BBM/PLT4) transcription factor has received much attention due to its ability to induce somatic and zygotic embryogenesis, two processes of pivotal importance in plant breeding. Loss of additional AINTEGUMENTA-LIKE/PLETHORA (AIL/PLT) genes, encoding members of the APETALA2 transcription factor family, causes embryo arrest and abortion, but whether BBM/PLT4 provides specific information for embryo development has remained unknown. Here, we reveal that AIL/PLT members are expressed in partially overlapping domains from their first appearance in the apical cell daughter of the zygote. Redundant early embryonic activity of BABY BOOM/PLT4 and PLT2 triggers development of the apical cell lineage and is required to initiate embryonic primordia. Furthermore, promoter swap experiments show that PLT1 and PLT3 expression in the expression domains of PLT2 and BABY BOOM/PLT4 is sufficient to rescue plt2 bbm double mutants. Our data indicate that generic AIL/PLT factors, involved in maintenance of stem cells, promotion of cell division and suppression of cell differentiation, provide the necessary information to initiate embryogenesis in Arabidopsis.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Endosperm development is an autonomously programmed process independent of embryogenesis 97%
- Cell layer-specific expression of the homeotic MADS-box transcription factor PhDEF contributes to modular petunia petal morphogenesis 96%
- FRUITFULL-like genes regulate flowering time and inflorescence architecture in tomato 96%
Similar papers in this journal
- Phosphorylation-Dependent Activation of the bHLH Transcription Factor ICE1/SCRM Promotes Polarization of the Arabidopsis Zygote 96%
- Tomato CRABS CLAW paralogues interact with chromatin remodelling factors to mediate carpel development and floral determinacy 96%
- Trehalose 6-phosphate Controls Seed Filling by Inducing Auxin Biosynthesis 96%
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
"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.