The role of FRUITFULL controlling cell cycle during early flower development revealed by time-series snRNA-seq experiments
Peilin Chen, Xiaocai Xu, Cezary Smaczniak, Bénédicte Desvoyes, Crisanto Gutiérrez, Robert Sablowski, Kerstin Kaufmann, Jose M. Muino

TL;DR
This study uses snRNA-seq to uncover how FRUITFULL regulates cell cycle and flower development in Arabidopsis.
Contribution
The novel finding is the role of FRUITFULL in regulating KRP2 to balance cell division and differentiation during flower development.
Findings
Time-series snRNA-seq reveals a bifurcation between cell cycle and floral development transcriptional trajectories.
FUL regulates KRP2, a key cell cycle inhibitor, during early flower development.
This regulation is critical for balancing cell division and differentiation in plants.
Abstract
Starting from pools of undifferentiated cells, plants generate new organs postembryonically in response to external and endogenous signals. This requires a dynamic coordination of cell division with cellular growth and differentiation regulatory programs. However, little is known about how this coordination is achieved at the molecular level during flower development. We used time-series single-nucleus RNA sequencing (snRNA-seq) experiments of synchronized Arabidopsis thaliana flower developmental stages to characterize the transcriptome dynamics and the connections between cell cycle and developmental regulatory programs during early flower development. The results show a bifurcation between transcriptional trajectories corresponding to cell cycle progression and floral development. We identify the regulation of the cell cycle inhibitor KIP-RELATED PROTEIN 2 (KRP2) by FRUITFULL (FUL)…
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Taxonomy
TopicsPlant Molecular Biology Research · RNA Research and Splicing · Plant Gene Expression Analysis
