ArticlePlant physiology2024
Transcription factors HB21/40/53 trigger inflorescence arrest through abscisic acid accumulation at the end of flowering.
Article in Plant physiology, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 10 papers.
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Who cites it
10 citing papers in PubMed, 11 citations in OpenAlex.
- Decoding the landscape of cell-type-specific co-expressed transcription factors in soybean.Nature plants · 2026Article
- BRANCHED1 acts as a rheostat of Nuclear Factor Y-dependent epigenetic regulation in axillary bud development.Nature communications · 2026Article
- Dexamethasone-inducible LhGR/pOp system: simple and flexible spatiotemporal control of gene expression.Planta · 2026Review
- Brassinosteroid signaling regulates shoot apical meristem homeostasis via orchestrating cytokinin and WUSCHEL activity.Science advances · 2026Article
- The post-fertilization archegonium gene network of seedless plants contributed to the origin of seeds.Nature communications · 2026Article
- In situ architecture of plasmodesmata in Physcomitrium patens resolved by cryo-electron tomography.Nature plants · 2026Article
- Seasons and shape: inflorescences from autumn to summer.Journal of experimental botany · 2025Review
- A homeobox transcription factor HB34 suppresses jasmonic acid biosynthesis but promotes the expression of growth-related genes to balance plant immunity and growth in Arabidopsis.Plant communications · 2025Article
- The quantitative effect of seed production triggers the end of flowering in tomato.Plant physiology · 2025Article
- Genome-wide transcript expression analysis reveals major chickpea and lentil genes associated with plant branching.Frontiers in plant science · 2024Article
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Authors and funding
8 authors at 2 institutions in 1 country.
Funding
Abstract
Flowers, and hence, fruits and seeds, are produced by the activity of the inflorescence meristem after the floral transition. In plants with indeterminate inflorescences, the final number of flowers produced by the inflorescence meristem is determined by the length of the flowering period, which ends with inflorescence arrest. Inflorescence arrest depends on many different factors, such as the presence of seeds, the influence of the environment, or endogenous factors such as phytohormone levels and age, which modulate inflorescence meristem activity. The FRUITFULL-APETALA2 (FUL-AP2) pathway plays a major role in regulating the end of flowering, likely integrating both endogenous cues and those related to seed formation. Among AP2 targets, HOMEOBOX PROTEIN21 (HB21) has been identified as a putative mediator of AP2 function in the control of inflorescence arrest. HB21 is a homeodomain leucine zipper transcription factor involved in establishing axillary bud dormancy. Here, we characterized the role of HB21 in the control of the inflorescence arrest at the end of flowering in Arabidopsis (Arabidopsis thaliana). HB21, together with HB40 and HB53, are upregulated in the inflorescence apex at the end of flowering, promoting floral bud arrest. We also show that abscisic acid (ABA) accumulation occurs in the inflorescence apex in an HB-dependent manner. Our work suggests a physiological role of ABA in floral bud arrest at the end of flowering, pointing to ABA as a regulator of inflorescence arrest downstream of the HB21/40/53 genes.
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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the Socratic graph.