4.8 Article

Integration of the SMXL/D53 strigolactone signalling repressors in the model of shoot branching regulation in Pisum sativum

期刊

PLANT JOURNAL
卷 107, 期 6, 页码 1756-1770

出版社

WILEY
DOI: 10.1111/tpj.15415

关键词

auxin; cytokinin; D53; feedback regulation; Pisum sativum (garden pea); SMXL; strigolactone

资金

  1. IJPB's Plant Observatory technological platforms, Saclay Plant Sciences-SPS [ANR-17-EUR-0007]
  2. Stream COST Action [FA1206]
  3. Agence Nationale de la Recherche [ANR-12-BSV6-004-01]
  4. Australian Research Council [DP110100851, DP110100997, DP150102086, FT100100806]
  5. Australian Research Council [FT100100806] Funding Source: Australian Research Council

向作者/读者索取更多资源

The study identified a pea homolog gene PsSMXL7, which is related to D53 and SMXL6/SMXL7, and revealed its role in regulating bud outgrowth and integrating SL and CK responses. PsSMXL7, like D53 and related SMXLs, can be degraded by SL and induces feedback upregulation of its transcript, suggesting a conserved system in pea and rice involving SL and CK cross-talk in branching regulation.
DWARF53 (D53) in rice (Oryza sativa) and its homologs in Arabidopsis (Arabidopsis thaliana), SUPPRESSOR OF MAX2-LIKE 6 (SMXL6), SMXL7 and SMXL8, are well established negative regulators of strigolactone (SL) signalling in shoot branching regulation. Little is known of pea (Pisum sativum) homologs and whether D53 and related SMXLs are specific to SL signalling pathways. Here, we identify two allelic pea mutants, dormant3 (dor3), and demonstrate through gene mapping and sequencing that DOR3 corresponds to a homolog of D53 and SMXL6/SMXL7, designated PsSMXL7. Phenotype analysis, gene expression, protein and hormone quantification assays were performed to determine the role of PsSMXL7 in regulation of bud outgrowth and the role of PsSMXL7 and D53 in integrating SL and cytokinin (CK) responses. Like D53 and related SMXLs, we show that PsSMXL7 can be degraded by SL and induces feedback upregulation of PsSMXL7 transcript. Here we reveal a system conserved in pea and rice, whereby CK also upregulates PsSMXL7/D53 transcripts, providing a clear mechanism for SL and CK cross-talk in the regulation of branching. To further deepen our understanding of the branching network in pea, we provide evidence that SL acts via PsSMXL7 to modulate auxin content via PsAFB5, which itself regulates expression of SL biosynthesis genes. We therefore show that PsSMXL7 is key to a triple hormone network involving an auxin-SL feedback mechanism and SL-CK cross-talk.

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