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The cytokinin receptor OHK4/OsHK4 regulates inflorescence architecture in rice via an IDEAL PLANT ARCHITECTURE1/WFP-mediated positive feedback circuit.

Yan ChunJingjing FangEkaterina M SavelievaSergey N LominJiangyuan ShangYinglu SunJinfeng ZhaoAshmit KumarShoujiang YuanXue-Feng YaoChun-Ming LiuDmitry V ArkhipovGeorgy A RomanovXueyong Li
Published in: The Plant cell (2023)
Inflorescence architecture is important for rice (Oryza sativa) grain yield. The phytohormone cytokinin (CK) has been shown to regulate rice inflorescence development; however, the underlying mechanism mediated by CK perception is still unclear. Employing a forward genetic approach, we isolated an inactive variant of the CK receptor OHK4/OsHK4 gene named panicle length1 (pal1), which shows decreased panicle size due to reduced inflorescence meristem activity. A 2-amino acid deletion in the long α-helix stalk of the sensory module of OHK4 impairs the homodimerization and ligand-binding capacity of the receptor, even though the residues do not touch the ligand-binding domain or the dimerization interface. This deletion impairs CK signaling that occurs through the type-B response regulator OsRR21, which acts downstream of OHK4 in controlling inflorescence size. Meanwhile, we found that IDEAL PLANT ARCHITECTURE1(IPA1)/WEALTHY FARMER'S PANICLE (WFP), encoding a positive regulator of inflorescence meristem development, acts downstream of CK signaling and is directly activated by OsRR21. Additionally, we revealed that IPA1/WFP directly binds to the OHK4 promoter and upregulates its expression through interactions with two TCP transcription factors, forming a positive feedback circuit. Altogether, we identified the OHK4-OsRR21-IPA1 regulatory module, providing important insights into the role of CK signaling in regulating rice inflorescence architecture.
Keyphrases
  • protein kinase
  • transcription factor
  • amino acid
  • genome wide
  • poor prognosis
  • binding protein
  • gene expression
  • dna methylation
  • copy number
  • single cell