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FaRIF at the Core of Strawberry Fruit Ripening: Deciphering its Targets and Interaction Networks

Martin-Pizarro, C.; Franco-Zorrilla, J. M.; Perotti, M. F.; Lozano-Duran, R.; Qin, G.; Pose, D.

2025-01-15 plant biology
10.1101/2025.01.13.631932 bioRxiv
Show abstract

Ripening Inducing Factor (RIF) is a key NAC transcription factor regulating strawberry fruit ripening. Previous studies using RIF-RNAi and overexpression lines in Fragaria x ananassa and CRISPR knock-out lines in F. vesca have established the role of RIF in controlling ABA biosynthesis and signaling, cell wall remodeling, and secondary metabolism. In this study, we deciphered FaRIFs transcriptional regulatory network by combining ChIP-seq-based identification of its direct targets with an analysis of FaRIF-RNAi transcriptome data. These analyses revealed FaRIFs direct role in multiple aspects of strawberry fruit ripening, including the regulation of ripening-related transcription factors, phytohormone content and signaling, primary and secondary metabolism, and cell wall degradation. Additionally, using the TurboID-based proximity labeling approach, we have identified FaRIF interactors, including proteins involved in mRNA and protein homeostasis, as well as several NAC transcription factors. Among these, FaNAC034 was found to synergistically enhance FaRIFs transcriptional activity. This integrative analysis, combining transcriptome analysis, in vivo ChIP-seq, and proximity labeling, broadens our knowledge of FaRIF-mediated transcriptional networks and interaction partners, providing valuable insights into the molecular mechanisms underlying strawberry fruit ripening regulation by this transcription factor.

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