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FLOWERING PROMOTING FACTOR 1-like genes: emerging yet mechanistically unresolved regulators of floral transition and
Sukriti1,2, Hrishikesh Mahato1, Joel Jose-Santhi1,2
1Plant Adaptation and Developmental Biology Lab, Biotechnology Division, CSIR-Institute of Himalayan Bioresource Technology, Palampur 176061, India.
Abstract:
Flowering marks a pivotal transition in the life cycle of a plant, signaling the shift from vegetative growth to reproductive development. Over the years, extensive research has uncovered key genes and regulatory networks governing this process. Central to this regulation is the Florigen Activation Complex (FAC), which, along with its interacting partners and upstream and downstream components, have been well-characterized across numerous plant species. More recently, attention has turned to a lesser-known gene, FLOWERING PROMOTING FACTOR 1 (FPF1). Initially identified in Arabidopsis thaliana, FPF1 is a plant-specific gene lacking known functional domains, yet it plays a conserved and critical role in floral induction across diverse species. Despite its discovery in 1997, the molecular mechanism of FPF1 action remained elusive until recent studies began to unravel the function of FPF1 and its homologs. One such study revealed that FPF1-Like Protein 1 (FLP1) in Arabidopsis is expressed in phloem companion cells, the sites of FLOWERING LOCUS T (FT) production. Like AtFT, AtFLP1 acts as a mobile florigenic signal, though it operates independently of the canonical AtFT pathway. AtFLP1 promotes flowering by activating the floral homeotic gene SEP3, suggesting an alternative regulatory route also influenced by photoperiod. Interestingly, studies in Brachypodium distachyon have highlighted a contrasting role for FPF1-like (FPL) proteins, where they negatively regulate flowering by interfering with the FAC, underscoring species-specific diversity in its function. While initial studies have focused on their role in flowering, in recent years FPF1 family genes have also been implicated in other developmental processes, including stem and root elongation and shade avoidance responses. In this review, we explore these emerging insights into FPF1-like proteins, examining their multifaceted roles in flowering regulation and broader developmental functions, with a special emphasis on the most recent and impactful studies.
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