This review systematically summarizes the domain architecture, interactome networks, and evolutionary conservation of AFPs, and further highlights the pleiotropic functions of AFPs in seed dormancy and germination, photoperiodic flowering, plant architecture modulation, abiotic stress tolerance and disease resistance.
Abstract
AFPs (ABI5-BINDING PROTEINS) are a unique class of small, plant-specific proteins, originally identified through their interaction with ABI5 (ABSCISIC ACID INSENSITIVE 5), a pivotal transcription factor in ABA (ABSCISIC ACID) signaling pathway. Emerging evidence indicates that AFPs act as multifunctional integrators governing not only ABA signaling but also a broad spectrum of plant growth, development, biotic and abiotic stress adaptation. This review systematically summarizes the domain architecture, interactome networks, and evolutionary conservation of AFPs, and further highlights the pleiotropic functions of AFPs in seed dormancy and germination, photoperiodic flowering, plant architecture modulation, abiotic stress tolerance and disease resistance. Through diverse molecular mechanisms, including recruitment of corepressors, control of target protein stability, and modulation of chromatin states, AFPs operate as microprotein modulators at critical nodes of phytohormone networks, offering novel insights into the regulatory principles balancing plant growth and stress resilience.
This review synthesizes the significant advancements made over the past decade in understanding JA's role in regulating plant development and mediating responses to environmental stresses, areas that lacked systematic review in previous years.
Rui Wang, Teja Manda, A. Movahedi et al.· Functional Plant Biology· 0 citations
SQUAMOSA PROMOTER BINDING PROTEIN-LIKE (SPL) transcription factors constitute a plant-specific family defined by a conserved SBP DNA-binding domain. They recognize cis-elements containing the core GTAC motif and cooperate with various co-regulators to govern downstream gene expression, thereby participating in leaf mor...
This review highlights how plant defense signaling and transcriptional regulation against aphids can be harnessed to develop sustainable and novel pest management solutions.
V. Patil, Rizwana Rehsawla, Apurba K. Barman· Stress Biology· 0 citations
This review, primarily focuses on classical plant miPs that modulate protein activity through dominant-negative PPI, while also briefly discussed associated classes of small regulatory peptides, where they intersect functionally with miP-mediated regulation.
This review integrates current advances in the multifaceted roles of the DOF family, including regulating seed germination, vegetative growth, reproductive development and leaf senescence, as well as coordinating adaptive responses to various abiotic stresses.
Shu-Yun Zhong, Dan-Qing Li, Xiao-hua Shi et al.· Journal of Experimental Bota...· 0 citations
This review systematically summarizes the discovery, protein structure, classification, regulatory networks, biological functions, and mechanisms underlying stress responses of plant CBLs, and provides perspectives for future research, aiming to provide theoretical foundations and genetic resources for the genetic impr...