Sep 2026· Journal of Experimental Botany· 0 citations
Medicine
TL;DR
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.
Abstract
Under global climate warming, plants evolve unique growth and developmental strategies to cope with frequent abiotic stresses. The plant-specific DNA-BINDING WITH ONE FINGER (DOF) transcription factors (TFs) originated in green algae and are phylogenetically divided into four subfamilies (A, B, C, D), governing plant growth development and stress adaptation. Subfamily B mainly regulates vegetative growth, subfamily C is predominantly involved in seed development and vegetative growth, and subfamily D1 (CYCLING DOF FACTOR, CDF) participates extensively in vegetative growth, flowering, and stress responses. Given emerging studies on DOF functions, a comprehensive review integrating recent advances, especially in seed dormancy, reproductive development and stress tolerance remains lacking. 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.
This review systematically describes the conserved structural features of Dof proteins and their expansion patterns during plant evolution, and focuses on the molecular mechanisms and regulatory networks underlying organ development, growth coordination, stress responses, and metabolic regulation.
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This review comprehensively summarizes the structural organization, phylogenetic classification, and regulatory versatility of plant MYB transcription factors, and places special emphasis on their integrative roles in morphological development, secondary metabolism, stress adaptation, and hormone-mediated signaling net...
This review summarizes the structural, evolutionary, and functional characteristics of WRKY transcription factors involved in flowering regulation in Brassica species and demonstrates substantial expansion of WRKY gene families through genome triplication and polyploidization.
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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...
Low temperature is a major environmental constraint limiting plant growth, development, productivity, and geographical distribution. To survive chilling and freezing conditions, plants have evolved sophisticated regulatory systems that perceive thermal changes and convert them into coordinated transcriptional, hormon...
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Qi-Zhang Wang, Jia-Le Yuan, Yong-Xin Zhang et al.· Frontiers in Plant Science· 0 citations
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