Aug 2026· Plant, Cell and Environment· 0 citations· 181 references
Medicine
TL;DR
This review synthesises current knowledge to elucidate the specific oxidative modification mechanisms by which ROS target core signalling components, biosynthetic enzymes, as well as transport proteins throughout all hormonal pathways and distils cross-pathway principles that define a coherent redox-guided regulatory architecture.
Abstract
Reactive oxygen species (ROS) and phytohormones are essential components of a precisely coordinated signalling network that regulates plant growth, development and adaptation to environmental changes. This review synthesises current knowledge to elucidate the specific oxidative modification mechanisms by which ROS target core signalling components, biosynthetic enzymes, as well as transport proteins throughout all hormonal pathways and distils cross-pathway principles that define a coherent redox-guided regulatory architecture. We further delineate the reciprocal regulation where phytohormones modulate ROS homeostasis to coordinate plant growth and stress tolerance, establishing bidirectional circuits that enable dynamic resource allocation and we discuss translational opportunities for precision editing of redox-sensitive nodes in crops. Understanding the interplay between ROS and phytohormones not only enhances our knowledge of plant adaptive strategies but also provides a conceptual framework for developing crops with optimised yield and stress tolerance through molecular breeding and hormone-based agrochemical interventions.
This review synthesises current understanding of the biochemical, structural, and regulatory roles of redox molecules in heavy-metal tolerance, and highlights emerging avenues in omics-driven discovery, genetic enhancement, and microbial strategies.
D. Holman, A. Barker, R. Wu et al.· Journal of Plant Biochemistr...· 0 citations
A concept-driven synthesis positioning NO as a central integrator of plant signaling networks is provided, highlighting its role as a redox–hormonal hub coordinating interactions with reactive oxygen species, phytohormones, and phytohormones.
Michaela Sedlářová, Tereza Jedelská, A. Lebeda et al.· Frontiers in Plant Science· 0 citations
This review synthesizes current insights into the molecular and physiological roles of phyto‐oxylipins, emphasizing their potential in integrating plant defense mechanisms to enhance crop productivity amid abiotic and biotic challenges.
S. Mansoor, Nabila Bettache, M. Altaf et al.· Physiologia Plantarum : An I...· 0 citations
Reactive oxygen, nitrogen, and sulfur species (RONSs) are essential signaling molecules in plants, with their production highly compartmentalized within the cell. In this review, we advance the concept of the "nuclear redox code," a framework in which the plant cell nucleus functions as a signaling hub that actively cu...
As sessile organisms, plants constantly face environmental stresses that disrupt reactive oxygen species (ROS) homeostasis. ROS function as critical signaling molecules orchestrating stress adaptation, while microRNAs (miRNAs) have emerged as master regulators of gene expression. Accumulating evidence reveals a bidirec...
Jing Wang, Huai-Qing Hao, Ying-Yue Wen et al.· Plant physiology and biochem...· 0 citations
This review comprehensively synthesizes recent advances in abiotic stress perception, signal transduction and hormone‐mediated regulation, highlighting their roles in shaping plant stress tolerance and proposes an integrated multi‐scale framework to provide a holistic understanding of drought and salinity stress tolera...
Muhammad Farooq, A. Khan, A. Hassan et al.· Plant Breeding· 1 citation
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.