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Global Plant Stress Signaling: Reactive Oxygen Species at the Cross-Road

Frontiers in Plant Science · 2016 · Vol. 7
Nasser SewelamKemal KazanPeer M. Schenk

Abstract

Current technologies have changed biology into a data-intensive field and significantly increased our understanding of signal transduction pathways in plants. However, global defense signaling networks in plants have not been established yet. Considering the apparent intricate nature of signaling mechanisms in plants (due to their sessile nature), studying the points at which different signaling pathways converge, rather than the branches, represents a good start to unravel global plant signaling networks. In this regard, growing evidence shows that the generation of reactive oxygen species (ROS) is one of the most common plant responses to different stresses, representing a point at which various signaling pathways come together. In this review, the complex nature of plant stress signaling networks will be discussed. An emphasis on different signaling players with a specific attention to ROS as the primary source of the signaling battery in plants will be presented. The interactions between ROS and other signaling components, e.g., calcium, redox homeostasis, membranes, G-proteins, MAPKs, plant hormones, and transcription factors will be assessed. A better understanding of the vital roles ROS are playing in plant signaling would help innovate new strategies to improve plant productivity under the circumstances of the increasing severity of environmental conditions and the high demand of food and energy worldwide.

Plant Stress Responses and TolerancePlant-Microbe Interactions and ImmunityPhotosynthetic Processes and MechanismsSignal transductionReactive oxygen speciesBiologyTranscription factorCalcium signalingCell biologyCell signalingBiochemistryGene

Funding

  • Commonwealth Scientific and Industrial Research Organisation
  • Australian Research Council
Citations
628
FWCI
135.69
field-weighted impact
References
308
Percentile
100%
vs. same field & year
Citations per year
Cited by
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Trends in Plant Science · 2016 · 3,253 citations
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