Scinovex
review Open AccessTop 1% cited

Tolerance to drought and salt stress in plants: Unraveling the signaling networks

Frontiers in Plant Science · 2014 · Vol. 5 · pp. 151–151
Dortje GolldackChao LiHarikrishnan MohanNina Probst

Abstract

Tolerance of plants to abiotic stressors such as drought and salinity is triggered by complex multicomponent signaling pathways to restore cellular homeostasis and promote survival. Major plant transcription factor families such as bZIP, NAC, AP2/ERF, and MYB orchestrate regulatory networks underlying abiotic stress tolerance. Sucrose non-fermenting 1-related protein kinase 2 and mitogen-activated protein kinase pathways contribute to initiation of stress adaptive downstream responses and promote plant growth and development. As a convergent point of multiple abiotic cues, cellular effects of environmental stresses are not only imbalances of ionic and osmotic homeostasis but also impaired photosynthesis, cellular energy depletion, and redox imbalances. Recent evidence of regulatory systems that link sensing and signaling of environmental conditions and the intracellular redox status have shed light on interfaces of stress and energy signaling. ROS (reactive oxygen species) cause severe cellular damage by peroxidation and de-esterification of membrane-lipids, however, current models also define a pivotal signaling function of ROS in triggering tolerance against stress. Recent research advances suggest and support a regulatory role of ROS in the cross talks of stress triggered hormonal signaling such as the abscisic acid pathway and endogenously induced redox and metabolite signals. Here, we discuss and review the versatile molecular convergence in the abiotic stress responsive signaling networks in the context of ROS and lipid-derived signals and the specific role of stomatal signaling.

Plant Stress Responses and TolerancePlant Molecular Biology ResearchPlant nutrient uptake and metabolismDrought stressBiologyDrought toleranceStress (linguistics)Salt (chemistry)BotanyChemistry
Citations
1,143
FWCI
108.75
field-weighted impact
References
119
Percentile
100%
vs. same field & year
Citations per year
Cited by
Genetic engineering for enhancement of crop productivity
International Journal of Research in Agronomy · 2022 · 1 citations
How Plant Hormones Mediate Salt Stress Responses
Trends in Plant Science · 2020 · 926 citations
Diverse roles of jasmonates and ethylene in abiotic stress tolerance
Trends in Plant Science · 2015 · 858 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.