Salicylic acid-induced abiotic stress tolerance and underlying mechanisms in plants
Индуцированная салициловой кислотой устойчивость к абиотическим стрессам и лежащие в основе механизмы в растениях
2015-06-30
SCID: 54.1/gvhupfpg
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SA biosynthesisabiotic stress tolerancedrought stresssalicylic acid (SA)salinity stress
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Abstract (AI)
Abiotic stresses (such as metals/metalloids, salinity, ozone, UV-B radiation, extreme temperatures, and drought) are among the most challenging threats to agricultural system and economic yield of crop plants. These stresses (in isolation and/or combination) induce numerous adverse effects in plants, impair biochemical/physiological and molecular processes, and eventually cause severe reductions in plant growth, development and overall productivity. Phytohormones have been recognized as a strong tool for sustainably alleviating adverse effects of abiotic stresses in crop plants. In particular, the significance of salicylic acid (SA) has been increasingly recognized in improved plant abiotic stress-tolerance via SA-mediated control of major plant-metabolic processes. However, the basic biochemical/physiological and molecular mechanisms that potentially underpin SA-induced plant-tolerance to major abiotic stresses remain least discussed. Based on recent reports, this paper: (a) overviews historical background and biosynthesis of SA under both optimal and stressful environments in plants; (b) critically appraises the role of SA in plants exposed to major abiotic stresses;
Key Findings
1
Abiotic stresses (metals/metalloids, salinity, ozone, UV-B, extreme temperatures, drought) severely impair plant biochemical, physiological, molecular processes and crop productivity.
2
Basic biochemical, physiological, and molecular mechanisms underlying SA-induced stress tolerance are under-discussed and are a focus of the paper's review.
3
Phytohormones can sustainably alleviate adverse effects of abiotic stresses in crops, with salicylic acid (SA) being particularly significant.
4
Salicylic acid improves plant abiotic stress tolerance by mediating control of major plant metabolic processes.
5
The paper provides an overview of SA biosynthesis under optimal and stressful conditions and critically appraises SA's role across major abiotic stresses.
Research Object
Plants (crop plants) subjected to major abiotic stresses
Research Subject
Salicylic acid-induced abiotic stress tolerance and the underlying biochemical, physiological, and molecular mechanisms by which SA modulates plant metabolic processes to alleviate effects of metals/metalloids, salinity, ozone, UV-B, extreme temperatures, and drought
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2015-06-30
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