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Abiotic Stresses: General Defenses of Land Plants and Chances for Engineering Multistress Tolerance

Frontiers in Plant Science · 2018 · Vol. 9 · pp. 1771–1771
Mei HeCheng-Qiang HeNai‐Zheng Ding

Abstract

Abiotic stresses, such as low or high temperature, deficient or excessive water, high salinity, heavy metals, and ultraviolet radiation, are hostile to plant growth and development, leading to great crop yield penalty worldwide. It is getting imperative to equip crops with multistress tolerance to relieve the pressure of environmental changes and to meet the demand of population growth, as different abiotic stresses usually arise together in the field. The feasibility is raised as land plants actually have established more generalized defenses against abiotic stresses, including the cuticle outside plants, together with unsaturated fatty acids, reactive species scavengers, molecular chaperones, and compatible solutes inside cells. In stress response, they are orchestrated by a complex regulatory network involving upstream signaling molecules including stress hormones, reactive oxygen species, gasotransmitters, polyamines, phytochromes, and calcium, as well as downstream gene regulation factors, particularly transcription factors. In this review, we aimed at presenting an overview of these defensive systems and the regulatory network, with an eye to their practical potential via genetic engineering and/or exogenous application.

Plant Stress Responses and TolerancePhotosynthetic Processes and MechanismsPlant responses to elevated CO2Abiotic componentAbiotic stressBiologyPopulationEcologyBiotechnologyCell biologyGeneGenetics

Funding

  • National Natural Science Foundation of China
Citations
639
FWCI
43.93
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References
234
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100%
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References
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Trends in Plant Science · 2008 · 1,099 citations
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PLANT PHYSIOLOGY · 2013 · 1,354 citations
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