Salt Tolerance Mechanisms of Plants.
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Summary
This review provides an overview of cellular and physiological mechanisms in plant responses to salt and emphasizes that filling the major knowledge gaps in salt-induced signaling pathways, increasing the spatial and temporal resolution of knowledge of salt stress responses, discovering and considering crop-specific responses, and including halophytes in comparative studies are all essential in order to take approaches to increasing crop yields in saline soils to the next level.
- Type
- review
- Published
- 2020-03-13
- Cited by
- 1,861
- References
- 0
- Access
- Open access
- OpenAlex
- https://openalex.org/W3010798294
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:212707147
Keywords
Salt (chemistry), Chemistry, Biology, Botany
References
- Stomatal control in tomato with ABA‐deficient roots: response of grafted plants to soil drying
- Identification and functional characterization of the Arabidopsis Snf1‐related protein kinase SnRK2.4 phosphatidic acid‐binding domain
- Halotropism Is a Response of Plant Roots to Avoid a Saline Environment
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- Halotolerant plant growth–promoting bacteria: Prospects for alleviating salinity stress in plants
- Cytochrome oxidase and alternative oxidase pathways of mitochondrial electron transport chain are important for the photosynthetic performance of pea plants under salinity stress conditions.
- Importance of Physiological Traits Vulnerability in Determine Halophytes Tolerance to Salinity Excess: A Comparative Assessment in Atriplex halimus
- Identification of genes conferring plant salt tolerance using GWAS: current success and perspectives.
- Transcriptomic and Physiological Analyses Reveal the Dynamic Response to Salinity Stress of the Garden Asparagus (Asparagus officinalis L.)
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- Ethylene: A Master Regulator of Salinity Stress Tolerance in Plants
- Root Involvement in Plant Responses to Adverse Environmental Conditions
- RNAseq Analysis Reveals Altered Expression of Key Ion Transporters Causing Differential Uptake of Selective Ions in Canola (Brassica napus L.) Grown under NaCl Stress
- How Does Proline Treatment Promote Salt Stress Tolerance During Crop Plant Development?
- Overexpression of phosphatidylserine synthase IbPSS1 affords cellular Na+ homeostasis and salt tolerance by activating plasma membrane Na+/H+ antiport activity in sweet potato roots
- A consortium of arbuscular mycorrizal fungi improves nutrient uptake, biochemical response, nodulation and growth of the pea (Pisum sativum L.) under salt stress
- Elevated CO2 improves antioxidant capacity, ion homeostasis, and polyamine metabolism in tomato seedlings under Ca(NO3)2-induced salt stress
- Mechanisms and Signaling Pathways of Salt Tolerance in Crops: Understanding from the Transgenic Plants
- Identification of salt tolerance QTL in a wheat RIL mapping population using destructive and non-destructive phenotyping.
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