Na+ Tolerance and Na+ Transport in Higher Plants
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Open Access
- 6 February 2003
- journal article
- review article
- Published by Oxford University Press (OUP) in Annals of Botany
- Vol. 91 (5) , 503-527
- https://doi.org/10.1093/aob/mcg058
Abstract
Tolerance to high soil [Na+] involves processes in many different parts of the plant, and is manifested in a wide range of specializations at disparate levels of organization, such as gross morphology, membrane transport, biochemistry and gene transcription. Multiple adaptations to high [Na+] operate concurrently within a particular plant, and mechanisms of tolerance show large taxonomic variation. These mechanisms can occur in all cells within the plant, or can occur in specific cell types, reflecting adaptations at two major levels of organization: those that confer tolerance to individual cells, and those that contribute to tolerance not of cells per se, but of the whole plant. Salt‐tolerant cells can contribute to salt tolerance of plants; but we suggest that equally important in a wide range of conditions are processes involving the management of Na+ movements within the plant. These require specific cell types in specific locations within the plant catalysing transport in a coordinated manner. For further understanding of whole plant tolerance, we require more knowledge of cell‐specific transport processes and the consequences of manipulation of transporters and signalling elements in specific cell types.Keywords
This publication has 104 references indexed in Scilit:
- NONSELECTIVE CATION CHANNELS IN PLANTSAnnual Review of Plant Biology, 2002
- SALT AND DROUGHT STRESS SIGNAL TRANSDUCTION IN PLANTSAnnual Review of Plant Biology, 2002
- The Arabidopsis Na+/H+Exchanger AtNHX1 Catalyzes Low Affinity Na+ and K+ Transport in Reconstituted LiposomesJournal of Biological Chemistry, 2002
- Factors affecting CO2 assimilation, leaf injury and growth in salt-stressed durum wheatFunctional Plant Biology, 2002
- The Wheat cDNA LCT1 Generates Hypersensitivity to Sodium in a Salt-Sensitive Yeast StrainPlant Physiology, 2001
- TheArabidopsis HKT1Gene Homolog Mediates Inward Na+ Currents inXenopus laevisOocytes and Na+ Uptake inSaccharomyces cerevisiaePlant Physiology, 2000
- Genetic Engineering of Glycinebetaine Production toward Enhancing Stress Tolerance in Plants: Metabolic LimitationsPlant Physiology, 2000
- Salt Tolerance Conferred by Overexpression of a Vacuolar Na + /H + Antiport in ArabidopsisScience, 1999
- Polyamines in plant physiology.Plant Physiology, 1990
- Modeling the Transport and Utilization of Carbon and Nitrogen in a Nodulated LegumePlant Physiology, 1979