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Approaches to increasing the salt tolerance of wheat and other cereals

Journal of Experimental Botany · 2006 · Vol. 57(5) · pp. 1025–1043
Rana MunnsRichard A. JamesAndré Läuchli

Abstract

This review describes physiological mechanisms and selectable indicators of gene action, with the aim of promoting new screening methods to identify genetic variation for increasing the salt tolerance of cereal crops. Physiological mechanisms that underlie traits for salt tolerance could be used to identify new genetic sources of salt tolerance. Important mechanisms of tolerance involve Na+ exclusion from the transpiration stream, sequestration of Na+ and Cl- in the vacuoles of root and leaf cells, and other processes that promote fast growth despite the osmotic stress of the salt outside the roots. Screening methods for these traits are discussed in relation to their use in breeding, particularly with respect to wheat. Precise phenotyping is the key to finding and introducing new genes for salt tolerance into crop plants.

Plant Stress Responses and TolerancePlant Micronutrient Interactions and EffectsPlant nutrient uptake and metabolismBiologyTranspirationDrought toleranceSalt (chemistry)AgronomyCropBiotechnologyBotanyPhotosynthesisChemistry

MeSH terms

Edible GrainOsmosisPhenotypePhotosynthesisSodium ChlorideWaterTriticumPlant LeavesPlant Roots
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References
Citrus and salinity
Scientia Horticulturae · 1998 · 299 citations
QTLs for Na+ and K+ uptake of the shoots and roots controlling rice salt tolerance
Theoretical and Applied Genetics · 2003 · 525 citations
Genes and salt tolerance: bringing them together
New Phytologist · 2005 · 3,065 citations
Comparative physiology of salt and water stress
Plant Cell & Environment · 2002 · 6,303 citations
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