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Commun Biol ; 3(1): 258, 2020 05 22.
Article in English | MEDLINE | ID: mdl-32444849

ABSTRACT

During plant growth, sodium (Na+) in the soil is transported via the xylem from the root to the shoot. While excess Na+ is toxic to most plants, non-toxic concentrations have been shown to improve crop yields under certain conditions, such as when soil K+ is low. We quantified grain Na+ across a barley genome-wide association study panel grown under non-saline conditions and identified variants of a Class 1 HIGH-AFFINITY-POTASSIUM-TRANSPORTER (HvHKT1;5)-encoding gene responsible for Na+ content variation under these conditions. A leucine to proline substitution at position 189 (L189P) in HvHKT1;5 disturbs its characteristic plasma membrane localisation and disrupts Na+ transport. Under low and moderate soil Na+, genotypes containing HvHKT1:5P189 accumulate high concentrations of Na+ but exhibit no evidence of toxicity. As the frequency of HvHKT1:5P189 increases significantly in cultivated European germplasm, we cautiously speculate that this non-functional variant may enhance yield potential in non-saline environments, possibly by offsetting limitations of low available K+.


Subject(s)
Cation Transport Proteins/metabolism , Gene Expression Regulation, Plant , Hordeum/metabolism , Plant Proteins/metabolism , Plant Roots/metabolism , Plant Shoots/metabolism , Sodium/metabolism , Cation Transport Proteins/genetics , Genome-Wide Association Study , Hordeum/genetics , Hordeum/growth & development , Plant Proteins/genetics , Plant Roots/genetics , Plant Roots/growth & development , Plant Shoots/genetics , Plant Shoots/growth & development
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