The role of PQL genes in response to salinity tolerance in Arabidopsis and barley

Author:

Alqahtani Mashael12,Lightfoot Damien J.1ORCID,Lemtiri‐Chlieh Fouad13ORCID,Bukhari Ebtihaj1ORCID,Pardo José M.4ORCID,Julkowska Magdalena M.1ORCID,Tester Mark1ORCID

Affiliation:

1. Division of Biological and Environmental Sciences and Engineering King Abdullah University of Science and Technology Thuwal Kingdom of Saudi Arabia

2. Biology Department Princess Nourah Bint Abdul Rahman University Riyadh Kingdom of Saudi Arabia

3. Department of Neuroscience University of Connecticut School of Medicine Farmington CT USA

4. Instituto de Bioquimica Vegetal y Fotosintesis (IBVF) Consejo Superior de Investigaciones Científicas (CSIC) University of Seville Seville Spain

Funder

King Abdullah University of Science and Technology

Publisher

Wiley

Subject

Plant Science,Biochemistry, Genetics and Molecular Biology (miscellaneous),Ecology,Ecology, Evolution, Behavior and Systematics

Reference72 articles.

1. The F130S point mutation in the Arabidopsis high‐affinity K+ transporter AtHAK5 increases K+ over Na+ and Cs+ selectivity and confers Na+ and Cs+ tolerance to yeast under heterologous expression;Alemán F.;Frontiers in Plant Science,2014

2. The Wheat cDNA LCT1 Generates Hypersensitivity to Sodium in a Salt-Sensitive Yeast Strain

3. Multiple inward channels provide flexibility in Na+/K+ discrimination at the plasma membrane of barley suspension culture cells

4. Mechanisms of Na+ Uptake by Plant Cells

5. High‐throughput non‐destructive phenotyping of traits that contribute to salinity tolerance in Arabidopsis thaliana;Awlia M.;Frontiers in Plant Science,2016

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