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Plant, Cell & Environment|February 28, 2007
The Na+ transporter AtHKT1;1 controls retrieval of Na+ from the xylem in ArabidopsisRomola Jane Davenport, Alicia Muñoz-Mayor, Deepa Jha, et al.
Biochimica Et Biophysica Acta|November 18, 2010
Structural and functional analyses of PpENA1 provide insights into cation binding by type IID P-type ATPases in lower plants and fungiDamian P Drew, Maria Hrmova, Christina Lunde, et al.
Plant, Cell & Environment|February 24, 2011
Assessing the role of root plasma membrane and tonoplast Na+/H+ exchangers in salinity tolerance in wheat: in planta quantification methodsTracey A Cuin, Jayakumar Bose, Giovanni Stefano, et al.
Plos One|September 21, 2011
AtHKT1;1 mediates nernstian sodium channel transport properties in Arabidopsis root stelar cellsShaowu Xue, Xuan Yao, Wei Luo, et al.
BMC Plant Biology|April 30, 2014
Evaluating contribution of ionic, osmotic and oxidative stress components towards salinity tolerance in barleyGetnet Dino Adem, Stuart J Roy, Meixue Zhou, et al.
Methods in Molecular Biology (Clifton, N.J.)|August 17, 2012
Transcriptomics on small samplesStuart J Roy, Simon J Conn, Gwenda M Mayo, et al.
Plant Physiology and Biochemistry : PPB|May 18, 2019
Overexpression of the NAC transcription factor JUNGBRUNNEN1 (JUB1) increases salinity tolerance in tomatoNouf Owdah Alshareef, Jian You Wang, Shawkat Ali, et al.
Frontiers in Plant Science|November 29, 2018
The Arabidopsis thaliana K+-Uptake Permease 5 (AtKUP5) Contains a Functional Cytosolic Adenylate Cyclase Essential for K+ TransportInas Al-Younis, Aloysius Wong, Fouad Lemtiri-Chlieh, et al.
Plant Biotechnology Journal|May 20, 2025
Genomics-assisted breeding for designing salinity-smart future cropsAli Raza, Qamar U Zaman, Sergey Shabala, et al.
Plant Methods|March 28, 2017
Growth curve registration for evaluating salinity tolerance in barleyRui Meng, Stephanie Saade, Sebastian Kurtek, et al.
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