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Results 1-10 of 34 (Search time: 0.002 seconds).
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PreviewIssue DateTitleAuthor(s)
2015Sensing and signalling salt stress in plant rootsWu, H.; Shabala, L.; Bose, J.; Zhou, M.; Shabala, S.; 2nd International Conference on “Physiological, biochemical, and molecular arguments for salt tolerance” (12 Oct 2015 - 14 Oct 2015 : Doha, Qatar)
2014Abiotic stress tolerance and crop yield: a physiologist’s perspectiveShabala, S.; Bose, J.; Shabala, L.; Zeng, F.; Wu, H.; Zhu, M.; Adem, G.; Panta, S.; Percey, W.; Zhou, M.; ComBio2014 Conference (28 Sep 2014 - 2 Oct 2014 : Canberra, ACT)
2016Potassium homeostasis regulation inside the chloroplasts confers salt tolerance in plantsBose, J.; Percey, W.; Tyerman, S.; Shabala, S.; 17th International Workshop on Plant Membrane Biology (IWPMB 2016) (5 Jun 2016 - 10 Jun 2016 : Annapolis, Maryland, USA)
2014Annexin 1 regulates the H₂O₂-induced calcium signature in Arabidopsis thaliana rootsRichards, S.L.; Laohavisit, A.; Mortimer, J.C.; Shabala, L.; Swarbreck, S.M.; Shabala, S.; Davies, J.M.
2017Chloroplast function and ion regulation in plants growing on saline soils: lessons from halophytesBose, J.; Munns, R.; Shabala, S.; Gilliham, M.; Pogson, B.; Tyerman, S.
2012Application of non-invasive microelectrode flux measurements in plant Stress physiologyShabala, S.; Bose, J.; Volkov, A.
2015Salicylic acid in plant salinity stress signalling and toleranceJayakannan, M.; Bose, J.; Babourina, O.; Rengel, Z.; Shabala, S.
2015Rapid regulation of the plasma membrane H⁺-ATPase activity is essential to salinity tolerance in two halophyte species, Atriplex lentiformis and Chenopodium quinoaBose, J.; Rodrigo-Moreno, A.; Lai, D.; Xie, Y.; Shen, W.; Shabala, S.
2014Cross-talk between reactive oxygen species and polyamines in regulation of ion transport across the plasma membrane: implications for plant adaptive responsesPottosin, I.; Velarde-Buendia, A.; Bose, J.; Zepeda-Jazo, I.; Shabala, S.; Dobrovinskaya, O.
2013Haem oxygenase modifies salinity tolerance in Arabidopsis by controlling K⁺ retention via regulation of the plasma membrane H⁺-ATPase and by altering SOS1 transcript levels in rootsBose, J.; Xie, Y.; Shen, W.; Shabala, S.