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Articles citing this paper

Determination of apoplastic Na+ in intact leaves of cotton by in vivo fluorescence ratio-imaging

Karl H. Mühling and André Läuchli
29(12) pp.1491 - 1499


24 articles found in Crossref database.

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WEGNER LARS H., STEFANO GIOVANNI, SHABALA LANA, ROSSI MARIKA, MANCUSO STEFANO, SHABALA SERGEY
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Uptake of sodium in protoplasts of salt-sensitive and salt-tolerant cultivars of rice, Oryza sativa L. determined by the fluorescent dye SBFI
Kader Md. Abdul, Lindberg Sylvia
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Effect of divalent cations on ion fluxes and leaf photochemistry in salinized barley leaves
Shabala Sergey, Shabala Lana, Van Volkenburgh Elizabeth, Newman Ian
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Apoplastic Na+ in Vicia faba Leaves Rises After Short‐Term Salt Stress and Is Remedied by Silicon
Shahzad M., Zörb C., Geilfus C.‐M., Mühling K. H.
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Sodium transport in plants: a critical review
Kronzucker Herbert J., Britto Dev T.
New Phytologist. 2011 189(1). p.54
Advances in Molecular Breeding Toward Drought and Salt Tolerant Crops (2007)
Läuchli A., Grattan S.R.
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Effects of salinity on cytosolic Na+ and K+ in root hairs of Arabidopsis thaliana: in vivo measurements using the fluorescent dyes SBFI and PBFI
Halperin Stephen J., Lynch Jonathan P.
Journal of Experimental Botany. 2003 54(390). p.2035
Sodium chloride toxicity and the cellular basis of salt tolerance in halophytes
Flowers Timothy J., Munns Rana, Colmer Timothy D.
Annals of Botany. 2015 115(3). p.419
Salinity: Environment - Plants - Molecules (2002)
Jones Gareth Wyn, Gorham John
Agricultural Salinity Assessment and Management (2011)
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Osmotic adjustment leads to anomalously low estimates of relative water content in wheat and barley
Boyer John S., James Richard A., Munns Rana, Condon Tony (A. G.), Passioura John B.
Functional Plant Biology. 2008 35(11). p.1172
A novel method to quantify H+-ATPase-dependent Na+ transport across plasma membrane vesicles
Yang Yongqing, Hu Lei, Chen Xuemei, Ottow Eric A., Polle Andrea, Jiang Xiangning
Biochimica et Biophysica Acta (BBA) - Biomembranes. 2007 1768(9). p.2078
Transient alkalinization in the leaf apoplast of Vicia faba L. depends on NaCl stress intensity: an in situ ratio imaging study
GEILFUS CHRISTOPH‐MARTIN, MÜHLING KARL HERMANN
Plant, Cell & Environment. 2012 35(3). p.578
The Apoplast of Higher Plants: Compartment of Storage, Transport and Reactions (2007)
Lohaus G.
Zea mays L. amylacea from the Lluta Valley (Arica-Chile) tolerates salinity stress when high levels of boron are available
Bastías E. I., González-Moro M. B., González-Murua C.
Plant and Soil. 2004 267(1-2). p.73
Physiology and Molecular Biology of Stress Tolerance in Plants (2006)
DAJIC ZORA
Cell‐specific localization of Na+ in roots of durum wheat and possible control points for salt exclusion
LÄUCHLI ANDRÉ, JAMES RICHARD A., HUANG CHENG X., McCULLY MARGARET, MUNNS RANA
Plant, Cell & Environment. 2008 31(11). p.1565
Physiology of Cotton (2010)
Gorham John, Läuchli Andre, Leidi Eduardo O.
Regulation of the uptake and distribution of Na+ in shoots of rice (Oryza sativa) variety Pokkali: role of Ca2+ in salt tolerance response
Anil Veena S., Krishnamurthy Pannaga, Kuruvilla Sam, Sucharitha K., Thomas George, Mathew M. K.
Physiologia Plantarum. 2005 124(4). p.451

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