Distribution and re-transportation of sodium in three Malus species with different salt tolerance.
暂无分享,去创建一个
[1] K. Ungar,et al. The development of a digital gamma-gamma coincidence/anticoincidence spectrometer and its applications to monitor low-level atmospheric 22Na/7Be activity ratios in Resolute Bay, Canada. , 2018, Journal of environmental radioactivity.
[2] Chengrong Chen,et al. Differential uptake of soluble organic and inorganic nitrogen by two fruit species: Dimocarpus longan Lour. and Eriobotrya japonica Lindl. , 2017, Journal of Soils and Sediments.
[3] S. Haller,et al. Ouabain-stimulated trafficking regulation of the Na/K-ATPase and NHE3 in renal proximal tubule cells , 2012, Molecular and Cellular Biochemistry.
[4] M. R. Thorpe,et al. Tracing Cationic Nutrients from Xylem into Stem Tissue of French Bean by Stable Isotope Tracers and Cryo-Secondary Ion Mass Spectrometry[W][OA] , 2009, Plant Physiology.
[5] R. Munns,et al. Cell-specific localization of Na+ in roots of durum wheat and possible control points for salt exclusion. , 2008, Plant, cell & environment.
[6] M. Zeitz,et al. Quercetin enhances epithelial barrier function and increases claudin-4 expression in Caco-2 cells. , 2008, The Journal of nutrition.
[7] Andrea Polle,et al. Effect of NaCl on photosynthesis, salt accumulation and ion compartmentation in two mangrove species, Kandelia candel and Bruguiera gymnorhiza , 2008 .
[8] A. Amtmann,et al. Low unidirectional sodium influx into root cells restricts net sodium accumulation in Thellungiella halophila, a salt-tolerant relative of Arabidopsis thaliana. , 2006, Journal of experimental botany.
[9] Q. Luo,et al. Re-Transportation of Ions in Glycine soja and Glycine max Seedlings Under NaCl Stress , 2003 .
[10] Yang Hong,et al. Na~+ Exclusion Mechanism of the Na~+ Exclusion Sites in Wheat Seedlings , 2002 .
[11] S. Yi. Molecular Mechanism of Plant Responses to Salt Stress , 2001 .
[12] Zhang Ping,et al. Source-sink regulation of assimilates from functional leaves during grain filling stage in spring wheat , 1997 .
[13] Jiang Weibin. Uptake and Distribution of Salt Ions under Salt Stress in Relation to Tolerance of Fig Cultivars , 1994 .
[14] R. Munns. Physiological processes limiting plant growth in saline soils: some dogmas and hypotheses , 1993 .
[15] N. Matsushita,et al. Characterization of Na+ exclusion mechanisms of salt‐tolerant reed plants in comparison with salt‐sensitive rice plants , 1991 .
[16] T. Flowers,et al. Accumulation and localisation of sodium ions within the shoots of rice (Oryza sativa) varieties differing in salinity resistance , 1982 .
[17] B. Jacoby. Sodium Recirculation and Loss from Phaseolus vulgaris L. , 1979 .
[18] H. Marschner,et al. Relation between Salt Tolerance and Long-distance Transport of Sodium and Chloride in Various Crop Species , 1978 .
[19] A. Läuchli,et al. Transfer Cells in Roots of Phaseolus coccineus: Ultrastructure and Possible Function in Exclusion of Sodium from the Shoot , 1977 .
[20] A. Yeo,et al. Ion Distribution in Salt-stressed Mature Zea mays Roots in Relation to Ultrastructure and Retention of Sodium , 1977 .
[21] H. Nassery,et al. Extrusion of Sodium Ions by Barley Roots II. Localization of the Extrusion Mechanism and its Relation to Long-distance Sodium Ion Transport , 1972 .
[22] H. Nassery,et al. Extrusion of Sodium Ions by Barley Roots I. Characteristics of the Extrusion Mechanism , 1972 .
[23] B. Jacoby. Sodium Retention in Excised Bean Stems , 1965 .