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1.
Cellular and molecular aspects of iron metabolism in plants // Biol. Cell, 1995. Vol. 84, N 1-2.-С.69-81

2.
Cellular and molecular aspects of iron metabolism in plants // Biol. Cell, 1995. Vol. 84, N 1-2.-С.69-81

3.
Cellular and molecular aspects of iron metabolism in plants // Biol. Cell, 1995. Vol. 84, N 1-2.-С.69-81

4.
von Roots of iron-efficient maize also absorb phytosiderophore-chelated zinc // Plant Physiol., 1996. Vol. 111, N 4.-С.1119-1125

5.
Three functional transporters for constitutive, diurnally regulated, and starvation-induced uptake of ammonium into arabidopsis roots // Plant Cell, 1999. Vol. 11, N 5.-С.937-947

6.
von In vitro characterization of iron-phytosiderophore interaction with maize root plasma membranes: Evidences for slow association kinetics // Biochim. et biophys. acta. Biomembranes, 1998. Vol. 1371, N 1.-С.143-155

7.
von Hydroxylated phytosiderophore species possess an enhanced chelate stability and affinity for iron(III) // Plant Physiol., 2000. Vol. 124, N 3.-С.1149-1157

8.
von Summary of the IX International Symposium on Iron Nutrition and Interactions in Plants // J. Plant Nutr., 2000. Vol. 23, N 11-12.-С.2083-2102

9.
von Summary of the IX International Symposium on Iron Nutrition and Interactions in Plants // J. Plant Nutr., 2000. Vol. 23, N 11-12.-С.2083-2102

10.
Differential regulation of three functional ammonium transporter genes by nitrogen in root hairs and by light in leaves of tomato // Plant J., 2000. Vol. 21, N 2.-С.167-175

11.
von Summary of the IX International Symposium on Iron Nutrition and Interactions in Plants // J. Plant Nutr., 2000. Vol. 23, N 11-12.-С.2083-2102

12.
Regulation of root ion transporters by photosynthesis: Functional importance and relation with hexokinase // Plant Cell, 2003. Vol. 15, N 9.-С.2218-2232

13.
Constitutive expression of a novel-type ammonium transporter OsAMT2 in rice plants // Plant and Cell Physiol., 2003. Vol. 44, N 2.-С.206-211

14.
AtDUR3 encodes a new type of high-affinity urea/H{+} symporter in Arabidopsis // Plant Cell, 2003. Vol. 15, N 3.-С.790-800

15.
von Progress in research on iron nutrition and interactions in plants // Soil Sci. and Plant Nutr., 2004. Vol. 50, N 7.-С.955-964

16.
Schaaf Physiological and biochemical characterization of metal-phytosiderophore transport in graminaceous species // Soil Sci. and Plant Nutr., 2004. Vol. 50, N 7.-С.989-995

17.
Tonoplast intrinsic proteins AtTIP2;1 and AtTIP2;3 facilitate NH[3] transport into the vacuole // Plant Physiol., 2005. Vol. 137, N 2.-С.671-680

18.
Nitrogen-dependent posttranscriptional regulation of the ammonium transporter AtAMT1;1 // Plant Physiol., 2007. Vol. 143, N 2.-С.732-744

19.
PIC1, an ancient permease in Arabidopsis chloroplasts, mediates iron transport // Plant Cell, 2007. Vol. 19, N 3.-С.986-1006

20.
The organization of high-affinity ammonium uptake in Arabidopsis roots depends on the spatial arrangement and biochemical properties of AMT1-type transporters // Plant Cell, 2007. Vol. 19, N 8.-С.2636-2652

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