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142 (1), S. 98 - 112 (2006)
Natural genetic variation of freezing tolerance in arabidopsis. Plant Physiology 102.
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53 (1), S. 58 - 68 (2006)
High concentrations of the compatible solute glycinebetaine destabilize model membranes under stress conditions. Cryobiology 103.
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29, S. 24 - 26 (2006)
Der nächste Winter kommt bestimmt! Wie Pflanzen sich an Kälte anpassen. Bioforum 104.
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346 (2), S. 217 - 224 (2005)
A quality-controlled microarray method for gene expression profiling. Analytical Biochemistry 105.
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1 (2), S. e26 (2005)
A global survey of gene regulation during cold acclimation in Arabidopsis thaliana. PLoS Genetics 106.
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15 (11), S. 1150 - 1155 (2005)
Effects of the sugar headgroup of a glycoglycerolipid on the phase behavloir of phospholipid model membranes in the dry state. Glycobiology 107.
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383 (Pt 2), S. 277 - 283 (2004)
Stabilization of model membranes during drying by compatible solutes involved in the stress tolerance of plants and microorganisms. Biochemical Journal 108.
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132 (2), S. 171 - 184 (2004)
Specific interactions of tryptophan with phosphatidylcholine and digalactosyldiacylglycerol in pure and mixed bilayers in the dry and hydrated state. Chemistry and Physics of Lipids 109.
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38 (5), S. 790 - 799 (2004)
Heterosis in the freezing tolerance of crosses between two Arabidopsis thaliana accessions (Columbia-0 and C24) that show differences in non-acclimated and acclimated freezing tolerance. Plant Journal 110.
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576 (1-2), S. 169 - 173 (2004)
The role of raffinose in the cold acclimation response of Arabidopsis thaliana. FEBS Letters 111.
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1611 (1-2), S. 180 - 186 (2003)
Effects of calcium-induced aggregation on the physical stability of liposomes containing plant glycolipids. Biochimica Et Biophysica Acta-Biomembranes 112.
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1612 (2), S. 172 - 177 (2003)
The preservation of liposomes by raffinose family oligosaccharides during drying is mediated by effects on fusion and lipid phase transitions. Biochimica Et Biophysica Acta-Biomembranes 113.
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85 (3), S. 1682 - 1690 (2003)
Intermolecular interactions in dry and rehydrated pure and mixed bilayers of phosphatidylcholine and digalactosyldiacylglycerol: a Fourier transform infrared spectroscopy study. Biophysical Journal 114.
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47 (3), S. 191 - 203 (2003)
Cryoprotectin protects thylakoids during a freeze-thaw cycle by a mechanism involving stable membrane binding. Cryobiology 115.
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551 (1-3), S. 13 - 19 (2003)
The effect of hydrophobic analogues of the type I winter flounder antifreeze protein on lipid bilayers. FEBS Letters 116.
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85 (5), S. 3058 - 3065 (2003)
The effect of fructan on the phospholipid organization in the dry state. Biophysical Journal 117.
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12 (2), S. 103 - 110 (2002)
Specific effects of fructo- and gluco-oligosaccharides in the preservation of liposomes during drying. Glycobiology 118.
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44 (2), S. 170 - 178 (2002)
Vitrification of posterior corneal lamellae. Cryobiology 119.
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Differential destabilization of membranes by tryptophan and phenylalanine during freezing: the roles of lipid composition and membrane fusion. Biochimica Et Biophysica Acta-Biomembranes 120.
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82 (2), S. 874 - 881 (2002)
A mechanism for stabilization of membranes at low temperatures by an antifreeze protein. Biophysical Journal 121.
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45 (2), S. 135 - 142 (2002)
Lipid unsaturation determines the interaction of AFP type I with model membranes during thermotropic phase transitions. Cryobiology 122.
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125 (2), S. 835 - 846 (2001)
Cabbage cryoprotectin is a member of the nonspecific plant lipid transfer protein gene family. Plant Physiology 123.
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111 (1), S. 37 - 57 (2001)
The effect of arbutin on membrane integrity during drying is mediated by stabilization of the lamellar phase in the presence of nonbilayer-forming lipids. Chemistry and Physics of Lipids 124.
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1511 (2), S. 255 - 263 (2001)
Antifreeze proteins differentially affect model membranes during freezing. Biochimica Et Biophysica Acta-Biomembranes 125.
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267 (2), S. 535 - 540 (2000)
Plant fructans stabilize phosphatidylcholine liposomes during freeze-drying. European Journal of Biochemistry 126.
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Lipid composition determines the effects of arbutin on the stability of membranes. Biophysical Journal 127.
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358 (2), S. 385 - 390 (1998)
Release of two peripheral proteins from chloroplast thylakoid membranes in the presence of a Hofmeister series of chaotropic anions. Archives of Biochemistry and Biophysics 128.
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Trehalose increases freeze-thaw damage in liposomes containing chloroplast glycolipids. Cryobiology 129.
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The effects of chloroplast lipids on the stability of liposomes during freezing and drying. Biochimica Et Biophysica Acta-Biomembranes 130.
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Interactions of arbutin with dry and hydrated bilayers. Biochimica Et Biophysica Acta-Biomembranes 131.
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37 (1), S. 92 - 99 (1998)
Interactions of proline, serine, and leucine with isolated spinach thylakoids: Solute loading during freezing is not related to membrane fluidity. Cryobiology 132.
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34 (3), S. 193 - 199 (1997)
A cryoprotective lectin reduces the solute permeability and lipid fluidity of thylakoid membranes. Cryobiology 133.
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beta-1,3-glucanase is cryoprotective in vitro and is accumulated in leaves during cold acclimation. Plant Physiology 134.
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203 (2), S. 140 - 144 (1997)
The concentration of cryoprotective lectins in mistletoe (Viscum albam L.) leaves is correlated with leaf frost hardiness. Planta 135.
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