Journal Article (135)
101.
Journal Article
142 (1), pp. 98 - 112 (2006)
Natural genetic variation of freezing tolerance in arabidopsis. Plant Physiology 102.
Journal Article
53 (1), pp. 58 - 68 (2006)
High concentrations of the compatible solute glycinebetaine destabilize model membranes under stress conditions. Cryobiology 103.
Journal Article
29, pp. 24 - 26 (2006)
Der nächste Winter kommt bestimmt! Wie Pflanzen sich an Kälte anpassen. Bioforum 104.
Journal Article
346 (2), pp. 217 - 224 (2005)
A quality-controlled microarray method for gene expression profiling. Analytical Biochemistry 105.
Journal Article
1 (2), p. e26 (2005)
A global survey of gene regulation during cold acclimation in Arabidopsis thaliana. PLoS Genetics 106.
Journal Article
15 (11), pp. 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.
Journal Article
383 (Pt 2), pp. 277 - 283 (2004)
Stabilization of model membranes during drying by compatible solutes involved in the stress tolerance of plants and microorganisms. Biochemical Journal 108.
Journal Article
132 (2), pp. 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.
Journal Article
38 (5), pp. 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.
Journal Article
576 (1-2), pp. 169 - 173 (2004)
The role of raffinose in the cold acclimation response of Arabidopsis thaliana. FEBS Letters 111.
Journal Article
1611 (1-2), pp. 180 - 186 (2003)
Effects of calcium-induced aggregation on the physical stability of liposomes containing plant glycolipids. Biochimica Et Biophysica Acta-Biomembranes 112.
Journal Article
1612 (2), pp. 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.
Journal Article
85 (3), pp. 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.
Journal Article
47 (3), pp. 191 - 203 (2003)
Cryoprotectin protects thylakoids during a freeze-thaw cycle by a mechanism involving stable membrane binding. Cryobiology 115.
Journal Article
551 (1-3), pp. 13 - 19 (2003)
The effect of hydrophobic analogues of the type I winter flounder antifreeze protein on lipid bilayers. FEBS Letters 116.
Journal Article
85 (5), pp. 3058 - 3065 (2003)
The effect of fructan on the phospholipid organization in the dry state. Biophysical Journal 117.
Journal Article
12 (2), pp. 103 - 110 (2002)
Specific effects of fructo- and gluco-oligosaccharides in the preservation of liposomes during drying. Glycobiology 118.
Journal Article
44 (2), pp. 170 - 178 (2002)
Vitrification of posterior corneal lamellae. Cryobiology 119.
Journal Article
1561 (1), pp. 109 - 118 (2002)
Differential destabilization of membranes by tryptophan and phenylalanine during freezing: the roles of lipid composition and membrane fusion. Biochimica Et Biophysica Acta-Biomembranes 120.
Journal Article
82 (2), pp. 874 - 881 (2002)
A mechanism for stabilization of membranes at low temperatures by an antifreeze protein. Biophysical Journal 121.
Journal Article
45 (2), pp. 135 - 142 (2002)
Lipid unsaturation determines the interaction of AFP type I with model membranes during thermotropic phase transitions. Cryobiology 122.
Journal Article
125 (2), pp. 835 - 846 (2001)
Cabbage cryoprotectin is a member of the nonspecific plant lipid transfer protein gene family. Plant Physiology 123.
Journal Article
111 (1), pp. 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.
Journal Article
1511 (2), pp. 255 - 263 (2001)
Antifreeze proteins differentially affect model membranes during freezing. Biochimica Et Biophysica Acta-Biomembranes 125.
Journal Article
267 (2), pp. 535 - 540 (2000)
Plant fructans stabilize phosphatidylcholine liposomes during freeze-drying. European Journal of Biochemistry 126.
Journal Article
77 (4), pp. 2024 - 2034 (1999)
Lipid composition determines the effects of arbutin on the stability of membranes. Biophysical Journal 127.
Journal Article
358 (2), pp. 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.
Journal Article
36 (3), pp. 245 - 249 (1998)
Trehalose increases freeze-thaw damage in liposomes containing chloroplast glycolipids. Cryobiology 129.
Journal Article
1368 (1), pp. 150 - 160 (1998)
The effects of chloroplast lipids on the stability of liposomes during freezing and drying. Biochimica Et Biophysica Acta-Biomembranes 130.
Journal Article
1370 (1), pp. 87 - 97 (1998)
Interactions of arbutin with dry and hydrated bilayers. Biochimica Et Biophysica Acta-Biomembranes 131.
Journal Article
37 (1), pp. 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.
Journal Article
34 (3), pp. 193 - 199 (1997)
A cryoprotective lectin reduces the solute permeability and lipid fluidity of thylakoid membranes. Cryobiology 133.
Journal Article
114 (3), pp. 1077 - 1083 (1997)
beta-1,3-glucanase is cryoprotective in vitro and is accumulated in leaves during cold acclimation. Plant Physiology 134.
Journal Article
203 (2), pp. 140 - 144 (1997)
The concentration of cryoprotective lectins in mistletoe (Viscum albam L.) leaves is correlated with leaf frost hardiness. Planta 135.
Journal Article
147 (5), pp. 604 - 610 (1996)
The role of sugar accumulation in leaf frost hardiness investigations with transgenic tobacco expressing a bacterial pyrophosphatase or a yeast invertase gene. Journal of Plant Physiology Book (1)
136.
Book
Plant Cold Acclimation. Springer, New York (2014), 282 pp.
Book Chapter (14)
137.
Book Chapter
2156, pp. 1 - 7 (Eds. Hincha, D. K.; Zuther, E.). Springer US, New York, NY (2020)
Introduction: Plant Cold Acclimation and Winter Survival. In: Plant Cold Acclimation: Methods and Protocols, Vol. 138.
Book Chapter
2156, pp. 255 - 268 (Eds. Hincha, D. K.; Zuther, E.). Springer US, New York, NY (2020)
Analysis of Changes in Plant Cell Wall CompositionCell wallcompositions and Structure During Cold Acclimation. In: Plant Cold Acclimation: Methods and Protocols, Vol. 139.
Book Chapter
Measuring Freezing Tolerance of Leaves and Rosettes: Electrolyte Leakage and Chlorophyll Fluorescence Assays. In: Plant Cold Acclimation: Methods in Molecular Biology, Vol.
140.
Book Chapter
Natural Variation in Freezing Tolerance and Cold Acclimation Response in Arabidopsis thaliana and Related Species. In: Survival Strategies in Extreme Cold and Desiccation: Adaptation Mechanisms and Their Applications, pp. 81 - 98 (Eds. Iwaya-Inoue, M.; Sakurai, M.; Uemura, M.). Springer Singapore, Singapore (2018)
141.
Book Chapter
1166, pp. 1 - 6. Humana Press, Clifton, N.J. (2014)
Introduction: plant cold acclimation and freezing tolerance. In: Methods in Molecular Biology, Vol. 142.
Book Chapter
1166, pp. 15 - 24. Humana Press, Clifton, N.J. (2014)
Measuring freezing tolerance: electrolyte leakage and chlorophyll fluorescence assays. In: Methods in Molecular Biology, Vol. 143.
Book Chapter
The Function and Evolution of Closely Related COR/LEA (Cold-Regulated/Late Embryogenesis Abundant) Proteins in Arabidopsis thaliana. In: Plant and Microbe Adaptations to Cold in a Changing World, pp. 89 - 105 (Ed. Imai, R.). Springer, New York (2013)
144.
Book Chapter
1 & 2, pp. 255 - 287 (Eds. Tuteja, N.; Gill, S. S.; Tiburcio, A. F.; Tuteja, R.). Wiley-Blackwell, Berlin (2012)
Transcriptomic and metabolomic approaches to the analysis of plant freezing tolerance and cold acclimation. In: Improving Crop Resistance to Abiotic Stress, Vol. 145.
Book Chapter
Conducting molecular biomarker discovery studies in plants. In: High Throughput Phenotyping in Plants, 10 (Ed. Normanly, J.). Humana Press Inc., Totowa, NJ, USA (2012)
146.
Book Chapter
LEA proteins: versatility of form and function. In: Dormancy and Resistance in Harsh Environments, 6, pp. 91 - 108 (Eds. Lubzens, E.; Cerdà, J.; Clark, M.). Springer-Verlag, Heidelberg, GER (2010)
147.
Book Chapter
3, pp. 189 - 217 (Ed. Leitmannova Liu, A.). Elsevier, Amsterdam, NED (2006)
Effects of sugars on the stability and structure of lipid membranes during drying. In: Advances in Planar Lipid Bilayers and Liposomes, Vol. 148.
Book Chapter
The role of compatible solutes in plant freezing tolerance: a case study on raffinose. In: Cold Hardiness in Plants: Molecular Genetics, Cell Biology and Physiology, pp. 203 - 218 (Eds. Chen, T. H. H.; Uemura, M.; Fujikawa, S.). CABI Publishing (2006)
149.
Book Chapter
Cryoprotection, a cabbage protein protecting thylakoids from freeze-thraw damage. Expression of candidates genes in E. coli. In: Plant Cold Hardiness: Gene Regulation and Genetic Engineering, pp. 195 - 210 (Eds. Li, P. H.; Palva, E. T.). Kluwer Academic / Plenum Publishers, New York, NY, USA (2002)
150.
Book Chapter
Cryoprotection of thylakoid membranes by soluble plant proteins. In: Plant Responses to Environmental Stress, pp. 111 - 116 (Eds. Smallwood, M. F.; Calvert, C. M.; Bowles, D. J.). BIOS Scientific Publ., Oxford, UK (1999)