Zeitschriftenartikel (314)

301.
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Fiehn, O.; Kopka, J.; Doermann, P.; Altmann, T.; Trethewey, R. N.; Willmitzer, L.: Metabolite profiling for plant functional genomics. Nature Biotechnology 18 (11), S. 1157 - 1161 (2000)
302.
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Fiehn, O.; Kopka, J.; Trethewey, R. N.; Willmitzer, L.: Identification of uncommon plant metabolites based on calculation of elemental compositions using gas chromatography and quadrupole mass spectrometry. Analytical Chemistry 72 (15), S. 3573 - 3580 (2000)
303.
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Roessner, U.; Wagner, C.; Kopka, J.; Trethewey, R. N.; Willmitzer, L.: Simultaneous analysis of metabolites in potato tuber by gas chromatography-mass spectrometry. Plant Journal 23 (1), S. 131 - 142 (2000)
304.
Zeitschriftenartikel
Tauberger, E.; Fernie, A. R.; Emmermann, M.; Renz, A.; Kossmann, J.; Willmitzer, L.; Trethewey, R. N.: Antisense inhibition of plastidial phosphoglucomutase provides compelling evidence that potato tuber amyloplasts import carbon from the cytosol in the form of glucose-6-phosphate. Plant Journal 23 (1), S. 43 - 53 (2000)
305.
Zeitschriftenartikel
Trethewey, R. N.; Geigenberger, P.; Hennig, A.; Fleischer-Notter, H.; Mueller-Roeber, B.; Willmitzer, L.: Induction of the activity of glycolytic enzymes correlates with enhanced hydrolysis of sucrose in the cytosol of transgenic potato tubers. Plant Cell and Environment 22 (1), S. 71 - 79 (1999)
306.
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Trethewey, R. N.; Riesmeier, J. W.; Willmitzer, L.; Stitt, M.; Geigenberger, P.: Tuber-specific expression of a yeast invertase and a bacterial glucokinase in potato leads to an activation of sucrose phosphate synthase and the creation of a sucrose futile cycle. Planta 208 (2), S. 227 - 238 (1999)
307.
Zeitschriftenartikel
Veramendi, J.; Roessner, U.; Renz, A.; Willmitzer, L.; Trethewey, R. N.: Antisense repression of hexokinase 1 leads to an overaccumulation of starch in leaves of transgenic potato plants but not to significant changes in tuber carbohydrate metabolism. Plant Physiology 121 (1), S. 123 - 133 (1999)
308.
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Veramendi, J.; Willmitzer, L.; Trethewey, R. N.: In vitro grown potato microtubers are a suitable system for the study of primary carbohydrate metabolism. Plant Physiology and Biochemistry 37 (9), S. 693 - 697 (1999)
309.
Zeitschriftenartikel
Hartel, H.; Lokstein, H.; Dormann, P.; Trethewey, R. N.; Benning, C.: Photosynthetic light utilization and xanthophyll cycle activity in the galactolipid deficient dgd1 mutant of Arabidopsis thaliana. Plant Physiology and Biochemistry 36 (6), S. 407 - 417 (1998)
310.
Zeitschriftenartikel
Keller, R.; Brearley, C. A.; Trethewey, R. N.; Mueller-Roeber, B.: Reduced inositol content and altered morphology in transgenic potato plants inhibited for 1D-myo-inositol 3-phosphate synthase. Plant Journal 16 (4), S. 403 - 410 (1998)
311.
Zeitschriftenartikel
Sweetlove, L. J.; Kossmann, J.; Riesmeier, J. W.; Trethewey, R. N.; Hill, S. A.: The control of source to sink carbon flux during tuber development in potato. Plant Journal 15 (5), S. 697 - 706 (1998)
312.
Zeitschriftenartikel
Trethewey, R. N.; Geigenberger, P.; Riedel, K.; Hajirezaei, M.-R.; Sonnewald, U.; Stitt, M.; Riesmeier, J. W.; Willmitzer, L.: Combined expression of glucokinase and invertase in potato tubers leads to a dramatic reduction in starch accumulation and a stimulation of glycolysis. Plant Journal 15 (1), S. 109 - 118 (1998)
313.
Zeitschriftenartikel
Sakr, S.; Noubahni, M.; Bourbouloux, A.; Riesmeier, J.; Frommer, W. B.; Sauer, N.; Delrot, S.: Cutting, ageing and expression of plant membrane transporters. Biochimica Et Biophysica Acta-Biomembranes 1330 (2), S. 207 - 216 (1997)
314.
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Sonnewald, U.; Hajirezaei, M.-R.; Kossmann, J.; Heyer, A. G.; Trethewey, R. N.; Willmitzer, L.: Increased potato tuber size resulting from apoplastic expression of a yeast invertase. Nature Biotechnology 15 (8), S. 794 - 797 (1997)

Buchkapitel (19)

315.
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de Abreu e Lima, F.; Leifels, L.; Nikoloski, Z.: Regression-Based Modeling of Complex Plant Traits Based on Metabolomics Data. In: Plant Metabolomics: Methods and Protocols, S. 321 - 327 (Hg. António, C.). Humana Press, New York (2018)
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Watanabe, M.; Tohge, T.; Balazadeh, S.; Erban, A.; Giavalisco, P.; Kopka, J.; Mueller-Roeber, B.; Fernie, A. R.; Hoefgen, R.: Comprehensive Metabolomics Studies of Plant Developmental Senescence. In: Plant Senescence: Methods and Protocols, S. 339 - 358 (Hg. Guo, Y.). Springer New York, New York, NY (2018)
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Szymanski, J.; Galili, G.: Linking Plant Amino Acids with Energy and Stress A Systems Biology Perspective. In: Omics Technologies and Crop Improvement, S. 343 - 358. CRC Press-Taylor & Francis Group, Boca-Raton (2015)
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Krueger, S.; Steinhauser, D.; Lisec, J.; Giavalisco, P.: Analysis of Subcellular Metabolite Distributions Within Arabidopsis thaliana Leaf Tissue: A Primer for Subcellular Metabolomics. In: Arabidopsis Protocols, 3rd Edition, S. 575 - 596. Humana Press, Totowa, NJ (2014)
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Brotman, Y.: The use of metabolomic approaches to study Trichoderma-plant interactions. In: Trichoderma: biology and applications., S. 209 - 221. CABI, Wallingford (2013)
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Redestig, H.; Szymanski, J.; Hirai, M. Y.; Selbig, J.; Willmitzer, L.; Saito, K.; Nikoloski, Z.: Data integration, Metabolic Networks and Systems Biology. In: Biology of Plant Metabolomics, 9 (Hg. Hall, R. D.). Wiley-Blackwell, Oxford, UK (2011)
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