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Morphology and tuber formation of in-vitro grown potato plants harboring the yeast invertase gene and/or the rolC gene. Plant Cell Reports 52.
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Quantitative analysis of the local rates of growth of dicot leaves at a high temporal and spatial resolution, using image sequence analysis. Plant Journal 53.
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Biochemical principles underlying genetic manipulation of physiological bottlenecks. Vorträge für Pflanzenzüchtung 54.
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Understanding Allocation to Shoot and Root Growth Will Require Molecular Information About Which Compounds Act as Signals for the Plant Nutrient Status, and How Meristem Activity and Cellular Growth Are Regulated - Opinion. Plant and Soil 55.
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The control of source to sink carbon flux during tuber development in potato. Plant Journal 56.
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Characterization of SKT1, an inwardly rectifying potassium channel from potato, by heterologous expression in insect cells. Plant Physiology Buchkapitel (3)
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Exogenous electrical stimulation of tomato plants: Induction of proteinase inhibitor II gene expression and control of photosynthetic activity. In: Photosynthesis, Proceedings of the meeting, S. 1 - 5 (Hg. Garab, G.). Kluwer Academic Publ., Budapest, HUN (1998)
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Carbon and nitrogen metabolism in the Rhizobiaceae. In: The Rhizobiaceae (Hg. Spaink, H. P.; Kondorosi, A.; Hooykaas, P. J. J.). Kluwer Academic Publ., Dordrecht, NED (1998)
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Identification and analysis of the plant peroxisomal targeting signal 1 receptor NtPEX5. In: Proceedings of the National Academy of Sciences of the United States of America, S. 13336 - 13341. Proceedings of the National Academy of Sciences of the United States of America. (1998)
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Recent advances in brassinosteroid molecular genetics. Current Opinion in Plant Biology 68.
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A tale of dwarfs and drugs: brassinosteroids to the rescue. Trends in Genetics 69.
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Ca2+/phospholipid-binding (C-2) domain in multiple plant proteins: novel components of the calcium-sensing apparatus. Plant Molecular Biology 70.
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Pyrophosphate as an energy donor in the cytosol of plant cells: an enigmatic alternative to ATP. Botanica Acta 71.
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Inactivation of a glycyl-tRNA synthetase leads to an arrest in plant embryo development. Plant Cell