Identification and characterization of intraspecific variability of the sucrose synthase gene Sus4 of potato (Solanum tuberosum)
Author:
Publisher
Pleiades Publishing Ltd
Subject
Genetics
Link
http://link.springer.com/content/pdf/10.1134/S1022795411020074.pdf
Reference27 articles.
1. Sun, J., Loboda, T., Sung, S.S., and Black, C.C., Sucrose Synthase in Wild Tomato, Lycopersicon chmielewskii, and Tomato Fruit Sink Strength, Plant Physiol., 1992, vol. 98, pp. 1163–1169.
2. Wang, F., Smith, A., and Brenner, M.L., Temporal and Spatial Expression Pattern of Sucrose Synthase during Tomato Fruit Development, Plant Physiol., 1994, vol. 104, pp. 535–540.
3. Sachs, M.M., Subbaiah, C.C. and Saab, I.N., Anaerobic Gene Expression and Flooding Tolerance in Maize, J. Exp. Botany, 1996, vol.47, pp. 1–15.
4. Dejardin, A., Sokolov, L., and Kleczkowski, L., Sugar/Osmoticum Levels Modulate Differential Abscisic Acid-Independent Expression of Two Stress-Responsive Sucrose Synthase Genes in Arabidopsis, Biochem. J., 1999, vol. 344, pp. 503–509.
5. Kleines, M., Elster, R., Rodrigo, M., et al., Isolation and Expression Analysis of Two Stressresponsive Sucrose-Synthase Genes from the Resurrection Plant Craterostigma plantagineum (Hochst.), Planta, 1999, vol. 209, pp. 13–24.
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