Haplopappus gracilis cell strains resistant to pyrimidine analogues
Author:
Publisher
Springer Science and Business Media LLC
Subject
Genetics,Agronomy and Crop Science,General Medicine,Biotechnology
Link
http://link.springer.com/content/pdf/10.1007/BF00265474.pdf
Reference28 articles.
1. Bressan, R.A.; Murray, M.G.; Gale, J.M.; Ross, C.W.: Properties of pea seedling uracil phosphoribosyltransferase and its distribution in other plants. Plant Physiol. 61, 442?446 (1978)
2. Bright, S.W.J.; Northcote, D.H.: Protoplast regeneration from normal and bromodeoxyuridine-resistant sycamore callus. J. Cell Sci. 16, 445?463 (1974)
3. Bright, S.W.J.; Northcote, D.H.: A deficiency of hypoxanthine phosphoribosyltransferase in a sycamore callus resistant to azaguanine. Planta 123, 79?89 (1975)
4. Cox, B.J.; Turnock, G.; Street, H.E.: Studies on the growth in culture of plant cells. XV. Uptake and utilization of uridine during the growth of Acer pseudoplatanus L. cells in suspension culture. J. Exp. Bot. 24, 159?174 (1973)
5. Eriksson, T.: Studies on the growth requirements and growth measurements of cell cultures of Haplopappus gracilis. Physiol. Plant. 18, 976?993 (1965)
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2. Inhibition of de Novo Pyrimidine Synthesis in Growing Potato Tubers Leads to a Compensatory Stimulation of the Pyrimidine Salvage Pathway and a Subsequent Increase in Biosynthetic Performance;The Plant Cell;2005-06-10
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