Author:
Crozier A.,Turnbull C. G. N.,Malcolm J. M.,Graebe J. E.
Reference29 articles.
1. Graebe JE, Hedden P, Gaskin P, et al. Biosynthesis of gibberellins A12, A15, A24, A36 and A37 by a cell-free system from Cucurbita maxima. Phytochemistry. 1974; 13:1433–1400.
2. Graebe JE, Hedden P, Gaskin et al. The biosynthesis of a C19-gibberellin from mevalonic acid in a cell-free system from a higher plant. Planta. 1974;120:307-309.
3. Hedden P, Graebe JE, Beale MH, et al. The biosynthesis of 12α-hydroxylated gibberellins in a cell-free system from Cucurbita maxima endosperm. Phytochemistry. 1984; 23:569–574.
4. Kamiya Y, Graebe JE. The biosynthesis of all major pea gibberellins in a cell-free system from Pisum sativum. Phytochemistry. 1983; 22:681–689.
5. Sponsel VM. In vitro gibberellin metabolism in higher plants. In: Crozier A, ed. The biochemistry and physiology of gibberellins, Vol. 1. New York: Praeger, 1983: p. 151–250.
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