Plant Physiol.
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Plant Physiology 82:795-800 (1986)
© 1986 American Society of Plant Biologists

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Articles

Distribution and Metabolism of sym-Homospermidine and Canavalmine in the Sword Bean Canavalia gladiata cv Shironata

Shinsuke Fujihara, Toshikatsu Nakashima, Yutaka Kurogochi and Masuro Yamaguchi

Department of Pharmacology, Nara Medical University, Kashihara 634, Japan, Department of Agricultural Chemistry, College of Agriculture, University of Osaka Prefecture, Sakai 591, Japan

The unusual polyamines, sym-homospermidine (homoSPD) and canavalmine (CAN), were found in the seed of Canavalia species such as C. gladiata, C. ensiformis, and C. brasilensis, but not in those of other leguminous crops. To examine the distribution and metabolism of homoSPD and CAN in sword bean, C. gladiata cv Shironata, polyamine analysis was carried out throughout the life cycle of this plant. During seed germination, putrescine (PUT), spermidine (SPD), and spermine (SPM) were accumulated in the radicle and hypocotyl. HomoSPD and CAN were, however, maintained at very low levels over a 6-day period of germination. In nodulated sword bean plants, a large quantity of homoSPD was found in the root nodule. CAN was detected exclusively in the senescent nodule at very low concentrations. These polyamines were not detected in any other organs including root, stem, leaf, vine, flower, and pod, while PUT, SPD, and SPM were always found in those organs. As plants reached the reproductive stage, homoSPD and CAN appeared in the immature seed and their concentrations increased as seed formation progressed. By contrast, the level of SPM continuously decreased during seed development. In developing seeds, considerable accumulation of canavanine, an analog of arginine, which is a precursor in polyamine biosynthesis, was also observed.





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J. Biol. Chem.Home page
D. Ober, R. Harms, L. Witte, and T. Hartmann
Molecular Evolution by Change of Function. ALKALOID-SPECIFIC HOMOSPERMIDINE SYNTHASE RETAINED ALL PROPERTIES OF DEOXYHYPUSINE SYNTHASE EXCEPT BINDING THE eIF5A PRECURSOR PROTEIN
J. Biol. Chem., April 4, 2003; 278(15): 12805 - 12812.
[Abstract] [Full Text] [PDF]




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Copyright © 1986 by the American Society of Plant Biologists