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Studies on the biosynthesis of tropane alkaloids in Datura stramonium L. transformed root cultures
Authors:Richard J Robins  Adrian J Parr  Nicholas J Walton
Institution:(1) Plant Biotechnology Group, Genetics and Microbiology Department, AFRC Institute of Food Research, Colney Lane, NR4 7UA Norwich, UK
Abstract:The relative contributions made by the l-arginine/agmatine/N-carbamoylputrescine/putrescine and the l-ornithine/putrescine pathways to hyoscyamine formation have been investigated in a transformed root culture of Datura stramonium. The activity of either arginine decarboxylase (EC 4.1.1.19) or ornithine decarboxylase (EC 4.1.1.17) was suppressed in vivo by using the specific irreversible inhibitors of these activities, dl-agr-difluoromethylarginine or dl-agr-difluoromethylornithine, respectively. It was found that suppression of arginine decarboxylase resulted in a severe decrease in free and conjugated putrescine and in the putrescine-derived intermediates of hyoscyamine biosynthesis. In contrast, the suppression of ornithine decarboxylase activity stimulated an elevation of arginine decarboxylase and minimal loss of metabolites from the amine and alkaloid pools. The stimulation of arginine decarboxylase was not, however, sufficient to maintain the same potential rate of putrescine biosynthesis as in control tissue. It is concluded that (i) in Datura the two routes by which putrescine may be formed do not act in isolation from one another, (ii) arginine decarboxylase is the more important activity for hyoscyamine formation, and (iii) the formation of polyamines is favoured over the biosynthesis of tropane alkaloids. An interaction between putrescine metabolism and other amines is also indicated from a stimulation of tyramine accumulation seen at high levels of dl-agr-difluoromethylornithine.Abbreviations ADC arginine decarboxylase - DFMA dl-agr-dif-luoromethylarginine - DFMO dl-agr-difluoromethylornithine - MPO N-methylputrescine oxidase - ODC ornithine decarboxylase - PMT putrescine N-methyltransferase We are indebted to Dr. E.W.H. Bohme of Merrell Dow Research Laboratories (Cincinnati, Ohio, USA) for kind gifts of DFMO and DFMA and to Dr. M.J.C. Rhodes for helpful advice and discussion.
Keywords:Datura (root  alkaloid)  Hyoscyamine  Putrescine  agr-Difluoromethylarginine" target="_blank">gif" alt="agr" align="BASELINE" BORDER="0">-Difluoromethylarginine  agr-Difluoromethy-lornithine" target="_blank">gif" alt="agr" align="BASELINE" BORDER="0">-Difluoromethy-lornithine  Arginine decarboxylase
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