Alkaloid Levels in Reed Canarygrass Grown on Wet Meadows in British Columbia

Abstract

Hordenine, gramine, and 5-methoxy-N-methyltryptamine (5MMT) were identified as the major basic alkaloids in reed canarygrass grown on wet meadows in Interior British Columbia. The concentrations of these anti-quality constituents, determined sequentially at four field locations, were exceptionally low compared with levels found for reed canarygrass grown under growth room conditions. Under field conditions, for example, 5MMT levels did not exceed 250 micrograms/gram (dry wt), whereas a peak level of 4,250 micrograms/gram 5MMT was recorded from the growth room. Depressed alkaloid levels under wet meadow field conditions were observed in all varieties tested including two experimental varieties, one registered variety, and a commercial type. Low alkaloid levels on wet meadows appeared to coincide with fewer types of alkaloids: 5-methoxy-N, N-dimethyltryptamine (5DMT) was not detected under field conditions but it was present in all reed canarygrass samples analyzed from the growth room. Field applications of fertilizer (NPK) appeared to have marginal effects on alkaloid levels. On wet meadows the trends indicated that gramine and 5MMT concentrations increased toward the end of the growing season, but low total alkaloid levels were still maintained. The factor of soil moisture stress is reviewed in relation to alkaloid levels in reed canarygrass. Recently developed thin layer chromatography (TLC) scanning procedures were used to determine concentrations of gramine and 5MMT. New TLC fluorescence methods were devised for the quantitative determination of hordenine and 5DMT in reed canarygrass.This material was digitized as part of a cooperative project between the Society for Range Management and the University of Arizona Libraries.The Journal of Range Management archives are made available by the Society for Range Management and the University of Arizona Libraries. Contact [email protected] for further information.Migrated from OJS platform August 202

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