Dale R Gardner1, James A Pfister. 1. Poisonous Plant Research Laboratory, U.S. Department of Agriculture Agricultural Research Service, 1150 E. 1400 N., Logan, UT 84341, USA. dale.gardner@ars.usda.gov
Abstract
INTRODUCTION: The low larkspurs (Delphinium nuttallianum and D. andersonii) are two toxic plant species that are often fatally ingested by cattle on western USA rangelands. To assess the potential toxicity of the plants, methods are needed to identify and quantify the toxic N-methylsuccinimidoanthranoyllycacontine type alkaloids in the plant. OBJECTIVE: To compare normal-phase and reverse-phase HPLC-MS methods of analysis for detection and identification of toxic alkaloids in two species of toxic larkspur plants and to define the toxic alkaloids found in Delphinium nuttallianum and D. andersonii collected from several sites in the western USA. RESULTS: The major toxic alkaloids found in the low larkspurs included methyllycaconitine, nudicauline, 14-deacetylnudicauline and geyerline. Other toxic alkaloids detected at lower concentrations included 16-deacetylgeyerline, grandiflorine, bearline, 14-acetylbearline, barbinine, 16-demethylnudicauline and three additional isomers of bearline. Total toxic alkaloid concentrations ranged from 0.72 mg/g (d.w.) to 7.02 mg/g determined by reverse-phase HPLC-MS. CONCLUSION: The low larkspurs contain a number of toxic alkaloids in addition to the alkaloid methyllycaconitine that need to be assessed when considering the toxicity of the plant. Both normal-phase and reverse-phase HPLC methods are adequate to detect and quantify the alkaloids. The reverse-phase separation may be preferred due to readily available columns, reduced solvent use and simplicity of the electrospray ionisation source. Copyright (c) 2008 John Wiley & Sons, Ltd.
INTRODUCTION: The low larkspurs (Delphinium nuttallianum and D. andersonii) are two toxic plant species that are often fatally ingested by cattle on western USA rangelands. To assess the potential toxicity of the plants, methods are needed to identify and quantify the toxic N-methylsuccinimidoanthranoyllycacontine type alkaloids in the plant. OBJECTIVE: To compare normal-phase and reverse-phase HPLC-MS methods of analysis for detection and identification of toxic alkaloids in two species of toxic larkspur plants and to define the toxic alkaloids found in Delphinium nuttallianum and D. andersonii collected from several sites in the western USA. RESULTS: The major toxic alkaloids found in the low larkspurs included methyllycaconitine, nudicauline, 14-deacetylnudicauline and geyerline. Other toxic alkaloids detected at lower concentrations included 16-deacetylgeyerline, grandiflorine, bearline, 14-acetylbearline, barbinine, 16-demethylnudicauline and three additional isomers of bearline. Total toxic alkaloid concentrations ranged from 0.72 mg/g (d.w.) to 7.02 mg/g determined by reverse-phase HPLC-MS. CONCLUSION: The low larkspurs contain a number of toxic alkaloids in addition to the alkaloid methyllycaconitine that need to be assessed when considering the toxicity of the plant. Both normal-phase and reverse-phase HPLC methods are adequate to detect and quantify the alkaloids. The reverse-phase separation may be preferred due to readily available columns, reduced solvent use and simplicity of the electrospray ionisation source. Copyright (c) 2008 John Wiley & Sons, Ltd.
Authors: Benedict T Green; John W Keele; Dale R Gardner; Kevin D Welch; Gary L Bennett; Daniel Cook; James A Pfister; T Zane Davis; Clint A Stonecipher; Stephen T Lee; Bryan L Stegelmeier Journal: J Anim Sci Date: 2019-03-01 Impact factor: 3.159
Authors: Benedict T Green; Dale R Gardner; James A Pfister; Kevin D Welch; Gary L Bennett; Daniel Cook Journal: J Anim Sci Date: 2019-03-01 Impact factor: 3.159
Authors: Clinton A Stonecipher; Ben T Green; Kevin D Welch; Dale R Gardner; Scott A Fritz; Daniel Cook; James A Pfister Journal: J Anim Sci Date: 2022-05-01 Impact factor: 3.338
Authors: Kevin D Welch; Benedict T Green; Dale R Gardner; Clinton A Stonecipher; James A Pfister; Daniel Cook Journal: Toxins (Basel) Date: 2016-01-12 Impact factor: 4.546