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Copper Stimulation of Tetrahydrocannabinol and Cannabidiol Production in Hemp (<i>Cannabis sativa</i> L.) Is Copper-Type, Dose, and Cultivar Dependent

Meghan S. Cahill, Terri Arsenault, Trung Huu Bui, Nubia Zuverza‐Mena, Anuja Bharadwaj, Kitty Prapayotin-Riveros, Jason C. White, Christian O. Dimkpa

2024Journal of Agricultural and Food Chemistry12 citationsDOI

Abstract

L.), tetrahydrocannabinol (THC) and cannabidiol (CBD). This study investigated the impact of Cu on the levels of these cannabinoids in two hemp cultivars, Wife and Merlot, under field conditions, as a function of harvest time (August-September), Cu type (nano, bulk, or ionic), and dose (50, 100, and 500 ppm). In Wife, Cu caused significant temporal increases in THC and CBD production during plant growth, reaching increases of 33% and 31% for THC and 51% and 16.5% for CBD by harvests 3 and 4, respectively. CuO nanoparticles at 50 and 100 ppm significantly increased THC and CBD levels, compared to the control, respectively, by 18% and 27% for THC and 19.9% and 33.6% for CBD. These nanospecific increases coincided with significantly more Cu in the inflorescences (buds) than in the control and bulk CuO treatments. Contrarily, no temporal induction of the cannabinoids by Cu was noticed in Merlot, suggesting a cultivar-specific response to Cu. However, overall, in Merlot, Cu ions, but not particulate Cu, induced THC and CBD levels by 27% and 36%, respectively, compared to the control. Collectively, our findings provide information with contrasting implications in the production of these cannabinoids, where, dependent on the cultivar, metabolite levels may rise above the 0.3% regulatory threshold for THC but to a more profitable level for CBD. Further investigations with a wider range of hemp cultivars, CuO nanoparticle (NP) doses, and harvest times would clarify the significance and broader implications of the findings.

Topics & Concepts

CannabidiolCultivarCannabis sativaChemistryCopperMetaboliteCannabisHorticultureTetrahydrocannabinolCannabinolCannabinoidBiologyMedicineBiochemistryReceptorPsychiatryOrganic chemistryPlant responses to water stressPlant Genetic and Mutation StudiesSeed Germination and Physiology