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Impact of N P K and Humic Acid Supplementation on the Chemical Profile of Medical Cannabis (Cannabis sativa L)

机译:补充氮磷钾和腐殖酸对医用大麻化学特性的影响

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摘要

Mineral nutrition is a major factor affecting plant growth and function. Increasing evidence supports the involvement of macro and micronutrients in secondary metabolism. The use of the appropriate nutritional measures including organic fertilizers, supplements, and biostimulants is therefore a vital aspect of medicinal plant production including medical cannabis. Due to legal restriction on cannabis research, very little information is available concerning the effects of nutritional supplements on physiological and chemical properties of medical cannabis, and their potential role in standardization of the active compounds in the plant material supplied to patients. This study therefore evaluated the potential of nutritional supplementations, including humic acids (HAs) and inorganic N, P, and K to affect the cannabinoid profile throughout the plant. The plants were exposed to three enhanced nutrition treatments, compared to a commercial control treatment. The nutrition treatments were supplemented with HA, enhanced P fertilization, or enhanced NPK. The results demonstrate sensitivity of cannabinoids metabolism to mineral nutrition. The nutritional supplements affected cannabinoid content in the plants differently. These effects were location and organ specific, and varied between cannabinoids. While the P enhancement treatment did not affect THC, CBD, CBN, and CBG concentrations in the flowers from the top of the plants, a 16% reduction of THC concentration was observed in the inflorescence leaves. Enhanced NPK and HA treatments also produced organ-specific and spatially specific responses in the plant. NPK supplementation increased CBG levels in flowers by 71%, and lowered CBN levels in both flowers and inflorescence leaves by 38 and 36%, respectively. HA was found to reduce the natural spatial variability of all of the cannabinoids studied. However, the increased uniformity came at the expense of the higher levels of cannabinoids at the top of the plants, THC and CBD were reduced by 37 and 39%, respectively. Changes in mineral composition were observed in specific areas of the plants. The results demonstrate that nutritional supplements influence cannabinoid content in cannabis in an organ- and spatial-dependent manner. Most importantly, the results confirm the potential of environmental factors to regulate concentrations of individual cannabinoids in medical cannabis. The identified effects of nutrient supplementation can be further developed for chemical control and standardization in cannabis.
机译:矿物质营养是影响植物生长和功能的主要因素。越来越多的证据支持大量和微量营养素参与次级代谢。因此,使用适当的营养措施,包括有机肥料,补品和生物刺激剂,是药用植物(包括医用大麻)生产的重要方面。由于大麻研究的法律限制,关于营养补充剂对医用大麻的生理和化学特性的影响及其在标准化提供给患者的植物材料中活性化合物的潜在作用方面的信息很少。因此,这项研究评估了包括腐殖酸(HAs)和无机N,P和K在内的营养补充剂对整个植物中大麻素分布的影响。与商业对照处理相比,将植物暴露于三种强化营养处理。营养治疗还补充有HA,增强的磷肥或增强的NPK。结果证明了大麻素代谢对矿物质营养的敏感性。营养补充剂对植物中大麻素含量的影响不同。这些效应是位置和器官特异性的,并且在大麻素之间变化。虽然磷强化处理不会影响植物顶部花朵中的THC,CBD,CBN和CBG浓度,但在花序叶中却观察到THC浓度降低了16%。增强的NPK和HA处理还可以在植物中产生器官特异性和空间特异性应答。补充氮磷钾可将花朵中的CBG水平提高71%,将花朵和花序叶中的CBN水平分别降低38%和36%。人们发现,HA可以降低所有研究大麻素的自然空间变异性。但是,增加的均匀性是以植物顶部较高水平的大麻素为代价的,THC和CBD分别降低了37%和39%。在植物的特定区域观察到矿物质组成的变化。结果表明,营养补品以器官和空间依赖性方式影响大麻中大麻素的含量。最重要的是,结果证实了环境因素调节医用大麻中单个大麻素浓度的潜力。可以进一步开发出已确定的营养补充作用,以进行大麻的化学控制和标准化。

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