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密度过高还是不过高:较高的种植密度会降低药用型医用大麻中大麻素的均匀性,但会增加单位面积产量。

Too Dense or Not Too Dense: Higher Planting Density Reduces Cannabinoid Uniformity but Increases Yield/Area in Drug-Type Medical Cannabis.

作者信息

Danziger Nadav, Bernstein Nirit

机构信息

Institute of Soil Water and Environmental Sciences, Volcani Center, Rishon LeZion, Israel.

出版信息

Front Plant Sci. 2022 Sep 29;13:713481. doi: 10.3389/fpls.2022.713481. eCollection 2022.

Abstract

A major challenge for utilizing cannabis for modern medicine is the spatial variability of cannabinoids in the plant, which entail differences in medical potency. Since secondary metabolism is affected by environmental conditions, a key trigger for the variability in secondary metabolites throughout the plant is variation in local micro-climates. We have, therefore, hypothesized that plant density, which is well-known to alter micro-climate in the canopy, affects spatial standardization, and concentrations of cannabinoids in cannabis plants. Canopy density is affected by shoot architecture and by plant spacing, and we have therefore evaluated the interplay between plant architecture and plant density on the standardization of the cannabinoid profile in the plant. Four plant architecture modulation treatments were employed on a drug-type medicinal cannabis cultivar, under a density of 1 or 2 plants/m. The plants were cultivated in a naturally lit greenhouse with photoperiodic light supplementation. Analysis of cannabinoid concentrations at five locations throughout the plant was used to evaluate treatment effects on chemical uniformity. The results revealed an effect of plant density on cannabinoid standardization, as well as an interaction between plant density and plant architecture on the standardization of cannabinoids, thus supporting the hypothesis. Increasing planting density from 1 to 2 plants/m reduced inflorescence yield/plant, but increased yield quantity per area by 28-44% in most plant architecture treatments. The chemical response to plant density and architecture modulation was cannabinoid-specific. Concentrations of cannabinoids in axillary inflorescences from the bottom of the plants were up to 90% lower than in the apical inflorescence at the top of the plant, considerably reducing plant uniformity. Concentrations of all detected cannabinoids in these inflorescences were lower at the higher density plants; however, cannabinoid yield per cultivation area was not affected by neither architecture nor density treatments. Cannabigerolic acid (CBGA) was the cannabinoid least affected by spatial location in the plant. The morpho-physiological response of the plants to high density involved enhanced leaf drying at the bottom of the plants, increased plant elongation, and reduced cannabinoid concentrations, suggesting an involvement of chronic light deprivation at the bottom of the plants. Therefore, most importantly, under high density growth, architectural modulating treatments that facilitate increased light penetration to the bottom of the plant such as "Defoliation", or that eliminated inflorescences development at the bottom of the plant such as removal of branches from the lower parts of the plant, increased chemical standardization. This study revealed the importance of plant density and architecture for chemical quality and standardization in drug-type medical cannabis.

摘要

将大麻用于现代医学的一个主要挑战是植物中大麻素的空间变异性,这导致了医学效力的差异。由于次生代谢受环境条件影响,整株植物中次生代谢产物变异性的一个关键触发因素是局部微气候的变化。因此,我们推测,众所周知会改变冠层微气候的种植密度会影响大麻植物中大麻素的空间标准化和浓度。冠层密度受枝条结构和植株间距影响,因此我们评估了植株结构与种植密度之间的相互作用对植物中大麻素谱标准化的影响。在1或2株/m²的种植密度下,对一个药用型大麻品种采用了四种植株结构调节处理。植株在自然光照的温室中种植,并补充光周期光照。通过分析植株五个位置的大麻素浓度来评估处理对化学均匀性的影响。结果揭示了种植密度对大麻素标准化的影响,以及种植密度与植株结构在大麻素标准化方面的相互作用,从而支持了这一假设。将种植密度从1株/m²增加到2株/m²会降低单株花序产量,但在大多数植株结构处理中,单位面积产量提高了28 - 44%。对种植密度和结构调节的化学响应具有大麻素特异性。植株底部腋生花序中的大麻素浓度比植株顶部的顶生花序低90%,大大降低了植株的均匀性。在高密度植株中,这些花序中所有检测到的大麻素浓度都较低;然而,单位种植面积的大麻素产量不受结构或密度处理的影响。大麻二萜酸(CBGA)是受植物空间位置影响最小的大麻素。植株对高密度的形态生理反应包括植株底部叶片干燥加剧、植株伸长增加以及大麻素浓度降低,这表明植株底部长期光照不足。因此,最重要的是,在高密度生长条件下,促进光线穿透到植株底部的结构调节处理,如“去叶”,或消除植株底部花序发育的处理,如去除植株下部的枝条,可提高化学标准化程度。这项研究揭示了种植密度和植株结构对药用型医用大麻化学品质和标准化的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3f98/9559401/bb5ef3147725/fpls-13-713481-g0001.jpg

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