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大麻嫁接 - 砧木对接穗营养和生殖指标的影响。

Grafting of Cannabis - The effect of the rootstock on vegetative and reproductive indices of the scion.

机构信息

RCK Science-based Cannabis Genetics, Ruhama 7918000, Israel.

RCK Science-based Cannabis Genetics, Ruhama 7918000, Israel.

出版信息

Plant Sci. 2024 Nov;348:112210. doi: 10.1016/j.plantsci.2024.112210. Epub 2024 Aug 2.

Abstract

Among the commercial cannabis varieties, some are high yielders but characterized by a relatively poor root system. Roots absorb water and minerals from the soil, enabling vegetative development that directly affects yield, as vigorous plants have more resources to support reproduction. Moreover, healthy foliage is a primary key to high assimilation rates, leading to better production of photosynthetic products, including cannabinoids and terpenes, which are the main active components of cannabis. We grafted a high-THC variety, named 'Freud Super-Ego' (FSE) onto three chemotypes of rootstocks: high-THC (T), high-CBD (C), and Balanced (B). All the rootstocks had significantly greater root biomass compared to FSE. All the grafting treatments significantly improved FSE's vegetative indices and yield. The best overall vegetative performance - height, stem circumference, number of mature leaves - was that of plants grafted onto the Balanced and high-CBD rootstocks, resulting in high yields as well. However, the greatest number of inflorescences was counted when FSE was grafted onto a high-THC rootstock. According to leaf mineral content analysis, the highest nitrogen and phosphorus levels were found in leaves of FSE grafted on the balanced rootstock. The cannabinoid content profile analysis revealed that all grafting treatments raised the THC level in FSE's inflorescences by 8-12 % in comparison to the non-grafted control, and the THC rootstock led to the highest THC level. The results indicate the importance of grafting in cannabis as a tool to increase the productivity and quality of the product.

摘要

在商业大麻品种中,有些品种产量高,但根系相对较差。根系从土壤中吸收水分和矿物质,促进营养生长,从而直接影响产量,因为健壮的植物有更多的资源来支持繁殖。此外,健康的叶片是高同化率的主要关键,从而导致更好地生产光合作用产物,包括大麻素和萜烯,它们是大麻的主要活性成分。我们将一种高 THC 品种,命名为“弗洛伊德超级自我”(FSE)嫁接到三种砧木的化学型上:高 THC(T)、高 CBD(C)和平衡(B)。与 FSE 相比,所有砧木的根生物量都显著增加。所有嫁接处理都显著改善了 FSE 的营养生长指数和产量。嫁接在平衡和高 CBD 砧木上的植物具有最佳的整体营养生长性能-高度、茎围、成熟叶片数-,从而也获得了高产。然而,当 FSE 嫁接到高 THC 砧木上时,计数到的花序数量最多。根据叶片矿物质含量分析,在接穗在平衡砧木上的 FSE 叶片中发现了最高的氮和磷水平。大麻素含量分析表明,与未嫁接对照相比,所有嫁接处理都将 FSE 花序中的 THC 水平提高了 8-12%,而 THC 砧木导致了最高的 THC 水平。结果表明,嫁接在大麻中是提高产品生产力和质量的重要工具。

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