<p>Light spectrum plays a crucial role in regulating the growth of hemp (<i>Cannabis sativa</i> L.) plants and the biosynthesis of secondary metabolites. Several studies have demonstrated that additional red-light exposure increases biomass accumulation, while supplementary UV-A light stimulates cannabinoid synthesis. Nevertheless, the potential of stage-specific supplementation of red and UV-A light remains underexplored in its capacity to optimize cannabinoid yield in indoor hemp cultivation. In the present study, the effect of red light in combination with UV-A light on hemp biomass and cannabinoid accumulation was investigated using a high-CBD strain. There were four treatments: (1) white light throughout the growth period (control; V<sub>W</sub>R<sub>W</sub>); (2) red light supplementation during the vegetative stage (V<sub>WR</sub>R<sub>W</sub>); (3) UV-A supplementation (V<sub>W</sub>R<sub>WUV</sub>) during the flowering stage; and (4) combined red and UV-A supplementation (V<sub>WR</sub>R<sub>WUV</sub>) during the vegetative and flowering stages. Results showed that V<sub>WR</sub>R<sub>W</sub> promoted the number of effective branches (increased by 18.0%) compared to the control (V<sub>W</sub>R<sub>W</sub>), resulting in an increase in inflorescence yield by 17.9%. V<sub>W</sub>R<sub>WUV</sub> increased CBG and CBD content by 52.7% and 12.1%, respectively, relative to the control. The effect of V<sub>WR</sub>R<sub>WUV</sub> on biomass and cannabinoid accumulation was the strongest among the treatments, with CBG and CBD yields reaching 0.53&#xa0;g and 4.62&#xa0;g per plant, representing significant increase of 91.8% (<i>p</i> &lt; 0.01) and 44.1% (<i>p</i> &lt; 0.01), respectively, compared to the control. However, there were no significant differences in CBD yield among the V<sub>WR</sub>R<sub>W</sub>, V<sub>W</sub>R<sub>WUV</sub> and V<sub>WR</sub>R<sub>WUV</sub> treatments, indicating that the combined supplementation of red and UV-A light did not have an additive effect on CBD accumulation. These findings highlight the potential of stage-specific spectral strategy to optimize both plant growth and phytochemical quantity.</p>

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Combination of red and UV-A light enhances hemp (Cannabis sativa L.) inflorescence yield and cannabinoid content

  • Qi Zheng,
  • Xinyan He,
  • Wenjing Ouyang,
  • Ke Li,
  • Yangfeng Rang,
  • Qiuyun Xiao,
  • Guanghui Du,
  • Xianmin Chen,
  • Yuanyuan Liu,
  • Kailei Tang

摘要

Light spectrum plays a crucial role in regulating the growth of hemp (Cannabis sativa L.) plants and the biosynthesis of secondary metabolites. Several studies have demonstrated that additional red-light exposure increases biomass accumulation, while supplementary UV-A light stimulates cannabinoid synthesis. Nevertheless, the potential of stage-specific supplementation of red and UV-A light remains underexplored in its capacity to optimize cannabinoid yield in indoor hemp cultivation. In the present study, the effect of red light in combination with UV-A light on hemp biomass and cannabinoid accumulation was investigated using a high-CBD strain. There were four treatments: (1) white light throughout the growth period (control; VWRW); (2) red light supplementation during the vegetative stage (VWRRW); (3) UV-A supplementation (VWRWUV) during the flowering stage; and (4) combined red and UV-A supplementation (VWRRWUV) during the vegetative and flowering stages. Results showed that VWRRW promoted the number of effective branches (increased by 18.0%) compared to the control (VWRW), resulting in an increase in inflorescence yield by 17.9%. VWRWUV increased CBG and CBD content by 52.7% and 12.1%, respectively, relative to the control. The effect of VWRRWUV on biomass and cannabinoid accumulation was the strongest among the treatments, with CBG and CBD yields reaching 0.53 g and 4.62 g per plant, representing significant increase of 91.8% (p < 0.01) and 44.1% (p < 0.01), respectively, compared to the control. However, there were no significant differences in CBD yield among the VWRRW, VWRWUV and VWRRWUV treatments, indicating that the combined supplementation of red and UV-A light did not have an additive effect on CBD accumulation. These findings highlight the potential of stage-specific spectral strategy to optimize both plant growth and phytochemical quantity.