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伊卢米宁·L.:光在促进生长和次级代谢产物生产中的力量。

Illuminating L.: The Power of Light in Enhancing Growth and Secondary Metabolite Production.

作者信息

Ahsan S M, Injamum-Ul-Hoque Md, Shaffique Shifa, Ayoobi Akhtar, Rahman Md Atikur, Rahman Md Mezanur, Choi Hyong Woo

机构信息

Department of Plant Medicals, Andong National University, Andong 36729, Republic of Korea.

Department of Applied Biosciences, Kyungpook National University, Daegu 41566, Republic of Korea.

出版信息

Plants (Basel). 2024 Oct 3;13(19):2774. doi: 10.3390/plants13192774.

Abstract

Light is crucial for higher plants, driving photosynthesis and serving as a powerful sensory signal that profoundly modulates growth, development, physiological functions, hormone activation, and biochemical pathways. Various light parameters-quality, intensity, composition, and photoperiod-exert a tremendous influence on plant growth and development, particularly in industrial hemp ( L.). , a crop of historical significance and unparalleled versatility, holds immense value in the food, fiber, and medicinal industries. The cultivation of medicinal cannabis is burgeoning in controlled environments due to evolving healthcare regulations. Optimal light conditions significantly enhance both yield and harvest quality, notably increasing the density of apical inflorescences and the ratio of inflorescence to total aboveground biomass. metabolites, especially phenolic and terpene compounds and Phytocannabinoids like CBD (cannabidiol), THC (tetrahydrocannabinol), and CBG (cannabigerol), possess immense medicinal value. Secondary metabolites in predominantly accumulate in the trichomes of female flowers and surrounding sugar leaves, underscoring the critical need to boost inflorescence weight and metabolite concentrations while ensuring product consistency. Different light parameters distinctly impact 's metabolic profile, providing a robust foundation for understanding the optimal conditions for synthesizing specific secondary metabolites. While the effects of light measurement on various crops are well-established, scientific evidence specifically relating to light quality effects on morphology and secondary metabolite accumulation remains scarce. In this review, we critically summarized how different light properties can alter cannabis growth (vegetative and reproductive), physiology and metabolism. Furthermore, the mechanisms by which specific wavelengths influence growth, development, and secondary metabolite biosynthesis in are not fully elucidated, which could be a prospective task for future researchers. Our review paves the way for a profound understanding of light's influence on growth and advancements in greenhouse settings to maximize metabolite production for commercial use.

摘要

光对高等植物至关重要,它驱动光合作用,并作为一种强大的感官信号,深刻调节植物的生长、发育、生理功能、激素激活和生化途径。各种光参数——质量、强度、组成和光周期——对植物的生长和发育产生巨大影响,特别是对于工业大麻(Cannabis sativa L.)而言。工业大麻作为一种具有历史意义且用途广泛的作物,在食品、纤维和医药行业具有巨大价值。由于医疗法规的不断演变,药用大麻的种植在可控环境中蓬勃发展。最佳光照条件能显著提高产量和收获质量,尤其能增加顶端花序的密度以及花序与地上总生物量的比例。大麻的次生代谢产物,特别是酚类和萜类化合物以及诸如CBD(大麻二酚)、THC(四氢大麻酚)和CBG(大麻萜酚)等植物大麻素,具有巨大的药用价值。大麻中的次生代谢产物主要积累在雌花的腺毛和周围的糖叶中,这凸显了在确保产品一致性的同时提高花序重量和代谢产物浓度的迫切需求。不同的光参数对大麻的代谢谱有明显影响,为理解合成特定次生代谢产物的最佳条件提供了坚实基础。虽然光照测量对各种作物的影响已得到充分证实,但专门针对光质对大麻形态和次生代谢产物积累影响的科学证据仍然稀缺。在本综述中,我们批判性地总结了不同光特性如何改变大麻的生长(营养生长和生殖生长)、生理和代谢。此外,特定波长影响大麻生长、发育和次生代谢产物生物合成的机制尚未完全阐明,这可能是未来研究人员的一项前瞻性任务。我们的综述为深入理解光对大麻生长的影响以及温室环境中的进展铺平了道路,以最大限度地提高商业用途的代谢产物产量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ccce/11479007/28cda68aaa3d/plants-13-02774-g001.jpg

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