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光合光子通量密度和营养液电导率对紫苏次生代谢产物生长和积累的影响

Growth and Accumulation of Secondary Metabolites in Perilla as Affected by Photosynthetic Photon Flux Density and Electrical Conductivity of the Nutrient Solution.

作者信息

Lu Na, Bernardo Emmanuel L, Tippayadarapanich Chayanit, Takagaki Michiko, Kagawa Natsuko, Yamori Wataru

机构信息

Center for Environment, Health and Field Sciences, Chiba UniversityKashiwa, Japan.

Masikhay MicroPlants NurseryLos Baños, Philippines.

出版信息

Front Plant Sci. 2017 May 4;8:708. doi: 10.3389/fpls.2017.00708. eCollection 2017.

Abstract

The global demand for medicinal plants is increasing. The quality of plants grown outdoors, however, is difficult to control. Myriad environmental factors influence plant growth and directly impact biosynthetic pathways, thus affecting the secondary metabolism of bioactive compounds. Plant factories use artificial lighting to increase the quality of medicinal plants and stabilize production. Photosynthetic photon flux density (PPFD) and electrical conductivity (EC) of nutrient solutions are two important factors that substantially influence perilla (, Labiatae) plant growth and quality. To identify suitable levels of PPFD and EC for perilla plants grown in a plant factory, the growth, photosynthesis, and accumulation of secondary metabolites in red and green perilla plants were measured at PPFD values of 100, 200, and 300 μmol m s in nutrient solutions with EC values of 1.0, 2.0, and 3.0 dS m. The results showed significant interactive effects between PPFD and EC for both the fresh and dry weights of green perilla, but not for red perilla. The fresh and dry weights of shoots and leafy areas were affected more by EC than by PPFD in green perilla, whereas they were affected more by PPFD than by EC in red perilla. Leaf net photosynthetic rates were increased as PPFD increased in both perilla varieties, regardless of EC. The perillaldehyde concentration (mg g) in red perilla was unaffected by the treatments, but accumulation in plants (mg per plant) was significantly enhanced as the weight of dry leaves increased. Perillaldehyde concentrations in green perilla showed significant differences between combinations of the highest PPFD with the highest EC and the lowest PPFD with the lowest EC. Rosmarinic acid concentration (mg g) was increased in a combination of low EC and high PPFD conditions. Optimal cultivation conditions of red and green perilla in plant factory will be discussed in terms of plant growth and contents of medicinal ingredients.

摘要

全球对药用植物的需求正在增加。然而,户外种植植物的质量难以控制。无数环境因素影响植物生长并直接影响生物合成途径,从而影响生物活性化合物的次生代谢。植物工厂利用人工照明来提高药用植物的质量并稳定生产。光合光子通量密度(PPFD)和营养液的电导率(EC)是两个极大影响紫苏(唇形科)植物生长和质量的重要因素。为了确定植物工厂中紫苏植物合适的PPFD和EC水平,在营养液EC值为1.0、2.0和3.0 dS m,PPFD值为100、200和300 μmol m² s² 的条件下,测量了红色和绿色紫苏植物的生长、光合作用以及次生代谢产物的积累。结果表明,PPFD和EC对绿色紫苏的鲜重和干重均有显著的交互作用,但对红色紫苏没有。在绿色紫苏中,茎和叶面积的鲜重和干重受EC的影响大于PPFD,而在红色紫苏中,它们受PPFD的影响大于EC。无论EC如何,两个紫苏品种的叶片净光合速率均随PPFD的增加而提高。红色紫苏中紫苏醛浓度(mg g)不受处理影响,但随着干叶重量增加,植物中紫苏醛的积累(mg/株)显著增强。绿色紫苏中紫苏醛浓度在最高PPFD与最高EC组合和最低PPFD与最低EC组合之间存在显著差异。在低EC和高PPFD条件组合下,迷迭香酸浓度(mg g)增加。将从植物生长和药用成分含量方面讨论植物工厂中红色和绿色紫苏的最佳栽培条件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/620d/5416839/6d0836a401de/fpls-08-00708-g001.jpg

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