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Light spectrum affects growth and gas exchange of common dandelion and purple coneflower seedlings

机译:光谱影响普通蒲公英和紫色锥花幼苗的生长和气体交换

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摘要

Artificial light, supplied by fluorescent lamps, has been effectively utilized in controlled- environment chambers for horticulture and floriculture nursery. This experiment aimed at investigating whether light-emitting diodes (LEDs) have the same effectiveness on plant morphology, photosynthetic and physiological responses as FLUORA lamps. Seedlings of common dandelion (Taraxacum officinale) and purple coneflower (Echinacea purpurea), species of high interest for their nutraceutical properties, were grown in controlled-environment chambers for 50 days under LED and FLUORA light sources as sole-source lighting systems, and the effects of artificial light supplies on plant photosynthetic performance and chlorophyll content (SPAD) were evaluated. The results were compared to plants grown under natural sunlight. In both species, total chlorophyll content (SPAD) values decreased for plants under sunlight, and for those grown under FLUORA lighting throughout the experimental period, while the values measured for plants grown under LEDs maintained a relatively constant value. At the end of the experiment, plant dry matter in both species was significantly lower under LEDs and FLUORA lighting, than the plants exposed to solar light. The two species showed different gas exchange dynamics under LEDs and FLUORA lighting, and photosynthetic performance decreasing after 10 days of light treatment compared to plants under sunlight. The results demonstrated that for common dandelion and purple coneflower photosynthetic processes are often modified when the species are cultivated under these artificial lighting and in controlled- environment chambers, because lamps do not able to generate the same spectrum and energy of sunlight.
机译:由荧光灯提供的人造光已被有效地用于园艺和花卉苗圃的受控环境室中。该实验旨在研究发光二极管(LED)在植物形态,光合和生理响应方面是否具有与FLUORA灯相同的功效。常见的蒲公英(蒲公英蒲公英)和紫色锥花(紫锥菊)的营养价值很高的树种在LED和FLUORA光源作为唯一光源的照明系统下,在受控环境室内生长了50天。评估了人工光源对植物光合性能和叶绿素含量(SPAD)的影响。将结果与在自然阳光下生长的植物进行比较。在这两个物种中,在整个实验期间,在阳光下的植物和在FLUORA光照下生长的植物的总叶绿素含量(SPAD)值均降低,而在LED下生长的植物的测量值保持相对恒定。在实验结束时,在LED和FLUORA照明下,两个物种的植物干物质均显着低于暴露于太阳光下的植物。与在阳光下的植物相比,在LED和FLUORA照明下,这两个物种表现出不同的气体交换动力学,经过10天的光处理后,其光合性能下降。结果表明,对于普通的蒲公英和紫色锥花,在该种人工照明和可控环境室内培育该物种时,由于其不能产生相同的光谱和能量,因此光合过程通常会发生变化。

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