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首页> 外文期刊>HortScience >Green-light supplementation for enhanced lettuce growth under red- and blue-light-emitting diodes.
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Green-light supplementation for enhanced lettuce growth under red- and blue-light-emitting diodes.

机译:绿光补充剂可增强红色和蓝色发光二极管下的生菜生长。

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摘要

Plants will be an important component of future long-term space missions. Lighting systems for growing plants will need to be lightweight, reliable, and durable, and light-emitting diodes (LEDs) have these characteristics. Previous studies demonstrated that the combination of red and blue light was an effective light source for several crops. Yet the appearance of plants under red and blue lighting is purplish grey, making visual assessment of any problems difficult. The addition of green light would make the plant leaves appear green and normal similar to a natural setting under white light and may also offer a psychological benefit to the crew. Green supplemental lighting could also offer benefits, since green light can better penetrate the plant canopy and potentially increase plant growth by increasing photosynthesis from the leaves in the lower canopy. In this study, four light sources were tested: (1) red and blue LEDs (RB), (2) red and blue LEDs with green fluorescent lamps (RGB), (3) green fluorescent lamps (GF), and (4) cool-white fluorescent lamps (CWF), that provided 0, 24, 86 and 51% of the total photosynthetic photon flux in the green region of the spectrum, respectively. The addition of 24% green light (500 to 600 nm) to red and blue LEDs (RGB treatment) enhanced plant (lettuce cv. Waldmann's Green) growth. The RGB plants produced more biomass than the plants grown under the cool-white fluorescent lamps (CWF treatment), a commonly tested light source used as a broad-spectrum control.
机译:植物将是未来长期太空任务的重要组成部分。用于生长中植物的照明系统将需要轻巧,可靠和耐用,并且发光二极管(LED)具有这些特性。先前的研究表明,红光和蓝光的组合是几种作物的有效光源。然而,在红色和蓝色灯光下的植物外观为紫灰色,因此很难通过视觉评估任何问题。添加绿光会使植物的叶子看起来绿色且正常,类似于白光下的自然环境,也可能给工作人员带来心理上的好处。绿色辅助照明也可以提供好处,因为绿光可以更好地穿透植物冠层并通过增加下部冠层叶片的光合作用来潜在地促进植物生长。在这项研究中,测试了四个光源:(1)红色和蓝色LED(RB),(2)带绿色荧光灯(RGB)的红色和蓝色LED,(3)绿色荧光灯(GF)和(4)冷白色荧光灯(CWF)在光谱的绿色区域分别提供了总光合光子通量的0%,24%,86%和51%。向红色和蓝色LED(RGB处理)添加24%的绿色光(500至600 nm)可增强植物的生长(莴苣比Waldmann绿色)。与在冷白荧光灯(CWF处理)下生长的植物相比,RGB植物产生的生物量更多。冷白荧光灯是经过广泛测试的广谱控制光源。

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