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Tomato seedling physiological responses under different percentages of blue and red photon flux ratios using LEDs and cool white fluorescent lamps

机译:LED和冷白色荧光灯在不同百分比的蓝色和红色光子通量比下番茄幼苗的生理反应

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Lamp spectral customization can be a strategy to achieve desirable plant characteristics when plants are grown under sole-source electric lighting. Vegetable transplants can be efficiently and economically grown under indoor-production systems with electrical lighting; however, species-specific light recipes have to be developed to improve plant growth, development and morphology, as well as to reduce electrical consumption. The objective of this study was to evaluate the growth and morphology of tomato transplants to a broad range of blue to red (B:R) photon flux (PF) ratios under LEDs and cool white fluorescent lamps (CWF). Tomato 'Komeett' and 'Beaufort' seedlings were grown in a climate control growth chamber. Using LEDs, seven light treatments with different blue (B), green (G) and red (R) PF ratios were used: 100R, 10B:90R, 20B:28G:52R, 30B:70R, 50B:50R, 75B:25R and 100B. In addition, a CWF treatment served as the control. Hypocotyl length of 'Komeett' decreased with the increase of percent B PF up to 75% B. Plant leaf area was 64-72% greater under treatments emitting both B and R PF than in the 100 B and 100 R treatments. Similarly, tomato 'Komeett' fresh mass, dry mass, leaf number and chlorophyll concentration was comparable among the treatments containing B and R PF and greater than in 100 B and 100 R treatments. However, plant compactness in the 30B:70R treatment was 42% greater than in the 10B:90R treatment. Anthocyanin concentration increased with the increase of percent B PF up to 75% B. Also, plants in 30B:70R and 50B:50R had 39% and 36% greater dry mass than in CWF, respectively. In addition, 30B:70R and 50B:50R LEDs had 172% greater growing efficacy (g kWh(-1)) than high output fluorescent lamps. The addition of G light did not have any effects on tomato physiological responses. `Beaufort' plant morphology and growth were severely affected by intumescences development and intumescence severity decreased under higher percentages of B PF. In summary, 30B:70R, 50B:50R were the best spectrums to produce tomato seedlings under LEDs tested here; however, plant quality under CWF, 10B:90R, 20B:28G:52R, and 75B:25R was also acceptable. Published by Elsevier B.V.
机译:当植物在单一源电照明下生长时,灯光谱定制可以是实现所需植物特性的策略。在带有电子照明的室内生产系统下,可以高效,经济地种植蔬菜移栽;但是,必须开发特定物种的光配方,以改善植物的生长,发育和形态,并减少电耗。这项研究的目的是评估在LED和冷白色荧光灯(CWF)下,番茄移植物在各种蓝色至红色(B:R)光子通量(PF)比范围内的生长和形态。番茄'Komeett'和'Beaufort'幼苗在气候控制生长室内生长。使用LED,使用了不同的蓝色(B),绿色(G)和红色(R)PF比的七种光处理:100R,10B:90R,20B:28G:52R,30B:70R,50B:50R,75B:25R和100B。另外,CWF处理用作对照。 “ Komeett”的下胚轴长度随B PF百分比的增加而降低,直至B达到75%。与同时施用100 B和100 R的处理相比,在同时排放B和R PF的处理下,植物叶片面积增加了64-72%。同样,番茄'Komeett'的新鲜质量,干质量,叶数和叶绿素浓度在含B和R PF的处理中相当,并且大于100 B和100 R的处理。但是,在30B:70R处理中植物的紧密度比在10B:90R处理中植物高42%。花青素浓度随着B PF百分比的增加而增加,直至B达到75%。此外,在30B:70R和50B:50R中的植物的干质量分别比在CWF中大39%和36%。此外,30B:70R和50B:50R LED的生长效率(g kWh(-1))比高输出荧光灯高172%。 G光的添加对番茄的生理反应没有任何影响。 'Beaufort'植物的形态和生长受到膨胀发育的严重影响,而在较高的B PF含量下,膨胀强度降低。总之,在这里测试的LED下,30B:70R,50B:50R是产生番茄幼苗的最佳光谱。但是,在CWF,10B:90R,20B:28G:52R和75B:25R下的工厂质量也是可以接受的。由Elsevier B.V.发布

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