不同发光二极管和植物工厂系统紫外线照射下花椰菜生长及抗坏血酸含量

Sangmin Park, E. Cho, J. An, B. Yoon, K. Choi, E. Choi
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引用次数: 7

摘要

本研究旨在研究发光二极管(LED)和植物工厂紫外线(UVA)光对菠菜(Spinacia oleracea cv.)植株生长和抗坏血酸含量的影响。Shusiro)。移栽后在NFT(营养膜技术)系统中,在相同的光强(130 μmol·m·s)和光周期(16/8h =昼/夜)下,在荧光(FL,对照)、LED和UVA(蓝+UVA (BUV)、红+UVA (R:B(2:1)) +UVA (RBUV)、红+UVA (RUV)、白光LED (W)、红+蓝(R:B(2:1))、蓝(B)、红(R))下生长28 d。所有含R的光源(R、RB、RUV和RBUV)在移栽后21 d (DAT)均出现叶片膨大症状。与R处理相比,RUV处理显著降低了叶片长度和叶柄长度,增加了叶片宽度,降低了叶片形状指数。与b相比,低剂量处理显著增加了叶片长度和叶柄长度,增加了叶片数量。在低剂量处理下,叶片长度显著短于其他处理,而鲜重、干重和叶面积在低剂量处理和低剂量处理之间无显著差异。移栽后28 d, R、RUV和BUV处理的干重显著高于W和FL处理,BUV处理的叶面积显著高于W和FL处理。28日龄菠菜在B光照下抗坏血酸含量显著高于B光照,其次是BUV光照,FL光照和r光照均显著低于B光照。综合数据表明,BUV光照最适合植物工厂水培菠菜的生长和品质。附加关键词:叶长指数,叶形指数,比叶重
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Plant Growth and Ascorbic Acid Content of Spinacia oleracea Grown under Different Light-emitting Diodes and Ultraviolet Radiation Light of Plant Factory System
The study aimed to determine effects of light emitting diode (LED) and the ultraviolet radiation (UVA) light of plant factory on plant growth and ascorbic acid content of spinach (Spinacia oleracea cv. Shusiro). Plants were grown in a NFT (Nutrient Film Technique) system for 28 days after transplanting with fluorescent light (FL, control), LEDs and UVA (Blue+UVA (BUV), Red and Blue (R:B(2:1)) + UVA (RBUV), Red+UVA (RUV), White LED (W), Red and Blue (R:B(2:1)), Blue (B), Red (R)) under the same light intensity (130 μmol·m·s) and photoperiod (16/8h = day/night). All the light sources containing the R (R, RB, RUV, and RBUV) showed leaf epinasty symptom at 21 days after transplanting (DAT). Under the RUV treatment, the lengths of leaf and leaf petiole were significantly reduced and the leaf width was increased, lowering the leaf shape index, compared to the R treatment. Under the BUV, however, the lengths of leaf and leaf petiole were increased significantly, and the leaf number was increased compared to B. Under the RBUV treatment, the leaf length was significantly shorter than other treatments, while no significant difference between the RBUV and RB for the fresh and dry weights and leaf area. Dry weights at 28 days after transplanting were significantly higher in the R, RUV and BUV treatments than those in the W and FL. The leaf area was significantly higher under the BUV treatment. The ascorbic acid content of the 28 day-old spinach under the B was significantly higher, followed by the BUV, and significantly lower in FL and R. All the integrated data suggest that the BUV light seems to be the most suitable for growth and quality of hydroponically grown spinach in a plant factory. Additional key words: leaf epinasty index, leaf shape index, specific leaf weight
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