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Growth of red pak choi under red and blue, supplemented white, and artificial sunlight provided by LEDs

机译:红色和蓝色,补充白色的红色博士的生长和LED提供的人工阳光

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To explore lighting strategies for crop production in space, we investigated the impacts of light spectrum on morphology, biomass, and phytonutrients of red pak choi (Brassica rapa var. chinensis, 'Ruin F-1') over a 28-day cycle. Light treatments were white light-emitting diodes (WLEDs) as a control, W + red (WR), W + green switched to red at 21 days (WG-R), W + far-red (WFR), red and blue (RB), and an LED-based artificial sunlight research module (ASRM). The photosynthetic photon flux density (PPFD) was maintained near 180 mu mol m(-2).s(-1) for all light treatments. Our results indicated that red pak choi grown under a narrow spectrum of RB light was most suitable for leaf expansion, biomass yield, and relative anthocyanin accumulation. The various broad-spectrum WLED treatments reduced yield, leaf area, and anthocyanin content. Supplemental G and FR augmented the reduction of growth and phytonutrients, however chlorophyll and anthocyanin levels recovered to levels comparable to the control within 7 days of switching WG to WR. The ASRM was used to assess direct sunlight as an alternative lighting option for plant growth in space. ASRM increased overall yield and specific leaf weight compared to WLED and supplemental treatments, and was similar to plants grown under RB in terms of fresh/dry weight, but lower in phytonutrients. Our results suggest both narrow and broad-band light sources can be used to manipulate morphology, phytonutrients, and partitioning of biomass in red pak choi.
机译:为了探索空间中作物生产的照明策略,我们调查了光谱对红PAK CHOI(Brassica Rapa Var。的植物营养素的影响(Brassica Rapa Var。Chinensis,'Ruin F-1')。光处理是白色发光二极管(WLED),作为对照,W +红色(WR),W +绿色在21天(WG-R),W +远红色(WFR),红色和蓝色( RB)和基于LED的人工阳光研究模块(ASRM)。光合光子通量密度(PPFD)保持在180μmmm(-2)附近。(-1),适用于所有光处理。我们的结果表明,在窄谱的RB光线下种植的​​红PAK CHOI最适合叶片膨胀,生物质产量和相对花青素积累。各种广谱潮治疗降低产率,叶面积和花青素含量。补充G和Fr增强了生长和植物营养素的减少,但叶绿素和花青素水平回收到与WG转换为WR的7天内对照的水平。 ASRM用于评估阳光直射作为空间植物生长的替代照明选择。与WLED和补充治疗相比,ASRM增加了总产率和特异性叶重量,并且与在新鲜/干重方面的RB下的植物类似,但在植物营养素中降低。我们的结果表明,狭窄和宽带光源都可用于操纵形态,植物营养素和生物质的划分在红色的Pak Choi中。

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