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A strategic approach for investigating light recipes for 'Outredgeous' red romaine lettuce using white and monochromatic LEDs

机译:研究使用白色和单色LED的“超凡”红色生菜的光配方的战略方法

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To optimize crop production/quality in space, we studied various “light recipes” that could be used in the Advanced Plant Habitat currently aboard the International Space Station (ISS). Lettuce (Lactuca sativacv. ‘Outredgeous’) plants were grown for 28 days under seven treatments of white (W) LEDs (control), red (635 nm) and blue (460 nm) (RB) LEDs, W + blue (B) LEDs, W + green (520 nm) (G) LEDs, W + red (R) LEDs, W + far red (745 nm) (FR) LEDs, and RGB + FR LEDs with ratios similar to natural sunlight. Total PAR was maintained near 180 µmol m−2 s−1with an 18 h photoperiod. Lettuce grown under RGB + FR produced the greatest leaf expansion and overall shoot biomass, while leaves from WB and RB showed the highest levels of pigmentation, secondary metabolites, and elemental nutrients. All other supplemental treatments had varying impacts on morphology that were dependent on crop age. The WG treatment increased fresh mass early in the cycle, while WR increased biomass later in the cycle. The plants grown under WFR exhibited elongation of petioles, lower nutrient content, and similar shoot biomass to the W control. The findings suggest that supplementing a broad spectrum, white light background with discrete wavelengths can be used to manipulate total yield, morphology, and levels of phytonutrients in lettuce at various times during the crop cycle.
机译:为了优化空间中的作物产量/质量,我们研究了可在国际空间站(ISS)当前高级植物栖息地中使用的各种“轻配方”。在白色(W)LED(对照),红色(635 nm)和蓝色(460 nm)(RB),W +蓝色(B)LED的七种处理下,莴苣(Lactuca sativacv。'Outredgeous')植物生长28天。 LED,W +绿(520 nm)(G)LED,W +红(R)LED,W +远红(745 nm)(FR)LED和RGB + FR LED,其比率与自然阳光相似。在18 h的光周期下,总PAR保持在180 µmol m-2 s-1附近。在RGB + FR下生长的生菜产生最大的叶片膨胀和整体茎生物量,而WB和RB的叶片显示出最高水平的色素沉着,次生代谢产物和元素养分。所有其他补充处理对形态的影响取决于作物年龄。 WG处理在周期初期增加了新鲜质量,而WR在周期后期增加了生物量。在WFR下生长的植物表现出叶柄伸长,较低的养分含量以及与W对照相似的枝条生物量。这些发现表明,在作物周期的各个时间,用不连续的波长补充广谱白光背景可用于控制莴苣的总产量,形态和植物营养素水平。

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