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Light Intensity and Photoperiod Influence the Growth and Development of Hydroponically Grown Leaf Lettuce in a Closed-type Plant Factory System

机译:封闭式植物工厂系统中的光照强度和光周期影响水培生菜的生长发育

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Effect of light provided by various light intensities combined with different photoperiods on the growth and morphogenesis of lettuce (Lactuca sativa L.) 'Hongyeom Jeockchukmyeon' in a closed-type plant factory system were evaluated in this study. Four light intensity treatments, i.e., 200, 230, 260, and 290 mumol.m~(-2).s~(-1) from light-emitting diodes (LEDs), with a combination of three different photoperiods 18/6 (1 cycle), 9/3 (2 cycles) or 6/2 (3 cycles) (light/dark) were used. The combinationof 290-9/3 (light intensity-photoperiod) showed the highest plant height and fresh shoot weight, while plants grown at 290-18/6 exhibited the greatest root fresh weight, leaf dry weight, and longest root length. The greatest leaf width, maximum number ofleaves, and greatest root dry weight were observed in the treatment combination of 290-6/2. Anthocyanin content was found to be highest in the 290-6/2 and lowest in the 200-6/2 treatment, whereas chlorophyll fluorescence was observed to be highest in the 260-6/2 and the lowest in the 290-9/3 treatment. Our data showed that providing a high light intensity of 290 mumol-m~(-2)-s~(-1) PPFD with a shorter photoperiod of 6/2 (light/dark) resulted in good plant growth and development of lettuce, whereas growth at light intensities of 230 or 260 mumol.m~(-2).s~(-1) PPFD with longer photoperiods of 18/6 and 9/3 (light/dark) resulted in good growth as well as higher photosynthetic capacity.
机译:在本研究中,评估了在封闭型植物工厂系统中,各种光强度和不同的光周期组合提供的光对莴苣(Lactuca sativa L.)'Hongyeom Jeockchukmyeon'的生长和形态发生的影响。发光二极管(LED)进行的四种光强度处理,即200、230、260和290 mumol.m〜(-2).s〜(-1),结合三个不同的光周期18/6(使用1个周期),9/3(2个周期)或6/2(3个周期)(亮/暗)。 290-9 / 3(光强-光周期)的组合表现出最高的株高和鲜枝重,而以290-18 / 6生长的植物表现出最大的根鲜重,叶干重和最长的根长。在290-6 / 2的处理组合中观察到最大的叶宽,最大的叶数和最大的根干重。发现花青素含量在290-6 / 2中最高,在200-6 / 2处理中最低,而叶绿素荧光在260-6 / 2中最高,在290-9 / 3中最低。治疗。我们的数据表明,提供高290 mumol-m〜(-2)-s〜(-1)PPFD的光强度和较短的6/2(明/暗)光周期可导致良好的植物生长和生菜发育,而在230或260μmol.m〜(-2).s〜(-1)PPFD的光强度下生长,光周期较长的18/6和9/3(亮/暗)导致良好的生长以及更高的光合作用容量。

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