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首页> 外文期刊>American Journal of Plant Sciences >Photosynthetic Capacities and Productivity of Indoor Hydroponically Grown Brassica alboglabra Bailey under Different Light Sources
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Photosynthetic Capacities and Productivity of Indoor Hydroponically Grown Brassica alboglabra Bailey under Different Light Sources

机译:室内不同水培条件下白菜芸苔的光合能力和生产力

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A major challenge for growing vegetables in an indoor vertical farming system will be supplying not only sufficient quantity but also quality of light. It has been reported that yield of crops is enhanced under appropriate combination of red and blue light compared with red light alone. This project aims to investigate the effects of different combinations of red and blue. Plants were cultured for a 12-h photoperiod at 210 μmol·m–2·s–1 photosynthetic photon flux density (PPFD) under different combinations of red (R) and blue (B) light-emitting diodes (LED). The R:B-LED ratios are: 1) 100:0 (0B); 2) 92:8 (8B); 3) 84:16 (16B) and; 4) 76:24 (24B). All combined RB-LEDs significantly increased light-saturated photosynthetic CO2 assimilation rate (Asat), stomatal conductance (gs sat) and productivity compared with those under 0B. Results suggested that 16B was the most suitable combination of LEDs to achieve the highest productivity for B. alboglabra. To further substantiate these results, comparative studies were conducted under equal photoperiod and PPFD among 16B (RB-LED), white LED (RBW-LED) and high-pressure sodium (HPS) lamps. Shoot, root biomass, leaf number, leaf mass per area and Asat were higher in plants under HPS lamps and RB-LED, than under RBW-LED. However, gs sat was lower under RB-LED and RBW-LED, than under HPS lamps. Plants under RB-LED had higher electron transport rate and photochemical quenching but lower non-photochemical quenching than those under RBW-LED and HPS lamps. Thus, these results more conclusively affirmed that 16B was the most suitable light source to achieve the highest photosynthetic capacities. The findings of this study could also be used in vertical farming to achieve the highest productivity of vegetable crops such as B. alboglabra within the shortest growth cycle with reduced energy consumption.
机译:在室内垂直耕作系统中种植蔬菜的主要挑战将不仅是提供足够的数量,而且还要提供光的质量。据报道,与单独的红光相比,在红光和蓝光的适当组合下农作物的产量提高了。该项目旨在研究红色和蓝色不同组合的影响。在红色(R)和蓝色(B)发光二极管(LED)的不同组合下,将植物在210μmol·m-2·s-1的光合光子通量密度(PPFD)下培养12小时的光周期。 R:B-LED比为:1)100:0(0B); 2)92:8(8B); 3)84:16(16B)和; 4)76:24(24B)。与0B以下相比,所有组合的RB-LED均显着提高了光饱和光合CO2同化率(Asat),气孔导度(gs sat)和生产率。结果表明,16B是最适合LED的组合,以实现最高的alboglabra生产力。为了进一步证实这些结果,在16B(RB-LED),白光LED(RBW-LED)和高压钠(HPS)灯的相同光周期和PPFD下进行了比较研究。在HPS灯和RB-LED下,植物的枝条,根生物量,叶数,单位面积的叶质量和Asat均高于RBW-LED。但是,在RB-LED和RBW-LED下,gs sat低于HPS灯。 RB-LED下的植物比RBW-LED和HPS灯下的植物具有更高的电子传输速率和光化学猝灭,但非光化学猝灭却更低。因此,这些结果更明确地肯定了16B是实现最高光合能力的最合适光源。这项研究的结果还可以用于垂直耕作,以在最短的生长周期内以较低的能源消耗实现蔬菜作物(例如白斑芥菜)的最高生产率。

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