Influence of dynamic LED irradiation mode on the content of nitrates, structural and functional characteristics of lettuce plants

S. Turanov, A. Burenina, E. Surnina, A. Butenkova, T. Astafurova, T. Han
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Abstract

One of the promising irradiation modes for plant is dynamic, when parameters change throughout the growing process depending on certain factors. In this work, lettuce plants were illuminated under different LED light sources, including white (2700 K), 30% white (2700 K) + 70% red (660 nm), 15% blue (445 nm) + 85% red (660 nm), 40% blue (445 nm) + 20% red (630 nm) + 40% red (660 nm) and dynamic mode for 35 days to investigate the effects. Photosynthetically active flux density was the same for all lettuce samples during the experiment (210 µmol m−2 s−1). The results showed the effects of photoregulation on the growth and development of lettuce plants. Optimal irradiation regime for lettuce plants was a dynamic regime formed using two colour components: white (2700 K) and red (660 nm) LEDs. Lettuce grown under dynamic conditions had a lower content of nitrates and developed faster than under stationary conditions.
动态 LED 照射模式对莴苣植物硝酸盐含量、结构和功能特性的影响
植物有望采用的一种辐照模式是动态辐照,在整个生长过程中,辐照参数会根据某些因素发生变化。在这项工作中,莴苣植株在不同的 LED 光源(包括白光(2700 K)、30% 白光(2700 K)+ 70% 红光(660 nm)、15% 蓝光(445 nm)+ 85% 红光(660 nm)、40% 蓝光(445 nm)+ 20% 红光(630 nm)+ 40% 红光(660 nm)和动态模式)下照射了 35 天,以研究其效果。实验期间,所有生菜样本的光合有效通量密度相同(210 µmol m-2 s-1)。结果显示了光调节对莴苣植物生长和发育的影响。莴苣植物的最佳辐照制度是使用两种颜色的 LED(白光(2700 K)和红光(660 nm))形成的动态制度。在动态条件下生长的生菜硝酸盐含量较低,生长速度也比静态条件下快。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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