Semenova Natalya A, Smirnov Alexandr A, Grishin Andrey A, Pishchalnikov Roman Y, Chesalin Denis D, Gudkov Sergey V, Chilingaryan Narek O, Skorokhodova Anastasia N, Dorokhov Alexey S, Izmailov Andrey Y
Federal State Budgetary Scientific Institution "Federal Scientific Agroengineering Center VIM" (FSAC VIM), 109428 Moscow, Russia.
Prokhorov General Physics Institute of the Russian Academy of Sciences, 119991 Moscow, Russia.
Plants (Basel). 2021 Jun 24;10(7):1287. doi: 10.3390/plants10071287.
The effects of different spectral compositions of light-emitting diode (LED) sources and fertilizer containing biologically active silicon (Si) in the nutrient solution on morphological and physiological plant response were studied. Qualitative indicators and the productivity of plants of a red-leaved and a green-leaved lettuce were estimated. Lettuce was grown applying low-volume hydroponics in closed artificial agroecosystems. The positive effect of Si fertilizer used as a microadditive in the nutrient solution on the freshly harvested biomass was established on the thirtieth day of vegetation under LEDs. Increase in productivity of the red-leaved lettuce for freshly harvested biomass was 26.6%, while for the green-leaved lettuce no loss of dry matter was observed. However, being grown under sodium lamps, a negative impact of Si fertilizer on productivity of both types of plants was observed: the amount of harvested biomass decreased by 22.6% and 30.3% for the green- and red-leaved lettuces, respectively. The effect of using Si fertilizer dramatically changed during the total growing period: up to the fifteenth day of cultivation, a sharp inhibition of the growth of both types of lettuce was observed; then, by the thirtieth day of LED lighting, Si fertilizer showed a stress-protective effect and had a positive influence on the plants. However, by the period of ripening there was no effect of using the fertilizer. Therefore, we can conclude that the use of Si fertilizers is preferable only when LED irradiation is applied throughout the active plant growth period.
研究了营养液中发光二极管(LED)光源的不同光谱组成以及含生物活性硅(Si)的肥料对植物形态和生理反应的影响。评估了红叶生菜和绿叶生菜的定性指标及植物生产力。生菜在封闭人工农业生态系统中采用低容量水培法种植。在LED光照下植被生长的第30天,确定了营养液中作为微添加剂使用的硅肥对新鲜收获生物量的积极影响。红叶生菜新鲜收获生物量的生产力提高了26.6%,而绿叶生菜未观察到干物质损失。然而,在钠灯下种植时,观察到硅肥对两种类型植物的生产力均有负面影响:绿叶生菜和红叶生菜收获生物量的量分别减少了22.6%和30.3%。在整个生长期间,使用硅肥的效果发生了显著变化:在种植的第15天之前,观察到两种生菜的生长均受到急剧抑制;然后,到LED光照的第30天,硅肥显示出应激保护作用,并对植物产生了积极影响。然而,到成熟阶段,使用该肥料没有效果。因此,我们可以得出结论,仅在植物整个活跃生长期间进行LED照射时,使用硅肥才是更可取的。