Brazaitytė Aušra, Miliauskienė Jurga, Vaštakaitė-Kairienė Viktorija, Sutulienė Rūta, Laužikė Kristina, Duchovskis Pavelas, Małek Stanisław
Lithuanian Research Centre for Agriculture and Forestry, Institute of Horticulture, Kaunas str. 30, LT-54333 Babtai, Lithuania.
Department of Ecology and Silviculture, Faculty of Forestry, University of Agriculture in Krakow, 31-425 Krakow, Poland.
Plants (Basel). 2021 Apr 19;10(4):801. doi: 10.3390/plants10040801.
The consumption of microgreens has increased due to their having higher levels of bioactive compounds and mineral nutrients than mature plants. The lighting conditions during the cultivation of microgreens, if optimally selected, can have a positive effect by further increasing their nutritional value. Thus, our study aimed to determine the changes in mineral nutrients contents of Brassicaceae microgreens depending on different blue-red (B:R) light ratios in light-emitting diode (LED) lighting and to evaluate their growth and nutritional value according to different indexes. Experiments were performed in controlled environment growth chambers at IH LRCAF, 2020. Microgreens of mustard ( 'Red Lace') and kale ( 'Red Russian') were grown hydroponically under different B:R light ratios: 0%B:100%R, 10%B:90%R, 25%B:75%R, 50%B:50%R, 75%B:25%R, and 100%B:0%R. A 220 μmol m s total photon flux density (TPFD), 18 h photoperiod, 21/17 ± 2 °C temperature and 60% ± 5% relative humidity in the growth chamber were maintained during cultivation. We observed that an increasing percentage of blue light in the LED illumination spectrum during growth was associated with reduced elongation in the microgreens of both species and had a positive effect on the accumulation of mostly macro- and micronutrients. However, different B:R light ratios indicate a species-dependent response to changes in growth parameters such as leaf area, fresh and dry mass, and optical leaf indexes such as for chlorophyll, flavonol, anthocyanin, and carotenoid reflectance.
由于微型蔬菜比成熟植物含有更高水平的生物活性化合物和矿物质营养成分,其消费量有所增加。微型蔬菜种植期间的光照条件若能得到优化选择,可通过进一步提高其营养价值而产生积极影响。因此,我们的研究旨在确定十字花科微型蔬菜的矿物质营养成分含量随发光二极管(LED)照明中不同红蓝(B:R)光比例的变化情况,并根据不同指标评估其生长和营养价值。实验于2020年在IH LRCAF的可控环境生长室中进行。芥菜(‘红蕾丝’)和羽衣甘蓝(‘红俄罗斯’)的微型蔬菜在不同的B:R光比例下进行水培:0%B:100%R、10%B:90%R、25%B:75%R、50%B:50%R、75%B:25%R和100%B:0%R。种植期间,生长室中的总光子通量密度(TPFD)保持在220 μmol m² s⁻¹,光周期为18小时,温度为21/17 ± 2 °C,相对湿度为60% ± 5%。我们观察到,生长期间LED照明光谱中蓝光百分比的增加与这两个物种微型蔬菜的伸长减少有关,并且对大多数常量和微量营养素的积累有积极影响。然而,不同的B:R光比例表明,对于叶面积、鲜重和干重等生长参数以及叶绿素、黄酮醇、花青素和类胡萝卜素反射率等光学叶片指标的变化,存在物种依赖性反应。