Agronomy Department, Faculty of Agriculture, Zagazig University, Zagazig, 44519, Egypt.
Department of Molecular Biology, Centre of the Region Haná for Biotechnological and Agricultural Research, Faculty of Science, Palacký University, Olomouc, Czech Republic.
Physiol Plant. 2020 Aug;169(4):625-638. doi: 10.1111/ppl.13083. Epub 2020 Mar 12.
Microgreens are rich functional crops with valuable nutritional elements that have health benefits when used as food supplements. Growth characterization, nutritional composition profile of 21 varieties representing five species of the Brassica genus as microgreens were assessed under light-emitting diodes (LEDs) conditions. Microgreens were grown under four different LEDs ratios (%); red:blue 80:20 and 20:80 (R :B and R :B ), or red:green:blue 70:10:20 and 20:10:70 (R :G :B and R :G :B ). Results indicated that supplemental lighting with green LEDs (R :G :B ) enhanced vegetative growth and morphology, while blue LEDs (R :B ) increased the mineral and vitamin contents. Interestingly, by linking the nutritional content with the growth yield to define the optimal LEDs setup, we found that the best lighting to promote the microgreen growth was the green LEDs combination (R :G :B ). Remarkably, under the green LEDs combination (R :G :B ) conditions, the microgreens of Kohlrabi purple, Cabbage red, Broccoli, Kale Tucsan, Komatsuna red, Tatsoi and Cabbage green, which can benefit human health in conditions with limited food, had the highest growth and nutritional content.
微绿蔬菜是一种富含功能性营养元素的作物,作为食品补充剂具有健康益处。本研究在发光二极管(LED)条件下评估了代表芸薹属五个物种的 21 个品种的微绿蔬菜的生长特征和营养成分。微绿蔬菜在四种不同的 LED 比例(%)下生长:红:蓝 80:20 和 20:80(R:B 和 R:B),或红:绿:蓝 70:10:20 和 20:10:70(R:G:B 和 R:G:B)。结果表明,绿光 LED(R:G:B)补充照明可促进营养生长和形态发育,而蓝光 LED(R:B)增加了矿物质和维生素含量。有趣的是,通过将营养含量与生长产量联系起来定义最佳 LED 设置,我们发现促进微绿蔬菜生长的最佳照明是绿光 LED 组合(R:G:B)。值得注意的是,在绿光 LED 组合(R:G:B)条件下,对食物有限制条件下有益于人类健康的甘蓝紫、红甘蓝、西兰花、Tucsan 甘蓝、红叶芥菜、芝麻菜和绿甘蓝的微绿蔬菜具有最高的生长和营养含量。