Rahman Md Momtazur, Field David Luke, Ahmed Soyed Mohiuddin, Hasan Md Tanvir, Basher Mohammad Khairul, Alameh Kamal
School of Science, Edith Cowan University, 270 Joondalup Drive, Joondalup, WA 6027, Australia.
School of Pharmacy & Life Science, Jiujiang University, Jiujiang 332000, China.
Plants (Basel). 2021 Nov 16;10(11):2470. doi: 10.3390/plants10112470.
Vegetables and herbs play a central role in the human diet due to their low fat and calory content and essential antioxidant, phytochemicals, and fiber. It is well known that the manipulation of light wavelengths illuminating the crops can enhance their growth rate and nutrient contents. To date, it has not been easy to generalize the effects of LED illumination because of the differences in the plant species investigated, the measured traits, the way wavelengths have been manipulated, and the plants' growing environments. In order to address this gap, we undertook a quantitative review of LED manipulation in relation to plant traits, focusing on vegetables and herbs. Here, we use standardized measurements of biomass, antioxidant, and other quantitative characteristics together with the whole range of the photosynthetic photon flux density (PPFD). Overall, our review revealed support for the claims that the red and blue LED illumination is more reliable and efficient than full spectrum illumination and increases the plant's biomass and nutritional value by enhancing the photosynthetic activity, antioxidant properties, phenolic, and flavonoids contents. Although LED illumination provides an efficient way to improve yield and modify plant properties, this study also highlights the broad range of responses among species, varieties traits, and the age of plant material.
蔬菜和草本植物在人类饮食中起着核心作用,这是由于它们脂肪和热量含量低,且富含必需的抗氧化剂、植物化学物质和纤维。众所周知,控制照射作物的光波长可以提高其生长速度和营养成分含量。迄今为止,由于所研究的植物种类、测量的性状、光波长的控制方式以及植物的生长环境存在差异,很难概括发光二极管(LED)照明的效果。为了填补这一空白,我们针对植物性状对LED控制进行了定量综述,重点关注蔬菜和草本植物。在此,我们使用生物量、抗氧化剂和其他定量特征的标准化测量方法,以及光合光子通量密度(PPFD)的全范围数据。总体而言,我们的综述表明,有证据支持以下观点:与全光谱照明相比,红色和蓝色LED照明更可靠、更高效,并且通过增强光合作用活性、抗氧化特性、酚类和黄酮类化合物含量来增加植物的生物量和营养价值。虽然LED照明提供了一种提高产量和改变植物特性的有效方法,但本研究也凸显了不同物种、品种性状以及植物材料年龄之间的广泛反应。