Mohamed Shiren J, Rihan Hail Z, Aljafer Naofel, Fuller Michael P
School of Biological and Marine Sciences, University of Plymouth, Plymouth PL4 8AA, UK.
Biotechnology and Crop Sciences Department, College of Agricultural Engineering Sciences, University of Sulaimani, Sulaimani 46001, Iraq.
Plants (Basel). 2021 Oct 12;10(10):2162. doi: 10.3390/plants10102162.
This study focused on the physiology, growth and antioxidant activity response of hydroponically grown lettuce ( L.) under sole-source LED lighting of differing spectra. Lighting spectra were provided by differing combinations of LEDs of three different peak wavelengths, (Blue 435, Blue 450, and Red 663 nm) with ratios of B450/R663: 1.25 ± 0.1, B450/R663: 1.25 ± 0.1, and B450/R663 1:1 at two light intensities of photosynthetically active radiation (PAR) (270 μmol m s and 60 μmol m s). A further experiment was conducted, in which Blue and Red LEDs were supplemented with Green (Blue 450, Red 663, and Green 520 nm) with ratios of B435/R663: 1.25 ± 0.1, B450/R663/G520: 1/0.73/0.26, and B450/R663: 1.25 ± 0.1. LED light intensities under the different spectra were adjusted to deliver the same level of PAR (270 ± 20 μmol m s). Results from the first experiment showed that increased fraction of blue 435 nm in combination with red light at 663 nm at high irradiance enhanced the physiology of lettuce (i.e., significantly increased assimilation rate, stomatal conductance and transpiration rate) and increased the yield while having no significant effect on antioxidant activity. At the lower irradiance, the B435/R663 significantly increased antioxidant activity compared to other spectra. Results from the second experiment showed no significant effect of the spectra of LEDs on the physiology and yield of lettuce, but antioxidant activity was very significantly induced by B450/R663 at the ratio of 1.25 ± 0.1. However, the amount was still less than that obtained by B435/R663 1.25 ± 0.1 from the first experiment. This study indicates that LED light with a spectrum of B435/R663 at a ratio of 1.25 ± 0.1 significantly improves lettuce yield and antioxidant activity.
本研究聚焦于水培生菜(L.)在不同光谱的单一来源LED光照下的生理、生长及抗氧化活性响应。光照光谱由三种不同峰值波长(蓝光435、蓝光450和红光663纳米)的LED以不同组合提供,在光合有效辐射(PAR)的两种光强(270微摩尔·米⁻²·秒⁻¹和60微摩尔·米⁻²·秒⁻¹)下,B450/R663的比例分别为1.25±0.1、1.25±0.1和1:1。还进行了另一项实验,其中蓝光和红光LED补充了绿光(蓝光450、红光663和绿光520纳米),B435/R663的比例为1.25±0.1、B450/R663/G520为1/0.73/0.26以及B450/R663为1.25±0.1。不同光谱下的LED光强被调整为提供相同水平的PAR(270±20微摩尔·米⁻²·秒⁻¹)。第一个实验的结果表明,在高辐照度下,蓝光435纳米与红光663纳米结合比例增加可增强生菜的生理机能(即显著提高同化率、气孔导度和蒸腾速率)并提高产量,同时对抗氧化活性无显著影响。在较低辐照度下,与其他光谱相比,B435/R663显著提高了抗氧化活性。第二个实验的结果表明,LED光谱对生菜的生理和产量无显著影响,但当B450/R663比例为1.25±0.1时,抗氧化活性受到极显著诱导。然而,该量仍低于第一个实验中B435/R663为1.25±0.1时的量。本研究表明,光谱为B435/R663、比例为1.25±0.1的LED光可显著提高生菜产量和抗氧化活性。