Liu Jun, van Iersel Marc W
Crop Physiology Laboratory, Utah State University, Logan, UT 84322, USA.
Horticultural Physiology Laboratory, Department of Horticulture, University of Georgia, Athens, GA 30602, USA.
Plants (Basel). 2022 Oct 14;11(20):2714. doi: 10.3390/plants11202714.
Understanding crop responses to the light spectrum is critical for optimal indoor production. Far-red light is of particular interest, because it can accelerate growth through both physiological and morphological mechanisms. However, the optimal amount of supplemental far-red light for indoor lettuce production is yet to be quantified. Lettuce 'Cherokee', 'Green SaladBowl', and 'Little Gem' were grown under 204 µmol·m·s warm-white light-emitting diodes (LEDs) with supplemental far-red ranging from 5.3 to 75.9 µmol·m·s. Supplemental far-red light increased canopy light interception 5 days after the start of far-red light treatment (DAT) for 'Green SaladBowl' and 'Little Gem' and 7 DAT for 'Cherokee'. The increase in light interception was no longer evident after 12 and 16 DAT for 'Green SaladBowl' and 'Little Gem', respectively. We did not find evidence that supplemental far-red light increased leaf-level photosynthesis. At the final harvest, shoot dry weights of 'Cherokee' and 'Little Gem' increased by 39.4% and 19.0%, respectively, while 'Green SaladBowl' was not affected. In conclusion, adding far-red light in indoor production increased light interception during early growth and likely increased whole plant photosynthesis thus growth, but those effects were cultivar-specific; the increase in dry weight was linear up to 75.9 µmol·m·s far-red light.
了解作物对光谱的反应对于实现最佳室内种植至关重要。远红光尤其值得关注,因为它可以通过生理和形态机制加速生长。然而,室内生菜生产中补充远红光的最佳量尚未确定。生菜品种“切诺基”、“绿色沙拉碗”和“小宝石”在204 μmol·m·s的暖白色发光二极管(LED)下生长,补充远红光的强度范围为5.3至75.9 μmol·m·s。对于“绿色沙拉碗”和“小宝石”,在远红光处理开始后5天(DAT),补充远红光增加了冠层对光的拦截;对于“切诺基”,在7 DAT时增加。对于“绿色沙拉碗”和“小宝石”,分别在12 DAT和16 DAT后,光拦截的增加不再明显。我们没有发现补充远红光增加叶片水平光合作用的证据。在最终收获时,“切诺基”和“小宝石”的地上部干重分别增加了39.4%和19.0%,而“绿色沙拉碗”没有受到影响。总之,在室内生产中添加远红光增加了早期生长期间的光拦截,并可能增加了整株植物的光合作用从而促进了生长,但这些影响因品种而异;干重的增加在远红光强度达到75.9 μmol·m·s之前呈线性关系。