Wu Bo-Sen, Mansoori Mahnaz, Trumpler Keli, Addo Philip Wiredu, MacPherson Sarah, Lefsrud Mark
Bioresource Engineering Department, McGill University, Macdonald Campus, Sainte-Anne-de-Bellevue, QC H9X 3V9, Canada.
Plants (Basel). 2023 Jun 27;12(13):2457. doi: 10.3390/plants12132457.
Full-spectrum light-emitting diodes (LEDs) mainly comprising 460-nm + 595-nm light are becoming a mainstay in the horticulture industry, and recent studies indicate that plant productivity under white LEDs is higher than combined blue and red LED lighting. Different light properties (wavelength and bandwidth) in full-spectrum light, particularly for the blue and amber light regions, have only partly been explored. This research aimed to characterize the effects of amber + blue light wavelengths and bandwidths on tomato ( cv. Beefsteak) growth, morphology, and production efficiency. Tomato seedlings were subjected to four different light treatments for 60 days: narrow amber light (595 nm), narrow blue + narrow amber light (430 nm + 595 nm) with a 1:10 ratio, white LED (455 nm + 595 nm), and a high-pressure sodium (HPS) lamp (control). The highest mean fresh mass yield occurred with the narrow blue + narrow amber light (479 g), followed by white LED at 20% less, HPS at 34% less, and narrow amber at 40% less. Dry mass and plant height were similar among light treatments. Supplementing narrow amber light with 430-nm blue light led to a 20% increase in chlorophyll content. Findings indicate that narrow amber light is more efficient in biomass accumulation than broad amber light and that precise selection of different blue and amber wavelengths can greatly impact the growth and development of tomato seedlings. This energy-efficient narrow-wavelength combination shows improvement over white LED lighting for maximizing tomato growth.
主要由460纳米+595纳米光组成的全光谱发光二极管(LED)正成为园艺行业的主流,最近的研究表明,白光LED下的植物生产力高于蓝光和红光组合照明。全光谱光中不同的光特性(波长和带宽),特别是蓝光和琥珀光区域,仅得到了部分探索。本研究旨在表征琥珀光+蓝光波长和带宽对番茄(品种:牛排番茄)生长、形态和生产效率的影响。番茄幼苗接受四种不同的光照处理60天:窄琥珀光(595纳米)、窄蓝光+窄琥珀光(430纳米+595纳米),比例为1:10、白光LED(455纳米+595纳米)和高压钠灯(对照)。窄蓝光+窄琥珀光处理的平均鲜质量产量最高(479克),其次是白光LED,比前者低20%,高压钠灯低34%,窄琥珀光低40%。各光照处理间干质量和株高相似。用430纳米蓝光补充窄琥珀光可使叶绿素含量增加20%。研究结果表明,窄琥珀光在生物量积累方面比宽琥珀光更有效,精确选择不同的蓝光和琥珀光波长可极大地影响番茄幼苗的生长发育。这种节能的窄波长组合在促进番茄生长方面比白光LED照明表现更优。