Yang Jingli, Song Jinnan, Jeong Byoung Ryong
Department of Horticulture, Division of Applied Life Science (BK21 Four), Graduate School of Gyeongsang National University, Jinju 52828, Korea.
Institute of Agriculture and Life Science, Gyeongsang National University, Jinju 52828, Korea.
Antioxidants (Basel). 2022 Apr 21;11(5):811. doi: 10.3390/antiox11050811.
Kalanchoe () is a qualitative short-day plant with a high aesthetic value. When the night length is less than a specified cultivar-dependent critical value, however, it does not develop flowers. This study investigated the effects of low-intensity supplementary or night interrupting (NI) blue (B) light on the plant performance and flower induction in kalanchoe 'Rudak'. During the photoperiod in a closed-type plant factory with day/night temperatures of 23 °C/18 °C, white (W) LEDs were utilized to produce a photosynthetic photon flux density (PPFD) of 300 μmol m s, and B LEDs were used to give supplementary/NI light at a PPFD of 10 μmol m s. The control plants were exposed to a 10-h short day (SD, positive control) or a 13-h long day (LD, negative control) treatment without any B light. The B light was used for 4 h either (1) to supplement the W LEDs at the end of the SD (SD + 4B) and LD (LD + 4B), or (2) to provide night interruption (NI) in the SD (SD + NI-4B) and LD (LD + NI-4B). The LD + 4B and LD + NI-4B significantly enhanced plant growth and development, followed by the SD + 4B and SD + NI-4B treatments. In addition, the photosynthesis, physiological parameters, and activity of antioxidant systems were improved in those treatments. Except in the LD and LD + NI-4B, all plants flowered. It is noteworthy that kalanchoe 'Rudak' flowered in the LD + 4B treatment and induced the greatest number of flowers, followed by SD + NI-4B and SD + 4B. Plants grown in the LD + 4B treatment had the highest expression levels of certain monitored genes related to flowering. The results indicate that a 4-h supplementation of B light during the photoperiod in both the SD and LD treatments increased flower bud formation, promoted flowering, and enhanced plant performance. Kalanchoe 'Rudak' flowered especially well in the LD + 4B, presenting a possibility of practically inducing flowering in long-day seasons with B light application.
长寿花()是一种具有较高观赏价值的定性短日植物。然而,当夜间长度小于特定品种依赖的临界值时,它不会开花。本研究调查了低强度补充或夜间中断(NI)蓝光(B)对长寿花‘Rudak’植株性能和花芽诱导的影响。在日/夜温度为23°C/18°C的封闭式植物工厂的光周期期间,使用白色(W)发光二极管产生300μmol·m⁻²·s⁻¹的光合光子通量密度(PPFD),并使用B发光二极管以10μmol·m⁻²·s⁻¹的PPFD提供补充/NI光。对照植株接受10小时短日照(SD,阳性对照)或13小时长日照(LD,阴性对照)处理,不给予任何B光。B光用于4小时,要么(1)在SD(SD + 4B)和LD(LD + 4B)结束时补充W发光二极管,要么(2)在SD(SD + NI - 4B)和LD(LD + NI - 4B)中提供夜间中断(NI)。LD + 4B和LD + NI - 4B显著促进了植株的生长和发育,其次是SD + 4B和SD + NI - 4B处理。此外,这些处理还改善了光合作用、生理参数和抗氧化系统的活性。除了LD和LD + NI - 4B外,所有植株都开花了。值得注意的是,长寿花‘Rudak’在LD + 4B处理中开花,并且诱导的花数量最多,其次是SD + NI - 4B和SD + 4B。在LD + 4B处理中生长的植株某些与开花相关的监测基因表达水平最高。结果表明,在SD和LD处理的光周期期间补充4小时B光增加了花芽形成,促进了开花,并增强了植株性能。长寿花‘Rudak’在LD + 4B中开花特别好,这表明在长日照季节应用B光实际诱导开花具有可能性。