首页> 外文期刊>HortScience >Cuttings of Impatiens, Pelargonium, and Petunia Propagated under Light-emitting Diodes and High-pressure Sodium Lamps Have Comparable Growth, Morphology, Gas Exchange, and Post-transplant Performance
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Cuttings of Impatiens, Pelargonium, and Petunia Propagated under Light-emitting Diodes and High-pressure Sodium Lamps Have Comparable Growth, Morphology, Gas Exchange, and Post-transplant Performance

机译:在发光二极管和高压钠灯下传播的凤仙花,天竺葵和矮牵牛的插条具有可比的生长,形态,气体交换和移植后性能

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Increasing photosynthetic daily light integral (DLI) by supplementing with high-pressure sodium (HPS) lamps during propagation has been shown to enhance photosynthesis and biomass accumulation of cuttings. The development of high-intensity light-emitting diodes (LEDs) is a promising technology with potential as a greenhouse supplemental lighting source. Our objective was to quantify the impact of narrow spectra supplemental lighting from LEDs on growth, morphology, and gas exchange of cuttings compared with traditional HPS supplemental lighting. Cuttings of Impatiens hawkeri W. Bull 'Celebrette Frost', Pelargonium x hortorum L.H. Bailey 'Designer Bright Red', and Petunia x hybrida Vilm. 'Suncatcher Midnight Blue' were received from a commercial propagator and propagated in a glass-glazed greenhouse at 23 degrees C air and substrate temperature set points. After callusing (approximate to 5 mol.m(-2).d(-1) for 7 days), cuttings were placed under 70 mu mol.m(-2).s(-1) delivered from HPS lamps or LED arrays with varying proportions (%) of red:blue light (100:0, 85:15, or 70:30). After 14 days under supplemental lighting treatments, growth, morphology, and gas exchange of rooted cuttings were measured. There were no significant differences among Impatiens and Pelargonium cuttings grown under different supplemental light sources. However, compared with cuttings propagated under HPS lamps, stem length of Petunia cuttings grown under 100:0 red:blue LEDs was 11% shorter, whereas leaf dry mass, root dry mass, root mass ratios, and root:shoot ratio of cuttings grown under 70:30 red:blue LEDs were 15%, 36%, 17%, and 24% higher, respectively. Supplemental light source had minimal impact on plants after transplant. Our data suggest that LEDs are suitable replacements for HPS lamps as supplemental light sources during cutting propagation.
机译:通过在传播过程中补充高压钠(HPS)灯来增加光合作用的日光积分(DLI)已显示出可以增强photos插的光合作用和生物量积累。高强度发光二极管(LED)的开发是一种有前途的技术,具有作为温室补充照明光源的潜力。我们的目标是与传统的HPS辅助照明相比,量化LED的窄光谱辅助照明对切屑的生长,形态和气体交换的影响。凤仙花(Impatiens hawkeri W.Bull)'Celebrette Frost',天竺葵x hortorum L.H. Bailey'Designer Bright Red'和Petunia x hybrida Vilm的s插。 “ Suncatcher Midnight Blue”是从一家商业传播机构收到的,并在玻璃釉温室中于23摄氏度的空气和基质温度设定点传播。 using折后(约5 mol.m(-2).d(-1)放置7天),将切屑置于HPS灯或LED阵列提供的70μmol.m(-2).s(-1)下红,蓝光比例不同(%)(100:0、85:15或70:30)。在补充照明处理下14天后,测量了生根插条的生长,形态和气体交换。在不同补充光源下生长的凤仙花和天竺葵插条之间没有显着差异。但是,与在HPS灯下传播的插条相比,在100:0红色:蓝色LED下生长的矮牵牛插条的茎长短了11%,而生长的插条的叶片干重,根干重,根质量比和根:枝比在70:30下,红色:蓝色LED分别高出15%,36%,17%和24%。补充光源对移植后的植物影响最小。我们的数据表明,LED在切割传播过程中是HPS灯的合适替代品,可以作为辅助光源。

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