首页> 外文期刊>Scientia horticulturae >Artificial light from light emitting diodes (LEDs) with a high portion of blue light results in shorter poinsettias compared to high pressure sodium (HPS) lamps.
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Artificial light from light emitting diodes (LEDs) with a high portion of blue light results in shorter poinsettias compared to high pressure sodium (HPS) lamps.

机译:与高压钠(HPS)灯相比,来自发光二极管(LED)的人造光具有较高的蓝光,因此产生的一品红较短。

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Strict control of morphogenesis is essential in production of potted poinsettia. Commonly, this is obtained by the use of plant growth retardants (PGRs), often in combination with early morning temperature drops. Due to negative effects on human health and the environment, the use of PGRs is becoming restricted. Also, energy-saving growth regimes and periods of high temperatures limit effective use of temperature drops. In the present study the use of a high proportion of blue (B) light provided by light emitting diodes [LEDs, 20% blue (B), 80% red (R)] was compared with traditional high pressure sodium (HPS) lamps (5% B) providing similar phytochrome photostationary state to produce compact poinsettia plants. Both in the greenhouse and growth chamber, all cultivars were 20-34% shorter for LED compared to HPS grown plants. Also, leaf and bract area as well as chlorophyll content and total dry matter accumulation were lower under LED. The LED did not delay bract color formation, visible cyathia and flowering compared to HPS, and no difference in post production performance (cyathia/bract abscission or necrosis) between the two light treatments was found. The effect of end of day-red (EOD-R) lighting combination with LED and HPS supplemental lamps during the photoperiod in the greenhouse was also investigated. Reduced stem extension (13%) was observed under HPS only and for one of the two cultivars tested, whereas under the LED regime, there was no effect of EOD-R lighting.
机译:严格控制形态发生在盆栽一品红的生产中至关重要。通常,这是通过使用植物生长抑制剂(PGR)来实现的,通常与清晨的温度下降结合使用。由于对人类健康和环境的不利影响,植物遗传资源的使用正受到限制。同样,节能的增长机制和高温时期限制了降温的有效利用。在本研究中,与传统的高压钠(HPS)灯相比,使用了发光二极管[LED,20%的蓝色(B),80%的红色(R)]提供的高比例的蓝色(B)光( 5%B)提供相似的植物色素光平稳状态以产生紧凑的一品红植物。在温室和生长室中,与HPS种植植物相比,LED的所有栽培品种都短20-34%。同样,在LED下,叶片和片面积以及叶绿素含量和总干物质积累较低。与HPS相比,LED不会延缓片颜色的形成,可见的茶ath和开花,并且在两种光处理之间未发现后期生产性能(茶br / br片脱落或坏死)的差异。还研究了日光结束时(EOD-R)与LED和HPS辅助灯的组合在温室光周期中的影响。仅在HPS下和所测试的两个品种之一中观察到茎伸长减少(13%),而在LED方案下,没有EOD-R照明作用。

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