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Regulating Flowering and Extension Growth of Poinsettia Using Red and Far-red Light-emitting Diodes for End-of-day Lighting

机译:使用红色和远红发光二极管进行一品红的开花和延长生长,用于日期照明

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Manipulating light quality is a potential alternative method of regulating plant height in the commercial production of ornamental crops. In particular, end-of-day (EOD) lighting with a high red (R; 600-700 nm) to far-red (FR; 700-800 nm) ratio (R: FR) can suppress extension growth, whereas a low R: FR can promote it. We investigated the effects of the R: FR and duration of EOD lighting in regulating extension growth and flowering of two poinsettia cultivars, White Glitter and Marble Star. Plants were grown at 20 8C under 9-hour days with or without EOD lighting provided by two types of lightemitting diode bulbs: R+ white+ FR (subsequently referred to as R+ FR) and FR only. The R: FR ratios were 0.73 and 0.04, respectively, and the photon flux density between 400 and 800 nm was adjusted to 2 to 3 mmol.mL2.s-1 at plant canopy. The six EOD lighting treatments were R+ FR or FR for 2 or 4 hours, 2 hours ofR+ FR followed by 2 hours of FR, and 4 hours of R+ FR followed by 2 hours of FR. We also investigated the impact of a 4hour moderate-intensity (13 mmol.mL2.s-1) EOD FR treatment in the second replication. EOD lighting generally increased poinsettia extension growth, with the greatest promotion under the longest lighting periods. There were no differences in days to first bract color and days to anthesis when the 9-hour day was extended by 2 hours, but flowering was delayed under 4-or 6-hour EOD treatments, except for the 2-hour R+ FR + 2-hour FR and 4-hour FR treatments. Four hours of moderate-intensity EOD FR greatly promoted extension growth and delayed or prevented bract coloration in both cultivars. We conclude that EOD lighting promotes extension growth of poinsettia, and specifically, EOD FR at a low intensity (2-3 mmol.mL2.s-1) is not perceived as long-day signal, whereas a higher intensity (13 mmol.mL2.s-1) of FR delays flowering.
机译:操纵光质是一种调节观赏作物商业生产植物高度的潜在替代方法。特别是,具有高红色(R; 600-700nm)的日期(EOD)照明到远红色(FR; 700-800nm)比率(R:FR)可以抑制延伸生长,而低R:FR可以促进它。我们调查了R:FR和EOD照明的持续时间在调节两个一品料,白色闪光和大理石星的延伸生长和开花。植物在20 8℃下在9小时内生长,有或没有由两种色光二极管灯泡提供的eod照明:R +白色+ Fr(随后称为R + Fr)和Fr。 R:Fr比分别为0.73和0.04,在植物冠层中调节400-800nm之间的光子通量密度至2至3mmol.ml2.s-1。六个EOD照明处理是R + FR或FR +或4小时,2小时的+ Fr,然后是2小时的FR,4小时的R + Fr,然后进行2小时Fr。我们还研究了在第二复制中4小时中等强度(13mmol.ml2.S-1)EOD FR处理的影响。 EOD照明通常增加一品红延伸生长,在最长的照明期下促销最大。当9小时的日期延长2小时时,第一次苞片颜色和日子与假期没有差异,但在4小时或6小时的EOD治疗中延迟开花,除了2小时r + fr + 2 -hour fr和4小时fr治疗。四小时的中等强度EOD FR大大促进延长生长和延迟或阻止两种品种的苞片着色。我们得出结论,EOD照明促进了一品红的延长生长,具体而言,低强度(2-3mmol.ml2.S-1)的EODFR不被视为漫长的信号,而强度更高(13 mmol.ml2 FR延迟开花的.S-1)。

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