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Responses of air humidity and light quality on growth and stomata function of greenhouse grown Rosa*hybrida

机译:空气湿度和光质对温室栽培蔷薇杂种的生长和气孔功能的响应

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摘要

Single node stem segment with one mature leaf of Rosa x hybrida, cv. Toril were grown inchambers. Plants were exposed to 100 μmol m-2 s-1 for 20 h day-1 followed by a 4 h dark periodand supplementary light was provided by LED (20% blue light and 80% red light), HPS andHPS+UV-B Lamp. Each light source was provided by moderate (60%) and high (90) RH indifferent chambers. The UV-B light was provided 1 hour twice a day, in the middle of the darkperiod and in the middle of light period. The UV-B treatment was given in combination withHPS lamp as supplementary light. Thus, the main aim of the study was to investigate if lightquality can improve the stomata function under high RH.The experiment was divided into two parts, first HPS and LED and seconds the effect of UV-B.In the first experiment, the stems were significantly longer under HPS compared to LED, undermoderate RH, LED suppressed pedicel length and induced shorter pedicels compared to HPS.The number of flowers and leaf area was not significantly affected by either RH or light quality.Comparatively, moderate RH had significantly more leaves per stem higher, dry weight of stemand higher dry weight of pedicle length and flower compared to high RH, but no significanteffect of light quality was found on these parameters. At high RH, gsw was still high duringdarkness for both HPS and LED and indicate lack of dark induced closure. However, LEDreduced the conductance under high RH during light and darkness indicating reduced stomatalaperture and a better closure capacity when grown with LED. Moderate RH had a lowerconductance under LED compared to HPS but both light qualities induced closure in darkness.Detached leaves from plants grown at high RH showed a rapid water loss compare to leavesgrown at moderate RH. Stomatal length and pore aperture were significantly higher in plantsgrown at high RH compared to moderate RH. Plants developed at high RH with LED showed adesiccation tolerance than plant grown under high RH and HPS. In second experiment, both highand moderate humidity showed a similar pattern with the conductance decreasing through thetime of one hour exposure of UV-B. The UV-B did not induce better closure rather the oppositewas found and plants developed at high RH and exposed to UV-B had a higher water loss in adesiccation test. Comparison of flavonoids and anthocynins on high and moderate humidity ofiiiUV-B treatment was found to be non-significant. Hence, the conclusion of this study is that lightquality can be used a tool to improve the stomata function under high RH. By using LED withmore blue light (20%) a better dark induced closure was found and a better desiccation tolerancewas found compared to the traditional HPS lamps. The use of UV-B did not improve the stomatafunction under high RH but rather induced an even higher water loss. The interactive effectbetween light quality and air humidity needs further investigation but light quality can be one ofthe useful tools since LEDs are believed to be an important light source in greenhouse in thefuture.
机译:单节点茎节,具一朵成熟的Rosa x hybrida,cv叶。托里尔生长在室内。将植物在100μmolm-2 s-1下暴露20 h(第一天),然后进行4 h暗期,并通过LED(20%的蓝光和80%的红光),HPS和HPS + UV-B灯提供补充光。每个光源均由中度(60%)和高(90)RH无差异腔室提供。每天两次,在黑暗时期的中间和光照期间,每天提供1小时的UV-B光。 UV-B处理与HPS灯结合使用作为辅助光。因此,本研究的主要目的是研究光质量是否可以改善高RH条件下的气孔功能。该实验分为两个部分,第一部分是HPS和LED,第二部分是UV-B的作用。与HPS相比,HPS显着长于LED,相对湿度适中,LED抑制花梗长度并诱导更短的花梗。与较高的相对湿度相比,每茎高,茎干重和蒂长度和花的干重高,但是在这些参数上没有发现光质的显着影响。在相对湿度较高的情况下,HPS和LED在黑暗期间的gsw仍然很高,表明没有黑暗引起的闭合。然而,LED减少了在高光和黑暗条件下在高RH下的电导率,这表明与LED一起生长时,气孔减少,封闭能力更好。与HPS相比,中度RH在LED下的电导率较低,但两种光质量都会导致在黑暗中关闭。与在中度RH下生长的叶子相比,在高RH下生长的植物的干燥叶子显示出快速的水分流失。与中度RH相比,在高RH下生长的植物的气孔长度和孔孔径明显更高。与在高RH和HPS下生长的植物相比,在高RH下使用LED培育的植物表现出耐干燥性。在第二个实验中,高湿和中湿都显示出相似的模式,随着UV-B暴露1小时,电导率降低。 UV-B不能诱导更好的闭合,相反发现相反,在高RH下发育并暴露于UV-B的植物在干燥试验中水分损失更高。发现在iiiUV-B处理的高湿度和中等湿度下,类黄酮和花青素的比较没有意义。因此,本研究的结论是光质量可以用作改善高RH条件下气孔功能的工具。与传统的HPS灯相比,通过使用具有更多蓝光(20%)的LED,发现了更好的暗感应关闭效果,并且发现了更好的耐干燥性。在高RH下使用UV-B不会改善气孔功能,反而会导致更高的水分流失。光质量和空气湿度之间的交互作用需要进一步研究,但是光质量可以成为有用的工具之一,因为人们认为LED是未来温室中的重要光源。

著录项

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    Poudel Madhu Sudhan;

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  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 eng
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