首页> 外文期刊>Scientia horticulturae >Red:far-red light ratio and far-red light integral promote or retard growth and flowering in Eustoma grandiflorum (Raf.) Shinn
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Red:far-red light ratio and far-red light integral promote or retard growth and flowering in Eustoma grandiflorum (Raf.) Shinn

机译:红色:远红光比率和远红光积分促进或阻碍桔梗(Raf。Shinn)的生长和开花。

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Night break treatment was applied to Eustoma grandiflorum 'Nail Peach Neo' using light sources with different red (R: 660pl30nm): far-red (FR: 730pl30nm) ratios or FR light intensities in order to investigate growth and flowering responses. Flower initiation and induction were promoted by night break treatment with a low R:FR light source, but was delayed by a high R:FR ratio. The promotion or delay of flower bud formation was accompanied by a decrease or an increase, respectively, in the number of nodes on the main stem at anthesis to the first floret. The difference between date of visible bud with plants under night break treatment and that of the control was approximated with high accuracy by a sigmoid function of the logarithms of R:FR ratio. The threshold R:FR ratio demarcating the promotion and delay of date of visible bud was about 5.3 under the experimental conditions used. The critical R:FR ratios for promotion or delay of visible bud would be about 0.5 and 50.0, respectively. In addition, the time from planting to visible bud was approximated with an exponential function of FR light intensity. The maximum acceleration of date of visible bud by long-day treatment would be 20 days, and the critical FR light intensity would be 2.0omolmpo sp#. It is concluded that growth and flowering of E. grandiflorum can be regulated by long-day treatment using light sources with different R:FR ratios or FR light intensities.
机译:为了研究生长和开花反应,使用具有不同红色(R:660pl30nm):远红色(FR:730pl30nm)比或FR光强度的光源对洋桔梗'Nail Peach Neo'进行了夜间休息处理。通过低R:FR光源进行的夜间休息处理可以促进花的萌生和诱导,但是由于高R:FR比而延迟了开花。花芽形成的促进或延迟分别伴随着到第一小花的开花期的主茎上节的数量减少或增加。通过R:FR比对数的S形函数,可以高精度地估算出经过夜间休息处理的植物的可见芽日期与对照之间的差值。在所使用的实验条件下,划定可见芽的促进和延迟日期的阈值R:FR比为约5.3。促进或延迟可见芽的临界R:FR比分别约为0.5和50.0。另外,从种植到可见芽的时间用FR光强度的指数函数估算。通过长时间的处理,可见芽的最大日期加速将为20天,并且临界FR光强度将为2.0omolmpo sp#。结论是,通过使用不同R:FR比或FR光照强度的光源进行长日照处理,可以调节大眼沙棘的生长和开花。

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