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Light quality and temperature effects on antirrhinum growth and development

机译:抗菌生长和发育的光质和温度效应

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An experiment was carried out to examine the effects of light quality on the growth and development of antirrhinum under three different temperatures 19 °C, 24 °C and 27 °C in glasshouses. Five different colour filters (i.e. ‘Red absorbing’, ‘Blue absorbing’, ‘Blue and Red absorbing’ and two ‘partially Blue absorbing’ materials) were tested, with one clear polythene as a control. Plant height, internode length and leaf area were significantly affected by the spectral filters as well as the temperature. Analysis of color filter’s effect on presumed photoreceptors to exist indicated that antirrhinum plant height was regulated by the action of a blue acting photoreceptor (BAP) and not the phytochrome. There was no evidence for an effect of phytochrome or BAP on time to flowering, however, increasing temperature levels effectively decreased the time to flowering. To predict the effects of different spectral qualities and temperature, simple models were created from data on plant height, internode length and time to flowering. These models were then applied to simulate the potential benefits of spectral filters and temperature in manipulation of growth control and flowering in antirrhinum.
机译:进行了实验,以检测光质质量对玻璃静脉中的三种不同温度下的抗饲料素生长和发育的影响,24℃和27℃。测试了五种不同的滤色器(即“红色吸收”,“蓝色吸收”,“蓝色和红色吸收”和两个“部分蓝色吸收”材料),用一个透明的聚则作为对照。植物高度,节间长度和叶面积受光谱过滤器以及温度的显着影响。滤色器对假定光感受器的影响分析表明,通过蓝色作用感光体(BAP)的作用而不是植物的作用来调节抗饲料植物高度。然而,没有证据表明植物或烤盘对开花的作用,然而,随着温度水平的增加,有效地降低了开花的时间。为了预测不同光谱品质和温度的影响,从植物高度,节间长度和时间到开花的数据创建了简单的模型。然后应用这些模型来模拟光谱滤波器和温度的潜在益处,在antIrrhinum中操纵生长控制和开花。

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