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首页> 外文期刊>Annals of Applied Biology >A new method to determine the energy saving night temperature for vegetative growth of Phalaenopsis
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A new method to determine the energy saving night temperature for vegetative growth of Phalaenopsis

机译:确定蝴蝶兰营养生长的节能夜间温度的新方法

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摘要

Knowledge of the energy saving night temperature (i.e. a relatively cool night temperature without affecting photosynthetic activity and physiology) and a better understanding of low night temperature effects on the photosynthetic physiology of Phalaenopsis would improve their production in terms of greenhouse temperature control and energy use. Therefore, Phalaenopsis 'Hercules' was subjected to day temperatures of 27.5 degrees C and night temperatures of 27.0 degrees C, 24.2 degrees C, 21.2 degrees C, 18.3 degrees C, 15.3 degrees C or 12.3 degrees C in a growth chamber. A new tool for the determination of the energy saving night temperature range was developed based on temperature response curves of leaf net CO2 exchange, chlorophyll fluorescence, organic acid content and carbohydrate concentrations. The newly developed method was validated during a complete vegetative cultivation in a greenhouse environment with eight Phalaenopsis hybrids (i.e. 'Boston', 'Bristol', 'Chalk Dust', 'Fire Fly', 'Lennestadt', 'Liverpool', 'Precious', 'Vivaldi') and dayight temperature set points of 28/28 degrees C, 29/23 degrees C and 29/17 degrees C. Temperature response curves revealed an overall energy saving night temperature range for nocturnal CO2 uptake, carbohydrate metabolism, organic acid accumulation and photosystem II (PSII) photochemistry of 17.1 degrees C to 19.9 degrees C for Phalaenopsis 'Hercules'. At the lower end of this energy saving night temperature range, a high malate-to-citrate ratio switched towards a low ratio and this transition seemed to alleviate effects of night chilling induced photoinhibition. At night temperatures of 24 degrees C or higher, the degradation of starch, glucose and fructose indicated an increased respiratory CO2 production. During the greenhouse validation experiment, the differences between the eight Phalaenopsis hybrids with regard to their response to the warm day/cool night temperature regimes were remarkably large. In general, the dayight temperature of 29/17 degrees C led to a significantly lower biomass accumulation and less leaves which were in addition shorter, narrower and smaller in size as compared to the dayight temperature regimes of 28/28 degrees C and 29/23 degrees C. During week 25 of the cultivation period, plants matured and flower initiation steeply increased for all hybrids and in each dayight temperature regime. Before week 25, early spiking was only sufficiently suppressed in the 29/23 degrees C and 29/17 degrees C temperature regimes for three hybrids ('Boston', 'Bristol' and 'Lennestadt') but not in the other five hybrids. Although a considerable biochemical flexibility was demonstrated for Phalaenopsis 'Hercules', inhibition of flowering after exposure to a combination of warm days and cool nights appeared to be largely hybrid dependent.
机译:了解节能的夜间温度(即相对凉爽的夜间温度而不影响光合作用和生理学)以及更好地了解夜间低温对蝴蝶兰光合生理的影响将改善温室温度控制和能源使用方面的生产。因此,蝴蝶兰“ Hercules”在生长室内经受的白天温度为27.5摄氏度,夜间温度为27.0摄氏度,24.2摄氏度,21.2摄氏度,18.3摄氏度,15.3摄氏度或12.3摄氏度。根据叶片净CO 2交换,叶绿素荧光,有机酸含量和碳水化合物浓度的温度响应曲线,开发了确定节能夜间温度范围的新工具。新开发的方法已在温室环境中与八种蝴蝶兰杂种(即“波士顿”,“布里斯托尔”,“粉尘”,“萤火虫”,“莱内斯塔特”,“利物浦”,“珍贵”)进行了完整的营养栽培期间得到验证,“ Vivaldi”)和白天/晚上的温度设定点分别为28/28摄氏度,29/23摄氏度和29/17摄氏度。温度响应曲线显示,夜间夜间二氧化碳吸收,碳水化合物代谢,蝴蝶兰“ Hercules”的有机酸累积和光系统II(PSII)光化学在17.1摄氏度至19.9摄氏度之间。在此节能夜间温度范围的下限,苹果酸/柠檬酸的比例较高,而柠檬酸/柠檬酸的比例较低,这种转变似乎减轻了夜间冷却引起的光抑制作用。在24摄氏度或更高的夜间温度下,淀粉,葡萄糖和果糖的降解表明呼​​吸中二氧化碳的产生增加。在温室验证实验中,八个蝴蝶兰杂种之间在对白天/夜晚的凉爽温度条件下的响应差异很大。通常,与28/28摄氏度的昼/夜温度相比,昼/夜温度29/17摄氏度导致生物量积累显着降低,叶片更少,此外,叶子的长度更短,更窄且更小。和29/23摄氏度。在培养期的第25周,对于所有杂种而言,在每天/夜晚的温度范围内,植物均已成熟且花期急剧增加。在第25周之前,对于三种混合动力车(“波士顿”,“布里斯托尔”和“莱内斯塔特”),只有在29/23°C和29/17°C的温度范围内,才可以充分抑制早期尖峰信号,而其他五个混合动力车则不能。尽管蝴蝶兰具有显着的生化灵活性,但暴露于温暖的夜晚和凉爽的夜晚后,对开花的抑制作用很大程度上取决于杂种。

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