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Circadian Rhythm of Leaves of Phaseolus angularis Plants Grown in a Controlled Carbon Dioxide and Humidity Environment

机译:在受控的二氧化碳和湿度​​环境下生长的菜豆的叶子的昼夜节律

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摘要

Leaf movements of primary leaves of Phaseolus angularis Wight. were studied in an environment with controlled levels of CO2, relative humidity, temperature, light, nutrient concentrations, and water tension. Rhythmic circadian movements and irregular short period movements were evident as the leaves unfolded and persisted during development of the leaves. The mean period in rhythmic circadian movement was 27.3 hours with no significant differences in period between plants of the same or different experiments. The leaf movements of separate plants were not closely synchronized.A system is described for growing plants for extended periods while collecting data with time lapse photography. The system was developed to minimize disturbances to the plants.The occurrence of leaf movements in plants grown from the time of seeding in an environment free of any recognized fluctuation which could stimulate leaf movements supports the hypothesis that leaf movement rhythms originate spontaneously within the plant.
机译:菜豆初生叶片的叶片运动。在控制二氧化碳水平,相对湿度,温度,光照,养分浓度和水张力的环境中进行了研究。有节奏的昼夜节律运动和不规则的短时运动是很明显的,因为叶片在叶片发育过程中会展开并持续存在。节律性昼夜节律运动的平均周期为27.3小时,相同或不同实验的植株之间的周期无明显差异。分开的植物的叶子运动没有紧密同步。描述了一种用于长时间生长植物的系统,同时使用定时摄影来收集数据。该系统的开发旨在将对植物的干扰降到最低。从播种开始,在没有任何公认的波动可能刺激叶片运动的环境中种植的植物中,叶片运动的发生就支持了叶片运动节奏在植物内自发起源的假说。

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