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Heliotropic Leaf Movements in Common Beans Controlled by Air Temperature

机译:气温控制下普通豆的日光叶片运动

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摘要

Heliotropic leaf movements were examined in common beans (Phaseolus vulgaris cv Blue Lake Bush) under outdoor and laboratory conditions. Heliotropic leaf movements in well-watered plants were partly controlled by temperature, and appeared to be independent of atmospheric humidity and CO2 concentration. When environmental conditions were held constant in the laboratory, increased air temperature caused bean leaves to orient more obliquely to a light source. Ambient CO2, intercellular CO2, and net photosynthesis were not correlated with the temperature-induced changes in heliotropic movements, nor did they significantly affect these movements directly. The effect of air temperature on leaf movements need not be mediated through a change in leaf water potential, transpiration, or leaf conductance. Air temperature modified laminar orientation in light through its effect on tissue temperature in the pulvinal region, not that of the lamina or petiole. However, under darkness the temperature effects on leaf movements were not expressed. Active heliotropic movements in response to air temperature allowed lamina temperature to remain close to the thermal optimum of photosynthesis. This temperature effect underlies a commonly observed pattern of leaf movements under well-watered conditions: a tendency for leaves to face the sun more obliquely on hot days than cool days.
机译:在室外和实验室条件下,在普通豆(菜豆(Phaseolus vulgaris cv蓝湖布什))中检查了日光叶片的运动。水分充足的植物中日向性叶片运动部分受温度控制,并且似乎与大气湿度和CO2浓度无关。当实验室中的环境条件保持恒定时,升高的空气温度会使豆叶更偏向光源。环境CO2,细胞间CO2和净光合作用与温度引起的日光运动无关,也没有直接影响这些运动。气温对叶片运动的影响无需通过叶片水势,蒸腾作用或叶片电导的变化来介导。空气温度通过改变其在椎管区域而不是椎板或叶柄的组织温度中的作用而改变了光中的层流方向。然而,在黑暗中,未表现出温度对叶片运动的影响。响应于空气温度的主动日光运动使叶片温度保持在接近光合作用的热最适温度。这种温度效应是在水量充足的条件下通常观察到的叶子运动模式的基础:在炎热的天气中,叶片比凉爽的天气更倾向于斜着面对阳光。

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