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气孔对环境因素的响应——用普通水龙骨离体表皮条进行的实验:I. 温度与湿度

Responses of stomata to environmental factors-experiments with isolated epidermal strips of Polypodium vulgare : I. Temperature and Humidity.

作者信息

Lösch R

机构信息

Lehrstuhl Botanik II, Botanisches Institut der Universität, Mittlerer Dallenbergweg 64, D-8700, Würzburg, Federal Republic of Germany.

出版信息

Oecologia. 1977 Mar;29(1):85-97. doi: 10.1007/BF00345365.

Abstract

Stomatal responses in isolated epidermis strips of the fern Polypodium vulgare to humidity and temperature were investigated. Movements were observed under a microscope, the epidermis being mounted in a climatized chamber above a water table, the gap between tissue and water being similar to that between epidermis and mesophyll in the intact leaf. Stomatal aperture increases as the water vapor deficit is decreased. The relationship is approximately linear until full aperture is reached. The speed of stomatal movement depends on the magnitude of the change in saturation deficit. Temperature also exerts a strong influence on stomatal aperture. Low temperature causes closure. Maximal opening occurs between about 20° C and 28° C. Higher temperature leads to a slight reduction in aperture. The temperature range corresponding to maximum apertures depends on the temperature that prevailed during cultivation of the plants. The data are used to construct three-dimensional graphs showing stomatal behavior under the simultaneous influence of temperature and humidity for plants of different precultivation. The possible mechanisms that lead to the observed stomatal reactions are discussed.

摘要

对水龙骨蕨分离表皮条对湿度和温度的气孔反应进行了研究。在显微镜下观察运动情况,将表皮安装在高于地下水位的气候控制室内,组织与水之间的间隙与完整叶片中表皮与叶肉之间的间隙相似。随着水汽亏缺的减小,气孔孔径增大。在达到完全孔径之前,这种关系近似线性。气孔运动的速度取决于饱和亏缺变化的幅度。温度对气孔孔径也有强烈影响。低温导致气孔关闭。最大开度出现在约20℃至28℃之间。温度升高会导致孔径略有减小。对应最大孔径的温度范围取决于植物栽培期间的盛行温度。这些数据用于构建三维图,展示不同预培养条件下植物在温度和湿度同时影响下的气孔行为。讨论了导致观察到的气孔反应的可能机制。

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