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Gas Exchange and Phytoluminography of Single Red Kidney Bean Leaves during Periods of Induced Stomatal Oscillations

机译:气孔振荡诱导期期间单个红芸豆叶片的气体交换和植物X线照相术

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摘要

This report examines the capabilities of a new approach to the study of gas exchange and electron transport properties of single, intact leaves. The method combines conventional aspects of analysis with an image intensification system that records the spatial distribution of delayed light emission (DLE) over single leaf surfaces. The combined system was used to investigate physiological perturbations induced by exposure of single leaves of Phaseolus vulgaris cv `California Light Red' to a combination of SO2 (0.5 microliters per liter) and ozone (0.1 microliters per liter). Exposure of one-half of a leaf to this combination induced DLE and stomatal oscillations, but only in the half of the leaf exposed to the combined gases. Examination of phytoluminographs taken during these oscillations revealed distinct leaf patches where the greatest changes in DLE intensity occurred. This phenomenon is interpreted to be evidence that control of stomatal activity of intact plant leaves occurs within discrete leaf areas defined within the vascular network.
机译:本报告探讨了一种研究单一完整叶片的气体交换和电子传输特性的新方法的功能。该方法将传统的分析方面与图像增强系统相结合,该系统记录了单个叶片表面上延迟发光(DLE)的空间分布。该组合系统用于研究菜豆单叶菜“加利福尼亚浅红色”暴露于SO2(每升0.5微升)和臭氧(每升0.1微升)的组合引起的生理扰动。将一半的叶子暴露于这种组合下会引起DLE和气孔振荡,但仅在一半的叶子中暴露于混合气体下。在这些振荡期间进行的植物荧光检查仪检查显示出明显的叶斑,其中发生了DLE强度的最大变化。该现象被解释为是对完整植物叶片气孔活动的控制发生在血管网络内限定的离散叶片区域内的证据。

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