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发光二极管作为光合作用研究的光源。

Light-emitting diodes as a light source for photosynthesis research.

机构信息

Department of Botany, University of Wisconsin-Madison, 430 Lincoln Drive, 53706, Madison, WI, USA.

出版信息

Photosynth Res. 1994 Jan;39(1):85-92. doi: 10.1007/BF00027146.

Abstract

Light-emitting diodes (LED) can provide large fluxes of red photons and so could be used to make lightweight, efficient lighting systems for photosynthetic research. We compared photosynthesis, stomatal conductance and isoprene emission (a sensitive indicator of ATP status) from leaves of kudzu (Pueraria lobata (Willd) Ohwi.) enclosed in a leaf chamber illuminated by LEDs versus by a xenon arc lamp. Stomatal conductance was measured to determine if red LED light could sufficiently open stomata. The LEDs produced an even field of red light (peak emission 656±5 nm) over the range of 0-1500 μmol m(-2) s(-1). Under ambient CO2 the photosynthetic response to red light deviated slightly from the response measured in white light and stomatal conductance followed a similar pattern. Isoprene emission also increased with light similar to photosynthesis in white light and red light. The response of photosynthesis to CO2 was similar under the LED and xenon arc lamps at equal photosynthetic irradiance of 1000 μmol m(-2) s(-1). There was no statistical difference between the white light and red light measurements in high CO2. Some leaves exhibited feedback inhibition of photosynthesis which was equally evident under irradiation of either lamp type. Photosynthesis research including electron transport, carbon metabolism and trace gas emission studies should benefit greatly from the increased reliability, repeatability and portability of a photosynthesis lamp based on light-emitting diodes.

摘要

发光二极管(LED)可以提供大量的红光光子,因此可以用于制作用于光合作用研究的轻量级、高效照明系统。我们比较了用 LED 灯和氙弧灯照射的 Kudzu(Pueraria lobata (Willd) Ohwi.)叶片的光合作用、气孔导度和异戊二烯排放(ATP 状态的敏感指标)。测量气孔导度以确定红光 LED 光是否足以打开气孔。LED 产生了一个均匀的红光场(峰值发射 656±5nm),范围为 0-1500μmol m(-2)s(-1)。在环境 CO2 下,红光的光合作用响应与白光下测量的响应略有偏差,气孔导度也遵循类似的模式。异戊二烯排放也与白光和红光中的光合作用相似,随着光的增加而增加。在 1000μmol m(-2)s(-1)的相同光合作用辐照度下,LED 和氙弧灯下的光合作用对 CO2 的响应相似。在高 CO2 下,白光和红光测量之间没有统计学差异。一些叶片表现出光合作用的反馈抑制,这在两种灯型的照射下同样明显。基于发光二极管的光合作用灯具有更高的可靠性、可重复性和便携性,这将极大地促进电子传递、碳代谢和痕量气体排放研究等光合作用研究。

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