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Deconvolution of ferredoxin plastocyanin and P700 transmittance changes in intact leaves with a new type of kinetic LED array spectrophotometer

机译:使用新型动态LED阵列分光光度计对完整叶片中的铁氧还蛋白质体蓝素和P700透射率变化进行反卷积

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摘要

A newly developed compact measuring system for assessment of transmittance changes in the near-infrared spectral region is described; it allows deconvolution of redox changes due to ferredoxin (Fd), P700, and plastocyanin (PC) in intact leaves. In addition, it can also simultaneously measure chlorophyll fluorescence. The major opto-electronic components as well as the principles of data acquisition and signal deconvolution are outlined. Four original pulse-modulated dual-wavelength difference signals are measured (785–840 nm, 810–870 nm, 870–970 nm, and 795–970 nm). Deconvolution is based on specific spectral information presented graphically in the form of ‘Differential Model Plots’ (DMP) of Fd, P700, and PC that are derived empirically from selective changes of these three components under appropriately chosen physiological conditions. Whereas information on maximal changes of Fd is obtained upon illumination after dark-acclimation, maximal changes of P700 and PC can be readily induced by saturating light pulses in the presence of far-red light. Using the information of DMP and maximal changes, the new measuring system enables on-line deconvolution of Fd, P700, and PC. The performance of the new device is demonstrated by some examples of practical applications, including fast measurements of flash relaxation kinetics and of the Fd, P700, and PC changes paralleling the polyphasic fluorescence rise upon application of a 300-ms pulse of saturating light.Electronic supplementary materialThe online version of this article (doi:10.1007/s11120-016-0219-0) contains supplementary material, which is available to authorized users.
机译:描述了一种新开发的紧凑型测量系统,用于评估近红外光谱区域中的透射率变化;它允许对完整叶片中铁氧还蛋白(Fd),P700和质体蓝素(PC)引起的氧化还原变化进行反卷积。此外,它还可以同时测量叶绿素荧光。概述了主要的光电组件以及数据采集和信号反卷积的原理。测量了四个原始脉冲调制的双波长差信号(785-840 nm,810-870 nm,870-970 nm和795-970 nm)。反卷积是基于以Fd,P700和PC的“差分模型图”(DMP)形式以图形方式呈现的特定光谱信息,这些信息是根据在适当选择的生理条件下这三种成分的选择性变化凭经验得出的。尽管在暗适应后照明后可获得有关Fd最大变化的信息,但在远红光的存在下,通过使光脉冲饱和可以很容易地诱导出P700和PC的最大变化。利用DMP和最大变化信息,新的测量系统可以对Fd,P700和PC进行在线反卷积。新设备的性能通过一些实际应用实例得到了证明,包括快速测量闪光弛豫动力学以及Fd,P700和PC的变化,这些变化与施加300 ms饱和光脉冲后的多相荧光上升平行。补充材料本文的在线版本(doi:10.1007 / s11120-016-0219-0)包含补充材料,授权用户可以使用。

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