Graduate School of Sciences and Technology for Innovation, Yamaguchi University, Yamaguchi 753-8515, Japan.
Physiol Plant. 2019 Mar;165(3):524-536. doi: 10.1111/ppl.12745. Epub 2018 Aug 1.
Time courses of photochemical reflectance index (PRI) of an attached cucumber leaf during a dark-light transition were compared with those of photochemical yields of photosystem II (Y ) to discuss the feasibility of PRI imaging for estimating the efficiency of photosynthetic light use. Y and PRI were simultaneously evaluated with a pulse-amplitude modulation chlorophyll fluorometer and a low-cost imaging system consisting of digital cameras and band-pass filters, respectively. Y decreased immediately after the transition and then increased under various photon flux densities. Although PRI exhibited delayed time courses with respect to Y under low light conditions, PRI decreased monotonically under high light conditions. There was no correlation between Y and the changes in PRI (ΔPRI) immediately after the transition but Y was correlated with ΔPRI under the steady-state photosynthesis. These results indicate that the use of PRI to estimate Y under fluctuating light based on the regression obtained at steady state can overestimate Y . The imaging system was also applied to evaluate the spatial PRI distribution within a leaf. While PRI of leaf areas that remained untreated, or had been treated with H O again, first dropped and then rose under low light and monotonically decreased under high light conditions, leaf areas treated with inhibitor (dichlorophenyl dimethylurea) did not exhibit any changes. It is likely that the inhibitor suppressed lumen acidification, which triggers a decrease in PRI. It was suggested that Y of leaves with malfunctions in the photosynthetic electron transport can be overestimated by the PRI-based estimation.
在暗-光转变过程中,比较了附着黄瓜叶片的光化学反射指数(PRI)的时间进程与光系统 II 的光化学产量(Y ),以探讨 PRI 成像估算光合作用光利用效率的可行性。Y 和 PRI 分别用脉冲幅度调制叶绿素荧光仪和由数字相机和带通滤波器组成的低成本成像系统同时进行评估。Y 在转变后立即下降,然后在各种光子通量密度下增加。尽管在低光条件下 PRI 相对于 Y 表现出延迟的时间进程,但在高光条件下 PRI 单调下降。在转变后立即,Y 与 PRI 的变化(ΔPRI)之间没有相关性,但在稳态光合作用下,Y 与 ΔPRI 相关。这些结果表明,基于稳态获得的回归,使用 PRI 估算波动光下的 Y 可能会高估 Y 。该成像系统还用于评估叶片内的空间 PRI 分布。在低光下,未处理或再次用 H O 处理的叶片区域的 PRI 首先下降然后上升,而在高光条件下则单调下降,而用抑制剂(二氯苯基二甲基脲)处理的叶片区域则没有显示出任何变化。很可能抑制剂抑制了腔酸化,从而导致 PRI 下降。据推测,通过基于 PRI 的估计,可以高估光合作用电子传递出现故障的叶片的 Y 。