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樟子松光系统II的季节性适应。I. 估算持续热能耗散和光化学的速率常数。

Seasonal acclimation of photosystem II in Pinus sylvestris. I. Estimating the rate constants of sustained thermal energy dissipation and photochemistry.

作者信息

Porcar-Castell Albert, Juurola Eija, Nikinmaa Eero, Berninger Frank, Ensminger Ingo, Hari Pertti

机构信息

Department of Forest Ecology, University of Helsinki, P.O. Box 27, 00014 Helsinki, Finland.

出版信息

Tree Physiol. 2008 Oct;28(10):1475-82. doi: 10.1093/treephys/28.10.1475.

DOI:10.1093/treephys/28.10.1475
PMID:18708329
Abstract

Acclimation of the partitioning of absorbed light energy in Photosystem II (PSII) between photochemical and non-photochemical processes includes short-term adjustments that are rapidly reversed in the dark and seasonal acclimation processes that are unaffected by dark acclimation. Thus, by using dark-acclimated leaves to study the seasonal acclimation of PSII, the confounding effect of short-term adjustments is eliminated. The maximum quantum yield of photochemistry, estimated by chlorophyll fluorescence analysis as F(v)/F(m), where F(v) = (F(m) - F(o)), and F(m) and F(o) are maximum and minimum chlorophyll fluorescence, respectively, has been widely used to follow the seasonal acclimation of PSII, because it is measured in dark-acclimated leaves. Seasonal changes in F(v)/F(m) can be caused by adjustments in either the photochemical capacity in PSII, or the capacity of thermal dissipation in PSII, or both. However, there is a lack of chlorophyll fluorescence parameters that can distinguish between these processes. In this study, we introduce two new parameters: the rate constants of sustained thermal energy dissipation (k(NPQ)) and of photochemistry (k(P)). We estimated k(NPQ) and k(P) from dark-acclimated F(o) and F(m) measured during spring recovery of photosynthesis in Scots pine (Pinus sylvestris L.) trees. We suggest that k(NPQ) and k(P) be used to study the mechanisms underlying the observed seasonal acclimation in PSII, because these parameters provide quantitative data that complement and extend F(v)/F(m) measurements.

摘要

光系统II(PSII)中吸收光能在光化学和非光化学过程之间分配的驯化包括短期调节,这种调节在黑暗中会迅速逆转,以及不受暗驯化影响的季节性驯化过程。因此,通过使用暗适应的叶片来研究PSII的季节性驯化,消除了短期调节的混杂效应。通过叶绿素荧光分析估算的光化学最大量子产率F(v)/F(m),其中F(v) = (F(m) - F(o)),F(m)和F(o)分别是最大和最小叶绿素荧光,已被广泛用于跟踪PSII的季节性驯化,因为它是在暗适应的叶片中测量的。F(v)/F(m)的季节性变化可能是由PSII中光化学能力的调节、PSII中热耗散能力的调节或两者共同作用引起的。然而,缺乏能够区分这些过程的叶绿素荧光参数。在本研究中,我们引入了两个新参数:持续热能耗散速率常数(k(NPQ))和光化学速率常数(k(P))。我们从苏格兰松(Pinus sylvestris L.)树木光合作用春季恢复期间测量的暗适应F(o)和F(m)估算了k(NPQ)和k(P)。我们建议使用k(NPQ)和k(P)来研究PSII中观察到的季节性驯化背后的机制,因为这些参数提供了补充和扩展F(v)/F(m)测量的定量数据。

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