首页> 外文期刊>Journal of Photochemistry and Photobiology, B. Biology: Official Journal of the European Society for Photobiology >Effect of photosystem I inactivation on chlorophyll a fluorescence induction in wheat leaves: Does activity of photosystem I play any role in OJIP rise?
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Effect of photosystem I inactivation on chlorophyll a fluorescence induction in wheat leaves: Does activity of photosystem I play any role in OJIP rise?

机译:光系统I失活对小麦叶片叶绿素a荧光诱导的影响:光系统I的活性在OJIP升高中起任何作用吗?

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Interpretation of the fast chlorophyll a fluorescence induction is still a subject of continuing discussion. One of the contentious issues is the influence of photosystem I (PSI) activity on the kinetics of the thermal JIP-phase of OJIP rise. To demonstrate this influence, we realized a series of measurements in wheat leaves subjected to PSI photoinactivation by the sequence of red saturation pulses (15,000 mu mol photons m(-2) s(-1) for 0.3 s, every 10 s) applied in darkness. Such a treatment led to a moderate decrease of maximum quantum efficiency of PSII (by similar to 8%), but a strong decrease of the number of oxidizable PSI (by similar to 55%), which considerably limited linear electron transport and CO2 assimilation. Surprisingly, the PSI photoinactivation had low effects on OJIP kinetics of variable fluorescence. In particular, the amplitude of variable fluorescence of IP-step (Delta V-IP), which has been considered to be a measure of PSI content, was not decreased, despite the low content of photooxidizable PSI. On the other hand, the slower relaxation of chlorophyll fluorescence after saturation pulse as well as the results of the double-hit method suggest that PSI inactivation treatment led to an increase of the fraction of Q(B)-nonreducing PSII reaction centers. Our results somewhat challenge the mainstream interpretations of JIP-thermal phase, and at least suggest that the IP amplitude cannot serve to estimate reliably the PSI content or the PSI to PSII ratio. Moreover, these results recommend the use of the novel method of PSI inactivation, which might help clarify some important issues needed for the correct understanding of the OJIP fluorescence rise. (C) 2015 Elsevier B.V. All rights reserved.
机译:快速叶绿素a荧光诱导的解释仍是继续讨论的主题。有争议的问题之一是光系统I(PSI)活动对OJIP上升热JIP相动力学的影响。为了证明这种影响,我们通过应用红色饱和脉冲序列(15,000μmol光子m(-2)s(-1)持续0.3 s,每10 s)对PSI光灭活的小麦叶片进行了一系列测量。黑暗。这种处理导致PSII的最大量子效率适度降低(降低了约8%),但是可氧化PSI的数量却大大降低了(降低了约55%),这大大限制了线性电子传输和CO2同化。令人惊讶的是,PSI光灭活对可变荧光的OJIP动力学影响很小。尤其是,尽管光可氧化的PSI含量低,但IP步长可变荧光(Delta V-IP)的幅度并未被认为是PSI含量的量度。另一方面,饱和脉冲后叶绿素荧光的缓慢弛豫以及双重打击方法的结果表明,PSI灭活处理导致Q(B)还原性PSII反应中心的分数增加。我们的结果在某种程度上挑战了JIP热相的主流解释,并且至少表明IP幅度不能可靠地估计PSI含量或PSI与PSII的比率。此外,这些结果建议使用PSI灭活的新方法,这可能有助于阐明正确理解OJIP荧光上升所需的一些重要问题。 (C)2015 Elsevier B.V.保留所有权利。

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