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Photoinactivation of Photosystem II in wild-type and chlorophyll b-less barley leaves: which mechanism dominates depends on experimental circumstances

机译:野生型和无叶绿素b的大麦叶片中光系统II的光灭活:主导作用的机制取决于实验环境

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摘要

Action spectra of photoinactivation of Photosystem II (PS II) in wild-type and chlorophyll b-less barley leaf segments were obtained. Photoinactivation of PS II was monitored by the delivery of electrons from PS II to PS I following single-turnover flashes superimposed on continuous far-red light, the time course of photoinactivation yielding a rate coefficient k (i). Susceptibility of PS II to photoinactivation was quantified as the ratio of k (i) to the moderate irradiance (I) of light at each selected wavelength. k (i)/I was very much higher in blue light than in red light. The experimental conditions permitted little excess light energy absorbed by chlorophyll (not utilized in photochemical conversion or dissipated in controlled photoprotection) that could lead to photoinactivation of PS II. Therefore, direct absorption of light by Mn in PS II, rather than by chlorophyll, was more likely to have initiated the much more severe photoinactivation in blue light than in red light. Mutant leaves were ca. 1.5-fold more susceptible to photoinactivation than the wild type. Neither the excess-energy mechanism nor the Mn mechanism can explain this difference. Instead, the much lower chlorophyll content of mutant leaves could have exerted an exacerbating effect, possibly partly due to less mutual shading of chloroplasts in the mutant leaves. In general, which mechanism dominates depends on the experimental conditions.
机译:获得了在野生型和无叶绿素b的大麦叶片段中光系统II(PS II)的光灭活作用的光谱。 PS II的光灭活是通过将单周闪烁叠加在连续的远红光上之后,将电子从PS II传递到PS I来监控的,光灭活的时间过程产生速率系数k(i)。 PS II对光灭活的敏感性被量化为在每个选定波长下光的k(i)与中等辐照度(I)之比。 k(i)/ I在蓝光下比在红光下高得多。实验条件允许叶绿素吸收很少的多余光能(未用于光化学转化或在受控的光保护作用下消散了),这可能导致PS II的光灭活。因此,PS II中Mn而不是叶绿素对光的直接吸收更有可能引发蓝光比红光严重得多的光灭活。突变叶约。对光灭活的敏感性是野生型的1.5倍。过剩的能量机制和Mn机制都不能解释这种差异。取而代之的是,突变叶中较低的叶绿素含量可能会起到加剧的作用,这可能部分是由于突变叶中叶绿体相互遮蔽较少。通常,哪种机制起主导作用取决于实验条件。

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