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Photoinactivation of photosystem II: is there more than one way to skin a cat?

机译:光系统II的光灭活:是否有不止一种方式给猫皮?

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We briefly review the main mechanisms proposed for photodamage to photosystem II (PSII), at the donor and acceptor sides, and then discuss the mechanism whereby filamentous cyanobacteria inhabiting biological sand crusts such as Microcoleus sp. are able to avoid serious damage to their photosynthetic machinery. We show that the decline in fluorescence following exposure to excess light does not reflect a reduction in PSII activity but rather the activation of a non-radiative charge recombination in PSII. Furthermore, we show that the difference in the thermoluminescent peak temperature intensities in these organisms, in the presence and absence of inhibitors such as dichlorophenyl-dimethylurea (DCMU), is smaller than observed in model organisms suggesting that the redox gap between Q(A)- and P-680+ is smaller. On the basis of these data, we propose that this could enable an alternative, pheophytin-independent recombination, thereby minimizing the damaging 1O(2) production associated with radiative recombination.
机译:我们简要回顾了在供体和受体侧对光系统II(PSII)造成光损伤的主要机理,然后讨论了丝状蓝细菌栖息在生物沙壳(如Microcoleus sp。)中的机理。能够避免严重损害其光合机械。我们表明暴露于过量光后荧光的下降并不反映PSII活性的降低,而是PSII中非辐射电荷重组的激活。此外,我们表明,在存在和不存在抑制剂(例如二氯苯基-二甲基脲(DCMU))的情况下,这些生物体中热发光峰温度强度的差异小于模型生物体中观察到的差异,表明Q(A)之间的氧化还原间隙-并且P-680 +较小。根据这些数据,我们建议这可以实现一种替代的脱镁叶绿素非依赖性重组,从而最大程度地减少与辐射重组相关的1O(2)破坏性生产。

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