4.3 Article

Xanthophyll cycle - a mechanism protecting plants against oxidative stress

Journal

REDOX REPORT
Volume 16, Issue 2, Pages 78-90

Publisher

TAYLOR & FRANCIS LTD
DOI: 10.1179/174329211X13020951739938

Keywords

De-epoxidation; Non-photochemical quenching; Oxidative stress; Xanthophyll cycles

Funding

  1. Faculty of Biochemistry, Biophysics and Biotechnology, Jagiellonian University
  2. European Regional Development Fund: the Polish Innovation Economy Operational Program [POIG. 02.01.00-12-167/08]

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Six different xanthophyll cycles have been described in photosynthetic organisms. All of them protect the photosynthetic apparatus from photodamage caused by light-induced oxidative stress. Overexcitation conditions lead, in the chloroplast, to the over-reduction of the NADP pool and production of superoxide, which can subsequently be metabolized to hydrogen peroxide or a hydroxyl radical, other reactive oxygen species (ROS). On the other hand, overexcitation of photosystems leads to an increased lifetime of the chlorophyll excited state, increasing the probability of chlorophyll triplet formation which reacts with triplet oxygen forming single oxygen, another ROS. The products of the light-dependent phase of xanthophyll cycles play an important role in the protection against oxidative stress generated not only by an excess of light but also by other ROS-generating factors such as drought, chilling, heat, senescence, or salinity stress. Four, mainly hypothetical, mechanisms explaining the protective role of xanthophyll cycles in oxidative stress are presented. One of them is the direct quenching of overexcitation by products of the light phase of xanthophyll cycles and three others are based on the indirect participation of xanthophyll cycle carotenoids in the process of photoprotection. They include: (1) indirect quenching of overexcitation by aggregation-dependent light-harvesting complexes (LHCII) quenching; (2) light-driven mechanisms in LHCII; and (3) a model based on charge transfer quenching between Chl a and Zx. Moreover, results of the studies on the antioxidant properties of xanthophyll cycle pigments in model systems are also presented.

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