• Title of article

    Dynamics of the xanthophyll cycle and non-radiative dissipation of absorbed light energy during exposure of Norway spruce to high irradiance

  • Author/Authors

    Michal ?troch، نويسنده , , Kristina Kuldov?، نويسنده , , Ji?? Kalina، نويسنده , , Vladim?r ?punda، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2008
  • Pages
    11
  • From page
    612
  • To page
    622
  • Abstract
    The response of Norway spruce saplings (Picea abies [L.] Karst.) was monitored continuously during short-term exposure (10 days) to high irradiance (HI; 1000 μmol m−2 s−1). Compared with plants acclimated to low irradiance (100 μmol m−2 s−1), plants after HI exposure were characterized by a significantly reduced CO2 assimilation rate throughout the light response curve. Pigment contents varied only slightly during HI exposure, but a rapid and strong response was observed in xanthophyll cycle activity, particularly within the first 3 days of the HI treatment. Both violaxanthin convertibility under HI and the amount of zeaxanthin pool sustained in darkness increased markedly under HI conditions. These changes were accompanied by an enhanced non-radiative dissipation of absorbed light energy (NRD) and the acceleration of induction of both NRD and de-epoxidation of the xanthophyll cycle pigments. We found a strong negative linear correlation between the amount of sustained de-epoxidized xanthophylls and the photosystem II (PSII) photochemical efficiency (FV/FM), indicating photoprotective down-regulation of the PSII function. Recovery of FV/FM at the end of the HI treatment revealed that Norway spruce was able to cope with a 10-fold elevated irradiance due particularly to an efficient NRD within the PSII antenna that was associated with enhanced violaxanthin convertibility and a light-induced accumulation of zeaxanthin that persisted in darkness.
  • Keywords
    Chlorophyll fluorescence , photoinhibition , Picea abies , xanthophyll cycle , Non-radiative dissipation
  • Journal title
    Journal of Plant Physiology
  • Serial Year
    2008
  • Journal title
    Journal of Plant Physiology
  • Record number

    1281402