Kowalczyk Nathalie, Rappaport Fabrice, Boyen Catherine, Wollman Francis-André, Collén Jonas, Joliot Pierre
Station Biologique de Roscoff, CNRS-UPMC, Roscoff, Brittany, France.
Biochim Biophys Acta. 2013 Jul;1827(7):834-42. doi: 10.1016/j.bbabio.2013.04.004. Epub 2013 Apr 26.
Chondrus crispus is a species of red algae that grows on rocks from the middle intertidal into the subtidal zones of the North Atlantic coasts. As such, it has to cope with strongly variable abiotic conditions. Here we studied the response of the photosynthetic apparatus of this red alga to illumination. We found that, as previously described in the case of the unicellular alga Rhodella violacea (E. Delphin et al., Plant Physiol. 118 (1998) 103-113), a single multi-turnover saturating pulse of light is sufficient to induce a strong quenching of fluorescence. To elucidate the mechanisms underlying this fluorescence quenching, we combined room temperature and 77K fluorescence measurements with absorption spectroscopy to monitor the redox state of the different electron carriers in the chain. In addition, we studied the dependence of these various observables upon the excitation wavelength. This led us to identify energy spill-over from Photosystem II to Photosystem I rather than a qE-type non-photochemical quenching as the major source of fluorescence quenching that develops upon a series of 200ms pulses of saturating light results, in line with the conclusion of Ley and Butler (Biochim. Biophys. Acta 592 (1980) 349-363) from their studies of the unicellular red alga Porphyridium cruentum. In addition, we show that the onset of this spill-over is triggered by the reduction of the plastoquinone pool.
皱波角叉菜是一种红藻,生长在北大西洋海岸从潮间带中部到潮下带的岩石上。因此,它必须应对剧烈变化的非生物条件。在此,我们研究了这种红藻光合装置对光照的响应。我们发现,正如之前在单细胞藻类紫红红藻(E. Delphin等人,《植物生理学》118 (1998) 103 - 113)的研究中所描述的那样,单个多周转饱和光脉冲足以诱导强烈的荧光猝灭。为了阐明这种荧光猝灭背后的机制,我们将室温及77K荧光测量与吸收光谱相结合,以监测链中不同电子载体的氧化还原状态。此外,我们研究了这些不同观测结果对激发波长的依赖性。这使我们确定,从光系统II到光系统I的能量溢出而非qE型非光化学猝灭是在一系列200毫秒饱和光脉冲作用下产生的荧光猝灭的主要来源,这与Ley和Butler(《生物化学与生物物理学报》592 (1980) 349 - 363)对单细胞红藻紫球藻的研究结论一致。此外,我们表明这种溢出的起始是由质体醌库的还原触发的。