Ware Maxwell A, Belgio Erica, Ruban Alexander V
School of Biological and Chemical Sciences, Queen Mary University of London, Mile End Road, London, E1 4NS, UK.
Photosynth Res. 2015 Dec;126(2-3):261-74. doi: 10.1007/s11120-015-0102-4. Epub 2015 Feb 22.
Arabidopsis plants grown at low light were exposed to a gradually increasing actinic light routine. This method allows for the discerning of the photoprotective component of NPQ, pNPQ and photoinhibition. They exhibited lower values of Photosystem II (PSII) yield in comparison to high-light grown plants, and higher calculated dark fluorescence level (F'o calc.) than the measured one (F'o act.). As a result, in low-light grown plants, the values of qP measured in the dark appeared higher than 1. Normally, F'o act. and F'o calc. match well at moderate light intensities but F'o act. becomes higher at increasing intensities due to reaction centre (RCII) damage; this indicates the onset of photoinhibition. To explain the unusual increase of qP in the dark in low-light grown plants, we have undertaken an analysis of PSII antenna size using biochemical and spectroscopic approaches. Sucrose gradient separation of thylakoid membrane complexes and fast fluorescence induction experiments illustrated that the relative PSII cross section does not increase appreciably with the rise in PSII antenna size in the low-light grown plants. This suggests that part of the increased LHCII antenna is less efficiently coupled to the RCII. A model based upon the existence of an uncoupled population LHCII is proposed to explain the discrepancies in calculated and measured values of F'o.
在弱光条件下生长的拟南芥植株被置于逐渐增强的光化光程序中。这种方法能够区分非光化学淬灭(NPQ)的光保护成分、pH依赖性非光化学淬灭(pNPQ)和光抑制。与在强光下生长的植株相比,它们的光系统II(PSII)量子产率较低,且计算得出的暗荧光水平(F'o calc.)高于实测值(F'o act.)。因此,在弱光下生长的植株中,在黑暗中测得的qP值似乎高于1。通常情况下,在中等光照强度下,F'o act.和F'o calc.匹配良好,但随着光照强度增加,由于反应中心(RCII)受损,F'o act.会变得更高;这表明光抑制开始。为了解释弱光下生长的植株在黑暗中qP异常升高的现象,我们采用生化和光谱方法对PSII天线大小进行了分析。类囊体膜复合物的蔗糖梯度分离和快速荧光诱导实验表明,在弱光下生长的植株中,随着PSII天线大小的增加,相对PSII横截面积并没有明显增加。这表明增加的部分LHCII天线与RCII的耦合效率较低。基于未耦合群体LHCII的存在提出了一个模型,以解释F'o计算值和测量值之间的差异。