Section de Bioénergetique, DBCM (CNRS URA 1290) Bât 532, C.E.A.-Saclay, 91191, Gif-sur-Yvette, Cedex, France.
Photosynth Res. 1994 Sep;41(3):371-9. doi: 10.1007/BF02183039.
We have measured thermoluminescence (TL) and chlorophyll fluorescence from leaves of peas grown under an intermittent light regime (IML) and followed changes in those leaves during greening. IML peas show low variable fluorescence and a certain capacity for reversible non-photochemical quenching. It has been suggested that reversible quenching may be caused by pH-dependent release of Ca(2+) from Photosystem II (PS II) (Krieger and Weis (1992) Photosynthetica 27: 89-98). Under conditions in which reversible non-photochemical quenching occurs, a TL band at around 50 °C is observed, in the presence of DCMU, in IML leaves. A band in this temperature range has previously been observed in PS II depleted of Ca(2+) (Ono and Inoue (1989) Biochimica et Biophysica Acta 973: 443-449). The 50 °C band disappears upon dark adaptation. In mature leaves, no significant band is seen at 50 °C. It is concluded that, in IML leaves, reversible quenching may be related to the release of Ca(2+) from Photosystem II. However, it seems that in the mature system, under most conditions, such release does not contribute significantly to quenching.
我们已经测量了豌豆叶片在间歇光照(IML)下的热致发光(TL)和叶绿素荧光,并跟踪了叶片在变绿过程中的变化。IML 豌豆表现出低可变荧光和一定的可逆非光化学猝灭能力。有人认为,可逆猝灭可能是由于 pH 依赖性的 PS II 中 Ca(2+)的释放引起的(Krieger 和 Weis(1992)Photosynthetica 27: 89-98)。在可逆非光化学猝灭发生的条件下,在 DCMU 的存在下,在 IML 叶片中观察到约 50°C 的 TL 带。在 PS II 中 Ca(2+)耗尽的情况下,先前已经观察到了这个温度范围内的带(Ono 和 Inoue(1989)Biochimica et Biophysica Acta 973: 443-449)。在黑暗适应后,50°C 带消失。在成熟叶片中,在 50°C 时没有明显的带。因此,可以得出结论,在 IML 叶片中,可逆猝灭可能与 PS II 中 Ca(2+)的释放有关。然而,在大多数情况下,在成熟系统中,这种释放对猝灭的贡献似乎并不显著。