Physico-Chemical Biology, Department of Biology, M.V. Lomonosov Moscow State University, Moscow 119992, Russia.
Department of Biology, Tokyo Metropolitan University, Minami-Osawa 1-1, Hachioji-Shi, Tokyo 192-03, Japan.
J Photochem Photobiol B. 2014 Jan 5;130:20-9. doi: 10.1016/j.jphotobiol.2013.10.007. Epub 2013 Oct 31.
Phytochrome (phy) in etiolated seedlings of wild-type (WT) Arabidopsis (Ler) and its transgenic lines (TL) L15 and L20 transformed with Adiantum capillus-veneris PHY1 cDNA (Okamoto et al., 1997) was investigated using low-temperature (85K) fluorescence spectroscopy and photochemistry. It was found that while WT seed germination requires stimulation by light, the TL germinated equally well with or without pre-illumination. Phytochrome content [Ptot] was 2-fold higher in TL whereas the level of Pr→lumi-R phototransformation at 85K (γ1) was similar between WT (0.25) and TL (0.27). When seeds germinated with pre-illumination, the proportion of the photochemical types Pr' active and Pr″ inactive at 85K was 50/50 in WT and 54/46 in TL, respectively. Dark-germinated TL had a γ1 value of 0.16 and the proportion of Pr' and Pr″ was 32/68, respectively, without changes in [Ptot]. Evaluations based on these data revealed that phy1 has Pr' and Pr″, designated phy1' and phy1″, akin to phyA, which comprises both Pr photochemical types (phyA' and phyA″), and in contrast to phyB that possesses only Pr″. The proportion of phy1' and phy1″ depends on pre-illumination for induction of germination. The pigment most likely accumulated in the seeds and was active in promoting Arabidopsis seed germination.
用低温(85K)荧光光谱法和光化学法研究了野生型(WT)拟南芥(Ler)及其转 Adiantum capillus-veneris PHY1 cDNA 的转基因系(TL)L15 和 L20 中黄化幼苗的光敏素(phy)。结果发现,虽然 WT 种子萌发需要光照刺激,但 TL 无论是否预先照射都能同样良好地萌发。TL 中的光敏素含量[Ptot]高 2 倍,而在 85K 时 Pr→lumi-R 光转化水平(γ1)在 WT(0.25)和 TL(0.27)之间相似。当种子在预照射下萌发时,WT 中 85K 时活性 Pr'和非活性 Pr″的光化学型比例分别为 50/50,TL 中分别为 54/46。黑暗萌发的 TL 的γ1 值为 0.16,Pr'和 Pr″的比例分别为 32/68,[Ptot]没有变化。基于这些数据的评估表明,phy1 具有类似于 phyA 的 Pr'和 Pr″,phyA 包含两种 Pr 光化学型(phyA'和 phyA″),而 phyB 仅具有 Pr″。phy1'和 phy1″的比例取决于预照射以诱导萌发。最有可能在种子中积累并在促进拟南芥种子萌发中起作用的色素。