Graduate School of Agricultural Science, Tohoku University, 1-1 Tsutsumidori-Amamiyamachi, Aoba-ku, Sendai 981-8555, Japan.
Plant Cell Environ. 2010 Aug 1;33(8):1314-23. doi: 10.1111/j.1365-3040.2010.02149.x. Epub 2010 Mar 17.
The dynamics of ribulose 1.5-bisphosphate carboxylase/oxygenase (Rubisco) content and turnover during leaf development are not well understood in woody plants. Rubisco synthesis, N influx and the mRNA levels of Rubisco-encoding genes were determined as a function of leaf position in 4.5-month-old Eucalyptus globulus seedlings. Rubisco concentration was slightly higher in the top leaves as leaf expansion progressed and was almost maximal in the uppermost fully expanded leaves. Rubisco concentration remained almost constant in the fully expanded leaves at the top and middle positions and then became slightly low at the lowest positions. Rubisco synthesis was active only in the top leaves. These results suggest that Rubisco turnover rate is low in the middle leaves, leading to the maintenance of Rubisco contents, and that Rubisco degradation primarily occurs in the lowest leaves. Changes in the RBCS and rbcL mRNA levels were roughly parallel with Rubisco synthesis, but N influx was more closely correlated with Rubisco synthesis. These results suggest that N influx rather than the transcript abundance of Rubisco-encoding genes is of primary importance in regulating the rate of Rubisco synthesis. Additionally, expression of RBCS multigene family in E. globulus leaves was discussed.
在木本植物中,人们对于核酮糖 1,5-二磷酸羧化酶/加氧酶(Rubisco)在叶片发育过程中的含量和周转率的动态变化还不甚了解。在 4.5 月龄的桉树幼苗中,我们根据叶片位置来确定 Rubisco 合成、氮素流入和 Rubisco 编码基因的 mRNA 水平。随着叶片的展开,Rubisco 浓度在顶叶中略有升高,在最上部完全展开的叶片中几乎达到最大值。Rubisco 浓度在顶部和中部的完全展开的叶片中几乎保持不变,然后在最低位置略低。Rubisco 合成仅在顶叶中活跃。这些结果表明,Rubisco 周转率在中部叶片中较低,导致 Rubisco 含量得以维持,并且 Rubisco 降解主要发生在最低的叶片中。RBCS 和 rbcL mRNA 水平的变化与 Rubisco 合成大致平行,但氮素流入与 Rubisco 合成的相关性更高。这些结果表明,氮素流入而不是 Rubisco 编码基因的转录丰度对 Rubisco 合成速率的调节至关重要。此外,还讨论了桉树叶片中 RBCS 多基因家族的表达。