Hikosaka Kouki, Nabeshima Eri, Hiura Tsutom
Graduate School of Life Sciences, Tohoku University, Sendai 980-8578, Japan.
Tree Physiol. 2007 Jul;27(7):1035-41. doi: 10.1093/treephys/27.7.1035.
Understanding seasonal changes in photosynthetic characteristics of canopy leaves is indispensable for modeling the carbon balance in forests. We studied seasonal changes in gas exchange characteristics that are related to the temperature dependence of photosynthesis in canopy leaves of Quercus crispula Blume, one of the most abundant species in cool-temperate forests in Japan. Photosynthetic rate and ribulose-1,5-bisphosphate (RuBP) carboxylation capacity (V(cmax)) at 20 degrees C increased from June to August and then decreased in September. The activation energy of V(cmax), a measure of the temperature dependence of V(cmax), was highest in summer, indicating that V(cmax) was most sensitive to leaf temperature at this time. The activation energy of V(cmax) was significantly correlated with growth temperature. Other parameters related to the temperature dependence of photosynthesis, such as intercellular CO(2) partial pressure and temperature dependence of RuBP regeneration capacity, showed no clear seasonal trend. It was suggested that leaf senescence affected the balance between carboxylation and regeneration of RuBP. The model simulation showed that photosynthetic rate and its optimal temperature were highest in summer.
了解冠层叶片光合特性的季节性变化对于模拟森林碳平衡至关重要。我们研究了日本冷温带森林中最常见的树种之一——日本槲树(Quercus crispula Blume)冠层叶片与光合作用温度依赖性相关的气体交换特性的季节性变化。20摄氏度下的光合速率和核酮糖-1,5-二磷酸(RuBP)羧化能力(V(cmax))从6月到8月增加,然后在9月下降。V(cmax)的活化能是衡量V(cmax)温度依赖性的指标,在夏季最高,表明此时V(cmax)对叶片温度最敏感。V(cmax)的活化能与生长温度显著相关。其他与光合作用温度依赖性相关的参数,如细胞间CO(2)分压和RuBP再生能力的温度依赖性,没有明显的季节性趋势。有人认为叶片衰老影响了RuBP羧化和再生之间的平衡。模型模拟表明,光合速率及其最适温度在夏季最高。