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核酮糖-1,5-二磷酸羧化与核酮糖-1,5-二磷酸再生之间的平衡:光合作用对温度季节性变化适应性种间差异的潜在机制。

The balance between RuBP carboxylation and RuBP regeneration: a mechanism underlying the interspecific variation in acclimation of photosynthesis to seasonal change in temperature.

作者信息

Onoda Yusuke, Hikosaka Kouki, Hirose Tadaki

机构信息

Graduate School of Life Sciences, Tohoku University, Aoba, Sendai, 980-8578 Japan.

出版信息

Funct Plant Biol. 2005 Oct;32(10):903-910. doi: 10.1071/FP05024.

DOI:10.1071/FP05024
PMID:32689186
Abstract

The ratio of the capacities of ribulose-1,5-bisphosphate (RuBP) regeneration to RuBP carboxylation (J / V) (measured at a common temperature) increases in some species when they are grown at lower temperatures, but does not increase in other species. To investigate the mechanism of interspecific difference in the response of J / V to growth temperature, we analysed the temperature dependence of V and J in Polygonum cuspidatum and Fagus crenata with the Arrhenius function. P. cuspidatum had a higher ratio of J / V in spring and autumn than in summer, while F. crenata did not show such change. The two species had a similar activation energy for V (E) across seasons, but P. cuspidatum had a higher activation energy for J (E) than F. crenata. Reconstruction of the temperature response curve of photosynthesis showed that plants with an inherently higher E / E (P. cuspidatum) had photosynthetic rates that were limited by RuBP regeneration at low temperatures and limited by RuBP carboxylation at high temperatures, while plants with an inherently lower E / E (F. crenata) had photosynthetic rates that were limited solely by RuBP carboxylation over the range of temperatures. These results indicate that the increase in J / V at low growth temperatures relieved the limitation of RuBP regeneration on the photosynthetic rate in P. cuspidatum, but that such change in J / V would not improve the photosynthetic rate in F. crenata. We suggest that whether or not the J / V ratio changes with growth temperature is attributable to interspecific differences in E / E between species.

摘要

在一些物种中,当它们在较低温度下生长时,核酮糖 - 1,5 - 二磷酸(RuBP)再生与RuBP羧化的能力比(J / V)(在共同温度下测量)会增加,但在其他物种中不会增加。为了研究J / V对生长温度响应的种间差异机制,我们用阿伦尼乌斯函数分析了虎杖和日本水青冈中V和J的温度依赖性。虎杖在春季和秋季的J / V比值高于夏季,而日本水青冈则未表现出这种变化。两个物种在不同季节中V的活化能(E)相似,但虎杖的J活化能(E)高于日本水青冈。光合作用温度响应曲线的重建表明,具有较高固有E / E(虎杖)的植物在低温下光合速率受RuBP再生限制,在高温下受RuBP羧化限制,而具有较低固有E / E(日本水青冈)的植物在整个温度范围内光合速率仅受RuBP羧化限制。这些结果表明,低生长温度下J / V的增加缓解了RuBP再生对虎杖光合速率的限制,但J / V的这种变化不会提高日本水青冈的光合速率。我们认为J / V比值是否随生长温度变化归因于物种间E / E的种间差异。

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