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虎杖中核酮糖-1,5-二磷酸羧化能力与核酮糖-1,5-二磷酸再生能力之间平衡的季节性变化影响光合作用的二氧化碳响应。

Seasonal change in the balance between capacities of RuBP carboxylation and RuBP regeneration affects CO2 response of photosynthesis in Polygonum cuspidatum.

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

J Exp Bot. 2005 Feb;56(412):755-63. doi: 10.1093/jxb/eri052. Epub 2004 Dec 13.

Abstract

The balance between the capacities of RuBP (ribulose-1,5-bisphosphate) carboxylation (V(cmax)) and RuBP regeneration (expressed as the maximum electron transport rate, J(max)) determines the CO(2) dependence of the photosynthetic rate. As it has been suggested that this balance changes depending on the growth temperature, the hypothesis that the seasonal change in air temperature affects the balance and modulates the CO(2) response of photosynthesis was tested. V(cmax) and J(max) were determined in summer and autumn for young and old leaves of Polygonum cuspidatum grown at two CO(2) concentrations (370 and 700 micromol mol(-1)). Elevated CO(2) concentration tended to reduce both V(cmax) and J(max) without changing the J(max):V(cmax) ratio. The seasonal environment, on the other hand, altered the ratio such that the J(max):V(cmax) ratio was higher in autumn leaves than summer leaves. This alternation made the photosynthetic rate more dependent on CO(2) concentration in autumn. Therefore, when photosynthetic rates were compared at growth CO(2) concentration, the stimulation in photosynthetic rate was higher in young-autumn than in young-summer leaves. In old-autumn leaves, the stimulation of photosynthesis brought by a change in the J(max):V(cmax) ratio was partly offset by accelerated leaf senescence under elevated CO(2). Across the two seasons and the two CO(2) concentrations, V(cmax) was strongly correlated with Rubisco and J(max) with cytochrome f content. These results suggest that seasonal change in climate affects the relative amounts of photosynthetic proteins, which in turn affect the CO(2) response of photosynthesis.

摘要

核酮糖-1,5-二磷酸(RuBP)羧化能力(V(cmax))与RuBP再生能力(以最大电子传递速率J(max)表示)之间的平衡决定了光合速率对CO₂的依赖性。由于有人提出这种平衡会随生长温度而变化,因此对气温的季节性变化会影响这种平衡并调节光合作用的CO₂响应这一假设进行了检验。在夏季和秋季,测定了在两种CO₂浓度(370和700 μmol mol⁻¹)下生长的虎杖幼叶和老叶的V(cmax)和J(max)。升高的CO₂浓度往往会降低V(cmax)和J(max),而不改变J(max):V(cmax)的比值。另一方面,季节性环境改变了该比值,使得秋叶中的J(max):V(cmax)比值高于夏叶。这种变化使得秋季的光合速率对CO₂浓度的依赖性更强。因此,当在生长CO₂浓度下比较光合速率时,幼龄秋叶中光合速率的刺激作用高于幼龄夏叶。在老龄秋叶中,J(max):V(cmax)比值变化带来的光合作用刺激作用部分被CO₂浓度升高下加速的叶片衰老所抵消。在两个季节和两种CO₂浓度下,V(cmax)与核酮糖-1,5-二磷酸羧化酶(Rubisco)密切相关,J(max)与细胞色素f含量密切相关。这些结果表明,气候的季节性变化会影响光合蛋白的相对含量,进而影响光合作用对CO₂的响应。

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