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日本温带地区春季生长的球根植物红萼银莲花光合特性的季节性变化。

Seasonal changes in photosynthetic characteristics of Anemone raddeana, a spring-active geophyte, in the temperate region of Japan.

作者信息

Yoshie F, Yoshida S

机构信息

The Institute of Low Temperature Science, Hokkaido University, 060, Saporo, Japan.

出版信息

Oecologia. 1987 May;72(2):202-206. doi: 10.1007/BF00379268.

Abstract

Seasonal changes in the photosynthetic characteristics of intact involucral leaves of Anemone raddeana were investigated under laboratory conditions. Net photosynthesis and constant water vapor pressure deficit showed almost the same seasonal trend. They increased rapidly from mid-April immediately after unfolding of the leaves and reached the maximum in late-April, before the maximum expansion of the leaves. They retained the maximum values until early-May and then decreased toward late-May with a progress of leaf senescence. The calculated values of intercellular CO concentration and relative stomatal limitation of photosynthesis showed no significant change throughout the season. The carboxylation efficiency as assessed by the initial slope of Ci-photosynthesis curve and the net photosynthesis under a high Ci regime varied seasonally in parallel with the change of the light-saturated photosynthesis. The results indicate that the seasonal changes in light-saturated net photosynthesis are not due to a change of stomatal conductance, but to a change in the photosynthetic capacity of mesophyll. Nevertheless, leaf conductance changed concomitantly with photosynthetic capacity, indicating that the seasonal change in stomatal conductance is modulated by the mesophyll photosynthetic capacity such that the intercellular CO concentrations is maintained constant. The shape of light-photosynthesis curve was similar to that of sun-leaf type. The quantum yield also changed simultaneously with the photosynthetic capacity throughout the season.

摘要

在实验室条件下,研究了打破碗花花完整总苞叶光合特性的季节变化。净光合速率和恒定水汽压差呈现出几乎相同的季节趋势。它们在4月中旬叶片展开后立即迅速增加,并在4月下旬达到最大值,此时叶片尚未完全展开。它们在5月初之前一直保持最大值,然后随着叶片衰老进程在5月下旬下降。整个季节细胞间CO浓度和光合作用相对气孔限制的计算值没有显著变化。通过Ci-光合作用曲线的初始斜率评估的羧化效率以及高Ci条件下的净光合速率与光饱和光合速率的变化同步季节性变化。结果表明,光饱和净光合速率的季节性变化不是由于气孔导度的变化,而是由于叶肉光合能力的变化。然而,叶片导度与光合能力同时变化,表明气孔导度的季节性变化受叶肉光合能力调节,从而使细胞间CO浓度保持恒定。光-光合作用曲线的形状与阳生叶类型相似。整个季节量子产率也与光合能力同时变化。

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