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落叶温带森林中常绿阔叶树苗的冬季光合作用。

Winter photosynthesis by saplings of evergreen broad-leaved trees in a deciduous temperate forest.

作者信息

Miyazawa Yoshiyuki, Kikuzawa Kihachiro

机构信息

Laboratory of Forest Biology, Faculty of Agriculture, Graduate school of Kyoto University, Kyoto 606-8502, Japan.

出版信息

New Phytol. 2005 Mar;165(3):857-66. doi: 10.1111/j.1469-8137.2004.01265.x.

DOI:10.1111/j.1469-8137.2004.01265.x
PMID:15720697
Abstract
  • Here we investigated photosynthetic traits of evergreen species under a deciduous canopy in a temperate forest and revealed the importance of CO2 assimilation during winter for annual CO2 assimilation. * Saplings were shaded by the canopy trees from spring through to autumn, but were less shaded during the winter months. Photosynthetic rates at light saturation (Aarea) were lower during winter than during the growing season. Aarea was higher in Camellia, Ilex and Photinia than in Castanopsis, Cleyera and Quercus during the winter, but differed little during summer and autumn. * Estimated daily CO2 assimilation (Aday) was higher during the winter than during the growing season in Camellia, Ilex and Photinia but was higher than that during the growing season only at the beginning and end of winter in Castanopsis, Cleyera and Quercus. Aday was higher in Camellia, Ilex and Photinia than in Castanopsis, Cleyera and Quercus but differed little among them during the growing season. * These results reveal the importance of winter CO2 assimilation for the growth of Camellia, Ilex and Photinia. Furthermore, differences in annual CO2 assimilation among species are strongly modified by species-specific photosynthetic traits during the winter under deciduous canopy trees.
摘要

在此,我们研究了温带森林中落叶树冠层下常绿树种的光合特性,并揭示了冬季二氧化碳同化作用对年二氧化碳同化量的重要性。幼树从春季到秋季都被树冠层树木遮荫,但在冬季遮荫较少。冬季光饱和时的光合速率(Aarea)低于生长季节。冬季,山茶、冬青和石楠的Aarea高于栲属、红淡比属和栎属,但在夏季和秋季差异不大。估计的日二氧化碳同化量(Aday)在冬季,山茶、冬青和石楠高于生长季节,但栲属、红淡比属和栎属仅在冬季开始和结束时高于生长季节。山茶、冬青和石楠的Aday高于栲属、红淡比属和栎属,但在生长季节它们之间差异不大。这些结果揭示了冬季二氧化碳同化作用对山茶、冬青和石楠生长的重要性。此外,在落叶树冠层树木下,物种间年二氧化碳同化量的差异在很大程度上受物种特异性光合特性的影响。

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