Katahata Shinichiro, Naramoto Masaaki, Kakubari Yoshitaka, Mukai Yuzuru
Department of Forest Resources, Faculty of Agriculture, University of Shizuoka, Ohya 836, Shizuoka 422-8529, Japan.
Tree Physiol. 2005 Apr;25(4):437-45. doi: 10.1093/treephys/25.4.437.
Photoprotective responses during photosynthetic acclimation in Daphniphyllum humile Maxim, an evergreen understory shrub that grows in temperate deciduous forests, were examined in relation to changes in light availability and temperature caused by the seasonal dynamics of canopy leaf phenology. Gradual increases in irradiance in the understory from summer to autumn as overstory foliage senesced were accompanied by increased concentrations of xanthophyll cycle pigments (VAZ) in understory leaves. The chlorophyll (Chl) a/b ratio in understory leaves also increased from summer to autumn, reflecting the change in ratio of the light-harvesting antenna to the reaction center. However, low temperatures following overstory leaf fall reduced Rubisco activity. In contrast, the photosynthetic capactiy of leaves of D. humile growing at the forest border, which was higher in summer than that of leaves of understory plants, decreased in autumn. In autumn, Fv/Fm ratios decreased and concentrations of zeaxanthin (Z) and especially antheraxanthin (A) increased in leaves of both forest-border and understory plants. Although VAZ was twice as high in leaves of forest-border than of understory plants, NPQ was similar in both. We conclude that leaves of understory plants are able to acclimate to seasonal changes in light and temperature by varying their photosynthetic and photoprotective functions, thereby taking advantage of the favorable light conditions caused by overstory leaf fall.
在温带落叶林中生长的常绿林下灌木——交让木(Daphniphyllum humile Maxim),其光合适应过程中的光保护反应与树冠叶片物候季节性动态所引起的光照和温度变化相关。随着上层叶片衰老,林下光照强度从夏季到秋季逐渐增加,与此同时,林下叶片中叶黄素循环色素(VAZ)的浓度也随之增加。林下叶片中的叶绿素(Chl)a/b比值也从夏季到秋季升高,反映了捕光天线与反应中心比值的变化。然而,上层叶片脱落后的低温降低了核酮糖-1,5-二磷酸羧化酶(Rubisco)的活性。相比之下,生长在林缘的交让木叶的光合能力在夏季高于林下植物叶片,而在秋季下降。秋季,林缘和林下植物叶片的Fv/Fm比值均下降,玉米黄质(Z)尤其是花药黄质(A)的浓度增加。虽然林缘植物叶片中的VAZ含量是林下植物叶片的两倍,但二者的非光化学淬灭(NPQ)相似。我们得出结论,林下植物叶片能够通过改变其光合和光保护功能来适应光照和温度的季节性变化,从而利用上层叶片脱落所带来的有利光照条件。