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Dark Leaf Respiration in Light and Darkness of an Evergreen and a Deciduous Plant Species.

机译:常绿和落叶植物物种在光与暗中的暗叶呼吸作用。

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摘要

Dark respiration in light as well as in dark was estimated for attached leaves of an evergreen (Heteromeles arbutifolia Ait.) and a deciduous (Lepechinia fragans Greene) shrub species using an open gas-exchange system. Dark respiration in light was estimated by the Laisk method. Respiration rates in the dark were always higher than in the light, indicating that light inhibited respiration in both species. The rates of respiration in the dark were higher in the leaves of the deciduous species than in the evergreen species. However, there were no significant differences in respiration rates in light between the species. Thus, the degree of inhibition of respiration by light was greater in the deciduous species (62%) than in the evergreen species (51%). Respiration in both the light and darkness decreased with increasing leaf age. However, because respiration in the light decreased faster with leaf age than respiration in darkness, the degree of inhibition of respiration by light increased with leaf age (from 36% in the youngest leaves to 81% in the mature leaves). This suggests that the rate of dark respiration in the light is related to the rate of biosynthetic processes. Dark respiration in the light decreased with increasing light intensity. Respiration both in the light and in the dark was dependent on leaf temperature. We concluded that respiration in light and respiration in darkness are tightly coupled, with variation in respiration in darkness accounting for more than 60% of the variation in respiration in light. Care must be taken when the relation between respiration in light and respiration in darkness is studied, because the relation varies with species, leaf age, and light intensity.
机译:使用开放式气体交换系统,估算了常绿(Heteromeles arbutifolia Ait。)和落叶(Lepechinia fragans Greene)灌木物种的附着叶片在光照和黑暗条件下的暗呼吸。通过Laisk方法估算了光线下的暗呼吸。黑暗中的呼吸速率始终高于光中的呼吸速率,表明光抑制了两种物种的呼吸。落叶树种的叶片在黑暗中的呼吸速率高于常绿树种。然而,物种之间的光呼吸速率没有显着差异。因此,落叶植物(62%)比常绿植物(51%)对光的呼吸抑制程度更大。随着叶龄的增加,明暗呼吸均减少。但是,由于光的呼吸作用随叶龄的下降快于黑暗的呼吸作用,因此光对呼吸的抑制程度随叶龄的增加而增加(从最年轻的叶片的36%到成熟的叶片的81%)。这表明光中暗呼吸的速率与生物合成过程的速率有关。光中的暗呼吸随着光强度的增加而降低。在明亮和黑暗中的呼吸都取决于叶片温度。我们得出的结论是,在黑暗中呼吸的变化与光呼吸密切相关,在黑暗中呼吸的变化占光呼吸变化的60%以上。在研究光呼吸与黑暗呼吸之间的关系时必须小心,因为该关系随物种,叶龄和光强度而变化。

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