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首页> 外文期刊>Plant biology >Photosynthetic traits of Siebold's beech seedlings in changing light conditions by removal of shading trees under elevated CO2
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Photosynthetic traits of Siebold's beech seedlings in changing light conditions by removal of shading trees under elevated CO2

机译:通过改变CO2浓度升高去除遮荫树木,改变光照条件下Siebold山毛榉幼苗的光合特性

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The purpose of this study was to obtain basic information on acclimation capacity of photosynthesis in Siebold's beech seedlings to increasing light intensity under future elevated CO2 conditions. We monitored leaf photosynthetic traits of these seedlings in changing light conditions (before removal of shade trees, the year after removal of shade trees and after acclimation to open conditions) in a 10-year free air CO2 enrichment experiment in northern Japan. Elevated CO2 did not affect photosynthetic traits such as leaf mass per area, nitrogen content and biochemical photosynthetic capacity of chloroplasts (i.e. maximum rate of carboxylation and maximum rate of electron transport) before removal of the shade trees and after acclimation to open conditions; in fact, a higher net photosynthetic rate was maintained under elevated CO2. However, in the year after removal of the shade trees, there was no increase in photosynthesis rate under elevated CO2 conditions. This was not due to photoinhibition. In ambient CO2 conditions, leaf mass per area and nitrogen content were higher in the year after removal of shade trees than before, whereas there was no increase under elevated CO2 conditions. These results indicate that elevated CO2 delays the acclimation of photosynthetic traits of Siebold's beech seedlings to increasing light intensity.
机译:这项研究的目的是获得有关Siebold的山毛榉幼苗的光合作用对未来增加的CO2条件下增加光强度的适应能力的基本信息。我们在日本北部进行了为期10年的免费空气CO2富集实验,在不断变化的光照条件下(在移走遮荫树之前,遮荫树去除后的一年以及在适应开放条件之后)监测了这些幼苗的叶片光合特性。去除遮荫树之前和适应开放条件后,升高的CO2不会影响光合特性,例如每单位面积的叶片质量,氮含量和叶绿体的生化光合能力(即最大羧化率和最大电子传输率);实际上,在较高的CO2下保持较高的净光合速率。然而,在去除遮荫树的一年中,在二氧化碳浓度升高的条件下,光合作用速率没有增加。这不是由于光抑制。在环境CO2条件下,遮荫树去除后的一年中单位面积的叶片质量和氮含量比以前更高,而在升高的CO2条件下则没有增加。这些结果表明升高的CO 2延迟了Siebold的山毛榉幼苗的光合特性适应光强度的增长。

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