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Changes in total leaf nitrogen and partitioning of leaf nitrogen drive photosynthetic acclimation to light in fully developed walnut leaves

机译:完全发育的核桃叶片中总氮的变化和氮素的分配促使光合适应光

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摘要

Comprehensive studies on the processes involved in photosynthetic acclimation after a sudden change in light regime are scarce, particularly for trees. We tested (i) the ability of photosynthetic acclimation in the foliage of walnut trees growing outdoors after low-to-high and high-to-low light transfers made early or late in the vegetation cycle, and (ii) the relative importance of changes in total leaf nitrogen versus changes in the partitioning of leaf nitrogen between the different photosynthetic functions during a 2 month period after transfer. Changes in maximum carboxylation rate, light-saturated electron transport rate, respiration rate, total leaf nitrogen, ribulose 1.5-bisphosphate carboxylase/oxygenase (Rubisco) and total chlorophylls were surveyed before and after the change in light regime. Respiration rate acclimated fully within 1 week of transfer, and full acclimation was observed 1 month after transfer for the amount of Rubisco. In contrast, total nitrogen and photosynthetic capacity acclimated only partially during the 2 mouth period. Changes in photosynthetic capacity i were driven by changes in both total leaf nitrogen and leaf nitrogen partitioning. The extent of acclimation also depended strongly on leaf age at the time of the change in light regime.
机译:缺乏对光照条件突然变化后光合适应过程的全面研究,特别是对于树木。我们测试了(i)在植被周期的早期或后期进行低到高和高到低的光传输后,在户外生长的核桃树的叶子中的光合适应能力,以及(ii)变化的相对重要性转移后2个月内叶片总氮的变化与不同光合功能之间叶片氮分配的变化之间的关系。在改变光照方式之前和之后,调查了最大羧化速率,光饱和电子传输速率,呼吸速率,总叶氮,核糖1.5-二磷酸羧化酶/加氧酶(Rubisco)和总叶绿素的变化。呼吸在转移后1周内完全适应,在转移后1个月观察到Rubisco量的完全适应。相反,在2个口期间,总氮和光合能力仅部分适应。总叶片氮和叶片氮分配的变化驱动了光合能力的变化。适应程度也强烈取决于光照条件变化时的叶片年龄。

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