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首页> 外文期刊>Journal of Plant Research >Temporal variation in leaf nitrogen partitioning of a broad-leaved evergreen tree, Quercus myrsinaefolia
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Temporal variation in leaf nitrogen partitioning of a broad-leaved evergreen tree, Quercus myrsinaefolia

机译:阔叶常绿乔木(Quercus myrsinaefolia)叶片氮分配的时间变化

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摘要

We examined temporal changes in the amount of nitrogenous compounds in leaves from the outer and inner parts of the crown of Quercus myrsinaefolia growing in a seasonal climate. Throughout the leaf life span, metabolic protein and Rubisco content closely correlated with total nitrogen content, while structural protein content was relatively stable after full leaf expansion. Chlorophyll content was affected by shading as well as total nitrogen content in outer leaves that were overtopped by new shoots in the second year. Outer leaves showed a large seasonal variation in photosynthetic nitrogen-use efficiency (PNUE; the light-saturated photosynthetic rate per unit leaf nitrogen content) during the first year of their life, with PNUE decreasing from the peak in summer towards winter. Outer and inner leaves both showed age-related decline in PNUE in the second year. There were no such drastic changes in leaf nitrogen partitioning that could explain seasonal and yearly variations in PNUE. Nitrogen resorption occurred in overwintering leaves in spring. Metabolic protein explained the majority of nitrogen being resorbed, whereas structural protein, which was low in degradability, contributed little to nitrogen resorption.
机译:我们研究了季节性气候下生长的栎栎冠的外部和内部的叶片中含氮化合物含量的时间变化。在整个叶片寿命中,代谢蛋白质和Rubisco含量与总氮含量密切相关,而结构蛋白质含量在叶片完全膨胀后相对稳定。叶绿素含量受遮荫以及外叶中总氮含量的影响,第二年新芽使叶绿素含量最高。外叶在生命的第一年中显示出光合氮利用效率(PNUE;每单位叶片氮含量的光饱和光合速率)的季节性变化较大,并且PNUE从夏季的峰值到冬季降低。第二年,外叶和内叶均显示出与年龄相关的PNUE下降。叶片氮分配没有如此剧烈的变化可以解释PNUE的季节性和年度变化。春季越冬叶片发生氮吸收。代谢蛋白解释了大部分氮被吸收,而降解性低的结构蛋白对氮吸收的贡献很小。

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