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首页> 外文期刊>Trees. Structure and Function >Photosynthesis-Rubisco relationships in foliage of Pinus sylvestris in response to nitrogen supply and the proposed role of Rubisco and amino acids as nitrogen stores
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Photosynthesis-Rubisco relationships in foliage of Pinus sylvestris in response to nitrogen supply and the proposed role of Rubisco and amino acids as nitrogen stores

机译:樟子松叶片中的光合作用-橡胶关系响应氮的供应以及拟议的Rubisco和氨基酸作为氮存储的作用

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摘要

Relationships between photosynthetic capacity, and needle contents of N, Rubisco and amino acids were investigated in potted Pinus sylvestris L. trees. Three-year-old seedlings of P. sylvestris were grown for 4 years with three nutrient regimes. Concentrations of N, amino acids, an-fides and Rubisco were measured and expressed on a needle area basis, and the in vivo performances of Rubisco (maximum rate of carboxylation, V-cmax) and of electron transport (maximum light driven electron flux, J(max)) were estimated via a biochemically based model of photosynthesis. Needle content of Rubisco-N was at least six times that of amino acid + amide-N and was positively related to N-area. The estimated in vivo specific activity of Rubisco (V-cmax/Rubisco content per unit area) was low and negatively related to N content per unit area (N-area). J(max)/Rubisco content was negatively related to N-area, whereas V-cmax/J(max) was unrelated to N-area. Hence, Rubisco content was in excess of the amount required for photosynthesis and this excess was positively related to Narea. These data support the hypothesis that with increasing N-area, Rubisco functions increasingly as a storage protein in addition to its catalytic functions.
机译:研究了盆栽樟子松光合能力与N,Rubisco和氨基酸的针叶含量之间的关系。在三种养分制度下,三岁的樟子松幼苗生长了4年。测量并以针面积为基础测量和表示N,氨基酸,惯常行为和Rubisco的浓度,以及Rubisco的体内性能(最大羧化率,V-cmax)和电子传输(最大光驱动电子通量, J(max))是通过基于生物化学的光合作用模型估算的。 Rubisco-N的针含量至少是氨基酸+酰胺-N的六倍,并且与N区域呈正相关。 Rubisco的体内比活度估计值(每单位面积V-cmax / Rubisco含量)低,与每单位面积N含量(N面积)负相关。 J(max)/ Rubisco含量与N区域负相关,而V-cmax / J(max)与N区域无关。因此,Rubisco的含量超过了光合作用所需的量,并且该过量与Narea正相关。这些数据支持以下假设:随着N区域的增加,Rubisco除具有催化功能外,还越来越多地充当存储蛋白。

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