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Variations of construction cost associated to leaf area renewal in saplings of two co-occurring temperate tree species (Acer platanoides L. and Fraxinus excelsior L.) along a light gradient

机译:两种同时出现的温带树种(Acer platanoides L.和Fraxinus excelsior L.)的树苗沿光梯度与叶面积更新相关的建设成本变化

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摘要

The yearly renewal of leaves and their holding organs (the leafy shoot) represent an energetic cost for saplings. The contribution of both biochemical (tissue construction cost, CC) and morphological traits (biomass partitioning and leaf mass per unit area, LMA) to the cost associated with leaf area renewal (construction cost of the leafy shoot per unit leaf area, shoot CCA) was studied in saplings of Acer platanoides L. and Fraxinus excelsior L. growing in a natural light gradient below forest canopy. Decrease in LMA with shade and change in biomass partitioning from stems towards leaves and petioles accounted for the strong decrease in mass per unit area of the leafy shoot (SMA) with shade and for most of the plasticity of shoot CCA in both species. In addition, a decrease in leaf CC in A. platanoides also contributed to the overall decrease of shoot CCA with shade in this species. Leaf CC was positively correlated with LMA in F. excelsior, positively correlated with both LMA and epidermal absorbance of UV (AUV) in A. platanoides. Leaf CC was negatively correlated with ash content in both species. The strong negative correlation between AUV and nitrogen content might have damped variations in leaf CC in F. excelsior.
机译:每年更新叶子及其保持器官(绿枝)代表着树苗的高昂代价。生化(组织建设成本,CC)和形态性状(生物量分配和每单位面积叶片质量,LMA)对与叶面积更新相关的成本(每单位叶片面积的绿苗构造成本,CCA)的贡献对在森林冠层下以自然光梯度生长的宏cer和欧洲白蜡树的幼树进行了研究。阴影下LMA的减少以及从茎向叶和叶柄的生物量分配变化导致了阴影下多叶枝(SMA)单位面积质量的大幅下降,并且这两个物种的芽CCA大部分具有可塑性。另外,该物种的叶片CC的减少也有助于白菜ACC的整体CCA总体减少。叶片CC与优良木霉中的LMA正相关,与LMA和铂金根霉中UV的表皮吸收率(AUV)正相关。在这两个物种中,叶片CC与灰分含量均呈负相关。 AUV和氮含量之间的强烈负相关性可能会抑制细叶锦鸡儿叶片CC的变化。

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