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光质对欧洲白桦(Betula pendula)叶片气体交换和水力特性的短期影响

Short-term effects of light quality on leaf gas exchange and hydraulic properties of silver birch (Betula pendula).

作者信息

Niglas Aigar, Papp Kaisa, Sekiewicz Maciej, Sellin Arne

机构信息

Institute of Ecology and Earth Sciences, University of Tartu, Lai 40, 51005 Tartu, Estonia.

Institute of Dendrology, Polish Academy of Sciences, Parkowa 5, 62-035 Kórnik, Poland.

出版信息

Tree Physiol. 2017 Sep 1;37(9):1218-1228. doi: 10.1093/treephys/tpx087.

Abstract

Leaves have to acclimatize to heterogeneous radiation fields inside forest canopies in order to efficiently exploit diverse light conditions. Short-term effects of light quality on photosynthetic gas exchange, leaf water use and hydraulic traits were studied on Betula pendula Roth shoots cut from upper and lower thirds of the canopy of 39- to 35-year-old trees growing in natural forest stand, and illuminated with white, red or blue light in the laboratory. Photosynthetic machinery of the leaves developed in different spectral conditions acclimated differently with respect to incident light spectrum: the stimulating effect of complete visible spectrum (white light) on net photosynthesis is more pronounced in upper-canopy layers. Upper-canopy leaves exhibit less water saving behaviour, which may be beneficial for the fast-growing pioneer species on a daily basis. Lower-canopy leaves have lower stomatal conductance resulting in more efficient water use. Spectral gradients existing within natural forest stands represent signals for the fine-tuning of stomatal conductance and tree water relations to afford lavish water use in sun foliage and enhance leaf water-use efficiency in shade foliage sustaining greater hydraulic limitations. Higher sensitivity of hydraulic conductance of shade leaves to blue light probably contributes to the efficient use of short duration sunflecks by lower-canopy leaves.

摘要

叶片必须适应森林冠层内的异质辐射场,以便有效地利用多样的光照条件。我们对取自天然林分中39至35年树龄树木冠层上部和下部三分之一处的欧洲白桦嫩枝进行了研究,在实验室中用白光、红光或蓝光照射,研究了光质对光合气体交换、叶片水分利用和水力特性的短期影响。在不同光谱条件下发育的叶片光合机制对入射光谱的适应方式不同:全可见光谱(白光)对净光合作用的刺激作用在上层冠层更为明显。上层冠层叶片表现出较少的节水行为,这可能有利于这种快速生长的先锋树种的日常生长。下层冠层叶片的气孔导度较低,从而水分利用效率更高。天然林分内存在的光谱梯度代表了信号,用于微调气孔导度和树木水分关系,以便在阳生叶中大量用水,并提高阴生叶的叶片水分利用效率,同时阴生叶承受着更大的水力限制。阴生叶的水力导度对蓝光的更高敏感性可能有助于下层冠层叶片有效利用短时间的光斑。

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