Wittmann Christiane, Matyssek Rainer, Pfanz Hardy, Humar Maja
Department of Applied Botany, University of Duisburg-Essen, Universitätsstr. 5, 45117 Essen, Germany.
Environ Pollut. 2007 Nov;150(2):258-66. doi: 10.1016/j.envpol.2007.01.013. Epub 2007 Mar 19.
Effects of ozone impact on gas exchange and chlorophyll fluorescence of juvenile birch (Betula pendula) stems and leaves were investigated. Significant differences in the response of leaves and stems to ozone were found. In leaves, O3 exposure led to a significant decline in photosynthetic rates, whereas stems revealed an increased dark respiration and a concomitant increase in corticular photosynthesis. In contrast to birch leaves, corticular photosynthesis appeared to support the carbon balance of stems or even of the whole-tree under O3 stress. The differences in the ozone-response between leaves and stems were found to be related to ozone uptake rates, and thus to inherent differences in leaf and stem O3 conductance.
研究了臭氧对欧洲白桦(Betula pendula)幼树茎和叶气体交换及叶绿素荧光的影响。发现叶和茎对臭氧的响应存在显著差异。在叶片中,臭氧暴露导致光合速率显著下降,而茎则表现出暗呼吸增加以及皮层光合作用随之增加。与白桦叶不同,在臭氧胁迫下,皮层光合作用似乎有助于维持茎甚至整棵树的碳平衡。发现叶和茎对臭氧响应的差异与臭氧吸收速率有关,进而与叶和茎的臭氧导度的固有差异有关。