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两个杂交杨树(欧洲山杨Populus tremula L.×美洲山杨Populus tremuloides Michx.)无性系在长期臭氧暴露环境下的性能及次生化学变化

Performance and secondary chemistry of two hybrid aspen (Populus tremula L. x Populus tremuloides Michx.) clones in long-term elevated ozone exposure.

作者信息

Häikiö E, Makkonen M, Julkunen-Tiitto R, Sitte J, Freiwald V, Silfver T, Pandey V, Beuker E, Holopainen T, Oksanen E

机构信息

Department of Environmental Science, University of Kuopio, P.O. Box 1627, 70211, Kuopio, Finland.

出版信息

J Chem Ecol. 2009 Jun;35(6):664-78. doi: 10.1007/s10886-009-9644-2. Epub 2009 May 22.

Abstract

The effects of moderately elevated ozone (ca. 35 ppb) on the growth and secondary chemistry of the leaves of two soil-grown Finnish hybrid aspen (Populus tremula L. x Populus tremuloides Michx.) clones with different ozone sensitivities were studied at an open-air exposure field in Kuopio, Finland. Stomatal conductance, photosynthetic rate, and chlorophyll fluorescence were measured during the third growing season. Foliar phenolic concentrations, ergosterol concentration of fine roots, and final dry mass of the trees were determined at the end of the third growing season. Elevated ozone increased the ectomycorrhizal status of the fine roots but had no effect on gas exchange or on the final biomass of either of the clones, indicating equal sensitivity to ozone and no effect of elevated ozone on the intraspecific competitive ability of the clones after three growing seasons. However, in agreement with the data from potted plants of the same clones after two growing seasons, significant differences between the clones were found in all parameters measured. A negative correlation between growth and high concentrations of foliar phenolics indicated that allocation to secondary chemistry also was costly in terms of growth under high resource availability.

摘要

在芬兰库奥皮奥的一个露天暴露试验场,研究了适度升高的臭氧(约35 ppb)对两种具有不同臭氧敏感性的芬兰土壤种植杂交白杨(Populus tremula L.×Populus tremuloides Michx.)无性系叶片生长和次生化学的影响。在第三个生长季节测量了气孔导度、光合速率和叶绿素荧光。在第三个生长季节结束时测定了叶片酚类物质浓度、细根麦角固醇浓度和树木的最终干质量。升高的臭氧增加了细根的外生菌根状态,但对气体交换或任何一个无性系的最终生物量均无影响,这表明在三个生长季节后,两个无性系对臭氧的敏感性相同,且升高的臭氧对无性系的种内竞争能力没有影响。然而,与两个生长季节后相同无性系盆栽植物的数据一致,在所有测量参数中均发现无性系之间存在显著差异。生长与高浓度叶片酚类物质之间的负相关表明,在资源丰富的情况下,分配到次生化学物质方面的成本在生长方面也是高昂的。

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