Department of Entomology, University of Wisconsin, 237 Russell Laboratories, 1630 Linden Dr., Madison, WI, 53706, USA.
Plant Cell Environ. 2014 Mar;37(3):758-65. doi: 10.1111/pce.12195. Epub 2013 Oct 3.
Anthropogenic activities are altering levels of greenhouse gases to the extent that multiple and diverse ecosystem processes are being affected. Two gases that substantially influence forest health are atmospheric carbon dioxide (CO2 ) and tropospheric ozone (O3 ). Plant chemistry will play an important role in regulating ecosystem processes in future environments, but little information exists about the longitudinal effects of elevated CO2 and O3 on phytochemistry, especially for long-lived species such as trees. To address this need, we analysed foliar chemical data from two genotypes of trembling aspen, Populus tremuloides, collected over 10 years of exposure to levels of CO2 and O3 predicted for the year 2050. Elevated CO2 and O3 altered both primary and secondary chemistry, and the magnitude and direction of the responses varied across developmental stages and between aspen genotypes. Our findings suggest that the effects of CO2 and O3 on phytochemical traits that influence forest processes will vary over tree developmental stages, highlighting the need to continue long-term, experimental atmospheric change research.
人为活动正在改变温室气体的水平,以至于多个和不同的生态系统过程正在受到影响。两种对森林健康有重大影响的气体是大气中的二氧化碳(CO2)和对流层中的臭氧(O3)。植物化学将在未来的环境中对调节生态系统过程发挥重要作用,但关于升高的 CO2 和 O3 对植物化学的纵向影响的信息很少,特别是对于像树这样的长寿物种。为了解决这一需求,我们分析了来自两种颤杨(Populus tremuloides)基因型的叶片化学数据,这些数据是在预测 2050 年 CO2 和 O3 水平下暴露 10 多年收集的。升高的 CO2 和 O3 改变了初级和次生化学物质,并且响应的幅度和方向在发育阶段和杨树种之间有所不同。我们的研究结果表明,CO2 和 O3 对影响森林过程的植物化学特征的影响将随树木发育阶段而变化,这突出了继续进行长期、实验性大气变化研究的必要性。