Scaling ozone responses of forest trees to the ecosystem level in a changing climate

被引:184
作者
Karnosky, DF
Pregitzer, KS
Zak, DR
Kubiske, ME
Hendrey, GR
Weinstein, D
Nosal, M
Percy, KE
机构
[1] Michigan Technol Univ, Sch Forest Resources & Environm Sci, Houghton, MI 49931 USA
[2] Univ Michigan, Sch Nat Resources & Environm, Ann Arbor, MI 48109 USA
[3] US Forest Serv, USDA, N Cent res Stn, Forestry Sci Lab, Rhinelander, WI 54501 USA
[4] CUNY Queens Coll, Flushing, NY 11367 USA
[5] Brookhaven Natl Lab, Flushing, NY 11367 USA
[6] Cornell Univ, Boyce Thompson Inst Plant Res, Ithaca, NY 14853 USA
[7] Univ Calgary, Dept Math & Stat, Calgary, AB T2N 1N4, Canada
[8] Canadian Forest Serv, Atlantic Forestry Ctr, Nat Resources Canada, Fredericton, NB E3B 5P7, Canada
关键词
Populus tremuloides; carbon accumulation and allocation; carbon dioxide; C and N cycling; climate change; ecosystem scaling; modelling; pest interactions; trembling aspen; tropospheric ozone;
D O I
10.1111/j.1365-3040.2005.01362.x
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Many uncertainties remain regarding how climate change will alter the structure and function of forest ecosystems. At the Aspen FACE experiment in northern Wisconsin, we are attempting to understand how an aspen/birch/maple forest ecosystem responds to long-term exposure to elevated carbon dioxide (CO2) and ozone (O-3), alone and in combination, from establishment onward. We examine how O-3 affects the flow of carbon through the ecosystem from the leaf level through to the roots and into the soil micro-organisms in present and future atmospheric CO2 conditions. We provide evidence of adverse effects of O-3, with or without co-occurring elevated CO2, that cascade through the entire ecosystem impacting complex trophic interactions and food webs on all three species in the study: trembling aspen (Populus tremuloides Michx.), paper birch (Betula papyrifera Marsh), and sugar maple (Acer saccharum Marsh). Interestingly, the negative effect of O-3 on the growth of sugar maple did not become evident until 3 years into the study. The negative effect of O-3 effect was most noticeable on paper birch trees growing under elevated CO2. Our results demonstrate the importance of long-term studies to detect subtle effects of atmospheric change and of the need for studies of interacting stresses whose responses could not be predicted by studies of single factors. In biologically complex forest ecosystems, effects at one scale can be very different from those at another scale. For scaling purposes, then, linking process with canopy level models is essential if O-3 impacts are to be accurately predicted. Finally, we describe how outputs from our long-term multispecies Aspen FACE experiment are being used to develop simple, coupled models to estimate productivity gain/loss from changing O-3.
引用
收藏
页码:965 / 981
页数:17
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