School of Environmental Sciences, University of Guelph, Guelph, Ontario, N1G 2W1, Canada.
New Phytol. 2012 Apr;194(2):321-336. doi: 10.1111/j.1469-8137.2012.04074.x. Epub 2012 Mar 1.
We conducted the most extensive meta-analysis of plant and animal responses to elevated CO(2) to date. We analysed > 5000 data points extracted from 270 papers published between 1979 and 2009. We examined the changes in 19 animal response variables to the main effect of elevated CO(2). We found strong evidence for significant variation among arthropod orders and feeding guilds, including interactions in the direction of response. We also examined the main effects of elevated CO(2) on: six plant growth and allocation responses, seven primary metabolite responses, eight secondary metabolite responses, and four physical defence responses. We examined these response variable changes under two-way and three-way interactions between CO(2) and: soil nitrogen, ambient temperature, drought, light availability, photosynthetic pathway, reproductive system, plant growth rate, plant growth form, tissue type, and nitrogen fixation. In general we found smaller effect sizes for many response variables than have been previously reported. We also found that many of the oft-reported main effects of CO(2) obscure the presence of significant two- and three-way interactions, which may help better explain the relationships between the response variables and elevated CO(2).
我们进行了迄今为止最广泛的关于植物和动物对升高的 CO2 反应的荟萃分析。我们分析了从 1979 年至 2009 年发表的 270 篇论文中提取的超过 5000 个数据点。我们研究了 19 种动物对升高的 CO2 的主要影响的反应变量的变化。我们发现,节肢动物目和取食群之间存在着明显的变异,包括反应方向的相互作用。我们还研究了升高的 CO2 对以下方面的主要影响:六种植物生长和分配反应、七种初级代谢物反应、八种次级代谢物反应和四种物理防御反应。我们在 CO2 与以下因素之间的双向和三向相互作用下检查了这些反应变量的变化:土壤氮、环境温度、干旱、光照可用性、光合作用途径、生殖系统、植物生长率、植物生长形式、组织类型和固氮。总的来说,我们发现许多反应变量的效应大小比以前报道的要小。我们还发现,CO2 的许多常报告的主要影响掩盖了显著的双向和三向相互作用的存在,这可能有助于更好地解释反应变量与升高的 CO2 之间的关系。