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Competitive interactions between native and invasive exotic plant species are altered under elevated carbon dioxide

机译:在二氧化碳增加的情况下,本地和入侵外来植物物种之间的竞争相互作用发生了变化

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We hypothesized that the greater competitive ability of invasive exotic plants relative to native plants would increase under elevated CO2 because they typically have traits that confer the ability for fast growth when resources are not limiting and thus are likely to be more responsive to elevated CO2. A series of competition experiments under ambient and elevated CO2 glasshouse conditions were conducted to determine an index of relative competition intensity for 14 native-invasive exotic species-pairs. Traits including specific leaf area, leaf mass ratio, leaf area ratio, relative growth rate, net assimilation rate and root weight ratio were measured. Competitive rankings within species-pairs were not affected by CO2 concentration: invasive exotic species were more competitive in 9 of the 14 species-pairs and native species were more competitive in the remaining 5 species-pairs, regardless of CO2 concentration. However, there was a significant interaction between plant type and CO2 treatment due to reduced competitive response of native species under elevated compared with ambient CO2 conditions. Native species had significantly lower specific leaf area and leaf area ratio under elevated compared with ambient CO2. We also compared traits of more-competitive with less-competitive species, regardless of plant type, under both CO2 treatments. More-competitive species had smaller leaf weight ratio and leaf area ratio, and larger relative growth rate and net assimilation rate under both ambient and elevated CO2 conditions. These results suggest that growth and allocation traits can be useful predictors of the outcome of competitive interactions under both ambient and elevated CO2 conditions. Under predicted future atmospheric CO2 conditions, competitive rankings among species may not change substantially, but the relative success of invasive exotic species may be increased. Thus, under future atmospheric CO2 conditions, the ecological and economic impact of some invasive exotic plants may be even greater than under current conditions.
机译:我们假设在CO 2 升高的条件下,外来入侵植物相对于本土植物的竞争能力将增强,因为它们通常具有在不受资源限制的情况下具有快速生长能力的特征,因此很可能对升高的CO 2 敏感。在环境和升高的CO 2 温室条件下进行了一系列竞争实验,以确定14种外来入侵外来物种对的相对竞争强度指标。测定了比叶面积,叶质量比,叶面积比,相对生长率,净同化率和根重比等性状。物种对内的竞争排名不受CO 2 浓度的影响:外来入侵物种在14个物种对中的9个中更具竞争力,而本土物种在其余5个物种对中更具竞争力CO 2 浓度的变化。然而,由于与环境CO 2 条件相比,在升高的条件下原生物种的竞争反应降低,因此植物类型与CO 2 处理之间存在显着的相互作用。与升高的CO 2 相比,在升高的情况下,本地物种的比叶面积和叶面积比明显降低。我们还比较了在两种CO 2 处理下,无论植物类型如何,竞争性较高的物种和竞争性较低的物种的特征。在环境和升高的CO 2 条件下,竞争性较强的树种的叶重比和叶面积比较小,相对生长率和净同化率较大。这些结果表明,生长和分配特征可以作为环境和高CO 2 条件下竞争相互作用结果的有用预测指标。在预测的未来大气CO 2 条件下,物种间的竞争排名可能不会发生重大变化,但外来入侵物种的相对成功可能会增加。因此,在未来大气CO 2 条件下,某些外来入侵植物的生态和经济影响可能会比当前条件下更大。

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