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Effects of elevated CO2 on competition between native and invasive grasses

机译:二氧化碳升高对本土与侵入性草竞争的影响

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Elevated atmospheric CO2 concentration increases the performance of invasive plants relative to natives when grown in monoculture, but it is unclear how that will affect the relative competitive abilities per se of invasive and native grasses grown together. We tested competitive outcomes for four native and four invasive perennial C3 and C4 grasses under ambient (390 ppm) and elevated (700 or 1000 ppm) CO2 concentrations in the greenhouse with non-limiting water and nutrients. We predicted that elevated CO2 would increase the competitive suppression of native grasses by invasive grasses. To test this, we determined the relative interaction intensity of biomass allocation for natives grown alone vs. those grown in native-invasive species pairs. We also measured photosynthetic traits that contribute to plant invasiveness and may be affected by elevated CO2 concentrations for species pairs in mixture to determine native-invasive relative performance. We found no effect of CO2 for the aboveground biomass and tiller production measures of interaction intensity or for relative performance for most of the measured photosynthetic traits. In competition, the invaders nearly always outperform natives in biomass and tiller production, regardless of CO2 level. The results suggest that increasing CO2 concentration alone has little effect on grass competitive outcomes under controlled conditions.
机译:升高的大气二氧化碳浓度增加了在单一殖栽中生长时侵入性植物相对于当地植物的性能,但目前尚不清楚这将如何影响侵入性和天然草的相对竞争性能力。在具有非限制性水和营养的温室中,我们在环境(390ppm)下进行了四个天然和四个侵入性多年生C3和C4草的竞争结果,并在温室中升高(700或1000ppm)CO 2浓度。我们预测,升高的二氧化碳将通过侵入性草增加本土草的竞争抑制。为了测试这一点,我们确定了单独生长的生物量分配的生物量分配的相对相互作用强度与天然侵入物种对生长的那些。我们还测量了有助于植物侵袭性的光合状态性状,并且可能受到混合物中物种对的升高的CO 2浓度的影响,以确定本机侵入性的相对性能。我们发现二氧化碳对地上生物质和分蘖生产措施的影响没有影响的相互作用强度或相对性能的大部分测量的光合性状。在竞争中,无论二氧化碳水平如何,入侵者几乎总是以生物量和分蘖产生的倾销,差异。结果表明,仅增加二氧化碳浓度对受控条件下的草竞争结果几乎没有影响。

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