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Different responses of invasive and native species to elevated CO2 concentration

机译:入侵和本地物种对二氧化碳浓度升高的不同反应

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Increasing atmospheric CO2 concentration is regarded as an important factor facilitating invasion. However, the mechanisms by which invasive plants spread at the expense of existing native plants are poorly understood. In this study, three invasive species (Mikania micrantha, Wedelia trilobata and lpomoea cairica) and their indigenous co-occurring species or congeners (Paederia scandens, Wedelia chinensis and lpomoea pescaprae) in South China were exposed to elevated CO2 concentration (700 mu mol mol(-1)), The invasive species showed an average increase of 67.1% in photosynthetic rate, significantly different from the native species (24.8%). On average the increase of total biomass at elevated CO2 was greater for invasive species (70.3%) than for the natives (30.5%). Elevated CO2 also resulted in significant changes in biomass allocation and morphology of invasive M. micrantha and W. trilobata. These results indicate a substantial variation in response to elevated CO2 between these invasive and native plant species, which might be a potential mechanism partially explaining the success of invasion with ongoing increase in atmospheric CO2. (C) 2008 Elsevier Masson SAS. All rights reserved.
机译:大气中二氧化碳浓度的增加被认为是促进入侵的重要因素。然而,人们对入侵植物以现有天然植物为代价进行传播的机制了解甚少。在这项研究中,中国南部的三种入侵物种(薇甘菊,细叶Wedelia trilobata和lpomoea cairica)及其本土共生物种或同源物(Paederia scandens,Wedelia chinensis和lpomoea pescaprae)暴露于较高的CO2浓度(700μmolmol)。 (-1)),入侵物种的光合速率平均提高了67.1%,与本地物种(24.8%)的差异显着。平均而言,入侵物种的总生物量在二氧化碳增加的情况下增加了(70.3%),而本土物种则增加了30.5%。二氧化碳浓度升高还导致入侵性M.micrantha和W.trilobata的生物量分配和形态发生重大变化。这些结果表明,在这些入侵植物和本地植物之间,对升高的CO2的响应存在很大差异,这可能是部分解释了大气CO2持续增加的入侵成功的潜在机制。 (C)2008 Elsevier Masson SAS。版权所有。

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