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Aspects of Invasiveness of Ludwigia and Nelumbo in Shallow Temperate Fluvial Lakes

机译:浅温带河流湖泊中路德维希亚和莲子入侵的方面

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摘要

The relationship between invasive plant functional traits and their invasiveness is still the subject of scientific investigation, and the backgrounds of transition from non-native to invasive species in ecosystems are therefore poorly understood. Furthermore, our current knowledge on species invasiveness is heavily biased toward terrestrial species; we know much less about the influence of allochthonous plant traits on their invasiveness in aquatic ecosystems. In this paper, we present the results of a study on physiological and ecological traits of two introduced and three native macrophyte species in the Mantua lakes system (northern Italy). We compared their photophysiology, pigment content, leaf reflectance, and phenology in order to assess how the invasive Nelumbo nucifera and Ludwigia hexapetala perform compared to native species, Nuphar lutea, Nymphaea alba, and Trapa natans. We found L. hexapetala to have higher photosynthetic efficiency and to tolerate higher light intensities than N. nucifera and the native species especially at extreme weather conditions (prolonged exposure to high light and higher temperatures). Chlorophyll a and b, and carotenoids content of both allochthonous species were substantially higher than those of native plants, suggesting adaptive response to the ecosystem of Mantua lakes system. Higher variability of recorded data in invasive species was also observed. These observations suggest advanced photosynthetic efficiency of the invasive species, especially L. hexapetala, resulting in faster growth rates and higher productivity. This was supported by the evaluation of seasonal dynamics mapped from satellite remote sensing data. This study provides empirical evidence for the relationship between specific plant physiological traits and invasiveness of aquatic plant species, highlighting the importance of trait studies in predicting ecosystem-level impacts of invasive plant species.
机译:入侵植物功能性状与其入侵性之间的关系仍然是科学研究的主题,因此人们对生态系统中从非本地物种向入侵物种过渡的背景了解甚少。此外,我们目前对物种入侵的了解严重偏向陆生物种。我们对水生生态系统中外来植物性状对其入侵性的影响了解得很少。在本文中,我们介绍了曼图亚湖系统(意大利北部)中两种引进的和三种本地大型植物物种的生理和生态特征的研究结果。我们比较了它们的光生理学,色素含量,叶片反射率和物候学,以评估与本地物种Nuphar lutea,Nymphaea alba和Trapa natans相比,入侵性莲(Nelumbo nucifera)和路德维希(Ludwigia hexapetala)的表现如何。我们发现六瓣锦葵比N. nucifera和本地物种具有更高的光合作用效率和更高的光强度,特别是在极端天气条件下(长时间暴露于高光和高温下)。两种异种物种的叶绿素a和b以及类胡萝卜素含量均显着高于本地植物,表明对曼托瓦湖系统的生态系统具有适应性。还观察到入侵物种中记录数据的较高变异性。这些观察结果表明,入侵物种,特别是六瓣金龟草具有更高的光合作用效率,从而导致更快的生长速度和更高的生产力。卫星遥感数据映射的季节动态评估对此提供了支持。这项研究为特定植物生理性状与水生植物入侵性之间的关系提供了经验证据,突显了性状研究在预测入侵植物物种的生态系统影响方面的重要性。

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