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首页> 外文期刊>Ecology and Evolution >Structural and functional responses of plant communities to climate change‐mediated alterations in the hydrology of riparian areas in temperate Europe
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Structural and functional responses of plant communities to climate change‐mediated alterations in the hydrology of riparian areas in temperate Europe

机译:欧洲温带河岸地区植物群落对气候变化介导的水文学变化的结构和功能响应

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The hydrology of riparian areas changes rapidly these years because of climate change‐mediated alterations in precipitation patterns. In this study, we used a large‐scale in situ experimental approach to explore effects of drought and flooding on plant taxonomic diversity and functional trait composition in riparian areas in temperate Europe. We found significant effects of flooding and drought in all study areas, the effects being most pronounced under flooded conditions. In near‐stream areas, taxonomic diversity initially declined in response to both drought and flooding (although not significantly so in all years) and remained stable under drought conditions, whereas the decline continued under flooded conditions. For most traits, we found clear indications that the functional diversity also declined under flooded conditions, particularly in near‐stream areas, indicating that fewer strategies succeeded under flooded conditions. Consistent changes in community mean trait values were also identified, but fewer than expected. This can have several, not mutually exclusive, explanations. First, different adaptive strategies may coexist in a community. Second, intraspecific variability was not considered for any of the traits. For example, many species can elongate shoots and petioles that enable them to survive shallow, prolonged flooding but such abilities will not be captured when applying mean trait values. Third, we only followed the communities for 3?years. Flooding excludes species intolerant of the altered hydrology, whereas the establishment of new species relies on time‐dependent processes, for instance the dispersal and establishment of species within the areas. We expect that altered precipitation patterns will have profound consequences for riparian vegetation in temperate Europe. Riparian areas will experience loss of taxonomic and functional diversity and, over time, possibly also alterations in community trait responses that may have cascading effects on ecosystem functioning.
机译:近年来,由于气候变化介导的降水模式变化,河岸地区的水文学变化迅速。在这项研究中,我们使用了大规模的原位实验方法来探索干旱和洪水对温带欧洲河岸地区植物分类学多样性和功能性状组成的影响。我们在所有研究区域中都发现了洪水和干旱的重大影响,这种影响在洪水条件下最为明显。在近流地区,分类学多样性起初是对干旱和洪水的响应(尽管并非所有年份都如此),但在干旱条件下保持稳定,而在洪水条件下则持续下降。对于大多数性状,我们发现明显的迹象表明,在洪水条件下,特别是在近流地区,功能多样性也下降了,这表明在洪水条件下成功的策略较少。社区平均特征值的一致变化也被确定,但是比预期的要少。可以有几种解释,但并不互相排斥。首先,社区中可能共存不同的适应策略。其次,没有考虑任何性状的种内变异性。例如,许多物种可以使芽和叶柄伸长,使它们能够在浅水,长时间的洪水中生存,但是当应用平均特征值时,此类能力将无法捕获。第三,我们只关注社区3年。洪水排除了不耐受水文变化的物种,而新物种的建立则依赖于时间相关的过程,例如区域内物种的扩散和建立。我们希望改变降水模式将对欧洲温带地区的河岸植被产生深远的影响。河岸地区将遭受生物分类和功能多样性的损失,随着时间的流逝,社区特征反应的改变也可能会对生态系统功能产生连锁反应。

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