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首页> 外文期刊>Journal for nature conservation >Functional diversity analysis helps to identify filters affecting community assembly after fen restoration by top-soil removal and hay transfer
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Functional diversity analysis helps to identify filters affecting community assembly after fen restoration by top-soil removal and hay transfer

机译:功能多样性分析有助于通过顶层土壤清除和干草转移来识别影响芬恢复后影响社区聚集的过滤器

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Top-soil removal followed by species introduction through hay transfer has appeared as a method to restore drained fens. This method addresses abiotic constraints by restoring hydrology and nutrient status, and biotic constraints by removing an unwanted seed bank and counteracting dispersal-limitation. Restoration works by altering environmental filters. Knowledge about the restoration actions effect on functional traits is necessary to understand which types of species may establish. In this study we analyse which factors in top-soil removal followed by hay transfer influence selection and composition of functional traits. Top-soil removal followed by hay transfer from reference sites was conducted at two sites in the Caiowanie fen, 33 km SE of Warsaw, Poland. Species and abundance data were recorded for three consecutive years. These data, combined with data on functional traits were used to analyse the effect of the restoration actions on four functional diversity-indices and the community weighted mean of functional traits. Our results reveal a strong habitat filter in the restoration site that follows an elevation gradient. At low elevation this filter selects low values of autochory and specific leaf area and high values of clonal lateral spread, Ellenberg moisture values, and dispersal through hydrochory. The transferred hay differs in trait characteristics compared to the reference site vegetation by having species of higher specific leaf area, lower Ellenberg moisture value and lower dispersal by autochory and hydrochory. The result presented here has three important implications for fen restoration. First, the difference in trait-characteristics between the transferred hay and the reference site it was harvested from limits the restoration potential. Second, since for several fen species important functional traits are filtered along an elevation-gradient, careful planning regarding depth of top-soil removal is needed. Finally the results illustrate how a functional analysis can be used to detect environmental filters acting during ecological restoration.
机译:去除表层土壤,然后通过干草转移引入物种已成为恢复排水系统的一种方法。该方法通过恢复水文和养分状况来解决非生物限制,而通过去除不需要的种子库并抵消扩散限制来解决生物限制。恢复通过更改环境过滤器来进行。必须了解有关恢复行动对功能性状的影响,才能了解可能建立的物种类型。在这项研究中,我们分析了去除表层土壤的哪些因素以及随后的干草转移影响了选择和功能性状的组成。在波兰华沙东南33公里的Caiowanie fen的两个地点进行了表层土壤的除草和从参考地点的干草转移。连续三年记录了物种和丰度数据。这些数据与功能性状的数据相结合,用于分析恢复行动对四种功能多样性指数的影响以及功能性状的社区加权平均值。我们的结果表明,在海拔高度梯度遵循的恢复区域中,有一个强大的栖息地过滤器。在低海拔时,此过滤器选择较低的自选和特定叶面积值以及较高的克隆侧向扩散值,Ellenberg水分值和通过水耕法扩散。与参考地点的植被相比,所转移的干草在性状特征上有所不同,其原因是具有较高的比叶面积,较低的埃伦贝格水分值和较低的通过自选和水合作用进行分散的物种。此处给出的结果对芬恢复具有三个重要意义。首先,转移的干草与从中收获的参考部位之间的性状特征差异限制了恢复潜力。其次,由于对于几种物种,重要的功能性状是沿着海拔梯度进行过滤的,因此需要仔细计划表层土壤的去除深度。最后,结果说明了如何使用功能分析来检测在生态恢复过程中起作用的环境过滤器。

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