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首页> 外文期刊>The Journal of Applied Ecology >Large river floodplain restoration: predicting species richness and trait responses to the restoration of hydrological connectivity
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Large river floodplain restoration: predicting species richness and trait responses to the restoration of hydrological connectivity

机译:大型河流漫滩修复:预测物种丰富度和特征反应恢复水文连通性

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Floodplains are species-rich environments often strongly impacted by human activities. In particular, the negative effects of progressive and rapid disconnection of secondary channels have led to restoration programmes and a growing interest in restoration ecology. Current restoration strategies in large river floodplains focus on the macroinvertebrate response related to the increases in lateral connectivity of the secondary channels. We constructed a framework to assess a gradient of hydrological connectivity among 13 secondary channels and the main channel of a large river, and we modelled the response of a set of macroinvertebrate metrics to this gradient. Comparisons between predicted and observed metrics in restored channels allowed us to measure the effect of an increase in the hydrological connectivity on the biological characteristics of macroinvertebrate assemblages. The pre-restoration framework enabled a clear ordering of channels into three types according to levels of hydrological connectivity. Rarefied richness and species traits, responding to the connectivity gradient, showed a net difference between disconnected channels and the main river channel. We were able to highlight a predation-colonization trade-off along the gradient of hydrological connectivity with a maximum colonization potential in the most connected channels. Post-restoration sampling showed deviations of the restored channels from their expected ecological state. A large proportion of colonizers were favoured by the restoration operations and non-native species occurred in the restored channels. Synthesis and applications. Macroinvertebrate biodiversity in large river floodplains is shaped by lateral hydrological connectivity. Increasing hydrological connectivity led to an increase in colonization rate. One year after restoration, the increase in lateral connectivity had shifted the restored sites away from the predicted state. This unpredictability is, in part, a consequence of the rapid colonization by non-native species of new habitats created by the restoration measures. We recommend that floodplain-scale restoration should focus on diversification of the hydrological connectivity of channels, thereby conserving a maximum of functional characteristics in macroinvertebrate communities.
机译:经常泛滥平原丰富的环境人类活动强烈影响。进步的负面影响和二级渠道的快速断开导致恢复计划和增长恢复生态学的兴趣。在大型河流冲积平原恢复策略关注相关的大型无脊椎动物的反应增加横向连通性的二级渠道。评估一个梯度的水文连通性在13个二级渠道和主要通道大的河流,我们模仿的反应一套大型无脊椎动物指标梯度。让我们观察指标恢复通道测量的影响增加水文连通性的生物大型无脊椎动物组合的特征。pre-restoration框架明确启用订购的渠道分为三个类型水文连通性的水平。丰富和物种特征,应对连接梯度,显示净差异断开连接的通道和主河之间通道。predation-colonization权衡沿着梯度的水文连通性最大的殖民潜力最连接通道。显示恢复通道的偏差他们预期生态状态。比例的殖民者是青睐的恢复操作和非本地物种发生在恢复通道。应用程序。大型河流冲积平原是由横向水文连通性。水文连通性的增加殖民率。横向连通性的增加已经发生了变化恢复网站的预测状态。这种不可预测性,部分结果的快速非本地物种的入侵新创建的栖息地的恢复措施。修复应致力于多元化水文连通性的频道,从而保护最大的功能大型无脊椎动物群落的特征。

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