Restoration Ecology, Technische Universität München, Emil-Ramann-Str. 6, 95354, Freising, Germany.
Sci Rep. 2023 Nov 16;13(1):20097. doi: 10.1038/s41598-023-47477-y.
Quantifying the potential of a braided riverscape to be colonized by a plant species is essential for assessing the ecological state of the river and provides an important basis for nature conservation planning and the implementation of restoration measures. Common connectivity indices are largely unsuitable for describing the situation for the mostly wind-dispersed plant species. Our approach provides a set of comparable metrics that allows the quantification of the colonization potential of riverscapes at the patch and riverscape level. We propose a set of cell-based, spatially explicit measures that can easily be implemented. We demonstrate their application using two typical plant species and three riverscapes with different habitat configurations as examples. Our metrics consider shape, size and the spatial configuration of habitat patches, along with the dispersal characteristics of the respective species. The metrics provide a linear, balanced, and realistic representation of the colonization potential at the cell, patch, and riverscape levels. The results are comparable between different riverscapes and species, can be easily extended and used for further modeling. The metrics provide a valuable tool for the planning and evaluation of conservation, restoration, and reintroduction measures and close the gap between habitat availability analyses and large-scale terrestrial connectivity indices.
量化辫状河流景观被植物物种殖民的潜力对于评估河流的生态状况至关重要,为自然保护规划和恢复措施的实施提供了重要依据。常用的连通性指数在很大程度上不适合描述以风传播为主的植物物种的情况。我们的方法提供了一组可比的指标,可用于量化斑块和景观水平的河流景观的殖民潜力。我们提出了一组基于单元的、空间显式的度量标准,这些度量标准易于实现。我们使用两种典型的植物物种和三个具有不同生境配置的河流景观作为示例来演示其应用。我们的指标考虑了栖息地斑块的形状、大小和空间配置,以及各自物种的扩散特征。该指标在单元、斑块和景观水平上提供了一种线性、平衡和现实的殖民潜力表示。结果在不同的河流景观和物种之间具有可比性,可以轻松扩展并用于进一步建模。该指标为保护、恢复和再引入措施的规划和评估提供了有价值的工具,并缩小了栖息地可用性分析和大规模陆地连通性指数之间的差距。