Data from: More than just a margin: Local and landscape-scale factors regulating the effects of riparian forest buffers on stream-riparian ecosystems in urban and agricultural landscapes
Data files
Aug 05, 2026 version files 90.44 KB
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1_McKie_et_al_Dryad_main_data_file.xlsx
44.39 KB
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2_McKie_et_al_Dryad_Land_use_and_local_geomorphology.xlsx
26.48 KB
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Read_me_McKie_et_al_data_information.xlsx
16.27 KB
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README.md
3.30 KB
Abstract
Riparian forest buffers are a potentially potent nature-based solution for mitigating environmental degradation and improving biodiversity and ecosystem functioning in stream-riparian networks. However, uncertainties about how buffer size, spatial configuration, and land-use intensity shape outcomes and trade-offs hinders management applications. We conducted coordinated field surveys and modelling across four European countries to evaluate how riparian forest properties influence stream-riparian environments, biodiversity, ecosystem processes, and macroinvertebrate functional traits along agricultural and urban land-use gradients. Riparian forest buffers had strong effects on habitats, increasing shading and coarse woody debris. Sediment deposition was halved in buffered stream reaches, and longer buffers lowered thermal maxima in stream and riparian habitats by 13–17%. Buffers further reduced effects of increasing agricultural land use on soluble reactive phosphate concentrations, although this response was highly variable. These environmental changes were associated with multiple effects on biodiversity and ecosystem function. Buffer presence and/or increasing length were associated with 30-100% increases in microbial detritus decomposition, a 53% increase in riparian beetle diversity, and 18%–77% increases in stream macroinvertebrate diversity and the EPT biotic index, and macroinvertebrate leaf shredding and algal grazing traits. In contrast, algal biomass accrual and web-building spider diversity declined by 33% and 36%, respectively, in buffered reaches. As land-use intensified, riparian forest buffers helped maintain macroinvertebrate functional diversity and shredding, predation, and filtration traits, and saturated fatty acid content in terrestrial predators. In contrast, macroinvertebrate particle gathering traits declined. The spatial configuration of riparian forest influenced stream ecosystems at local scales: dissolved phosphorus and diatom species richness declined as spatial proximity among upstream riparian forest blocks decreased, while a diatom-based biomonitoring index increased. Synthesis and applications: Riparian forest buffers support biodiversity, ecosystem functioning, and food webs in human-modified landscapes, and dampen land-use and climate stressors (sediments, nutrients, thermal maxima), motivating their wider use in management. These outcomes were regulated by the presence or size of mostly small, mature buffers, and sometimes by proximity among riparian forest blocks upstream, indicating that even modest investments in expanding existing buffer networks are likely to deliver cumulative ecological benefits.
Dataset DOI: 10.5061/dryad.2280gb67r
Description of the data and file structure
Two files providing data underpinning the analyses presented in McKie et al. are provided
1) The main data file underpinning most multivariate analyses and general linear modelling presented in the manuscript. These comprise information on predictor variables and blocking factors, together with multiple environmental, biodiversity, ecosystem process, and macro-invertebrate trait variables.
Predictor variables comprise buffer presence (ground-truthed in the field), buffer length (quantified using Google Earth), upstream riparian connectivity (based on average distance among upstream riparian forest blocks, quantified using remote sensing in Copernicus) and land use impact gradients (based on axes from a multivariate principal components analysis of land use and local geomorphology data). Blocking factors comprise country and stream identity.
Response variables comprise multiple environmental, biodiversity, ecosystem process and macroinvertebrate trait variables quantified in the field from paired buffered-unbuffered reaches across four European countries.
All data provided here are raw and untransformed
2) A secondary data file that includes the land use and local geomorphology variables used to generate the axes of agricultural and urban land use using the PCA presented in Supplementary material, Appendix S3.
The second file also includes additional information on site coordinates, elevation, etc.
Land use variables were obtained with the help of GIS, and local hydromorphology data were quantified in the field
Manuscript title: More than just a margin: Local and landscape-scale factors regulating the effects of riparian forest buffers on stream-riparian ecosystems in urban and agricultural landscapes
Files and variables
File: Read_me_McKie_et_al_data_information.xlsx
Description: This file contains descriptions and units (where relevant) for columns in data files one and two
File: 2_McKie_et_al_Dryad_Land_use_and_local_geomorphology.xlsx
Description: Land use and local geomorphology variables used to generate the axes of agricultural and urban land use using the PCA presented in Supplementary material, Appendix S3. This file also includes additional information on site coordinates, elevation, etc.
File: 1_McKie_et_al_Dryad_main_data_file.xlsx
Description: main data file underpinning most multivariate analyses and general linear modelling presented in the manuscript. These comprise information on predictor variables and blocking factors, together with multiple environmental, biodiversity, ecosystem process, and macro-invertebrate trait variables.
Code/software
The files are made in Microsoft Excel for Mac Version 16.111.2 (26072617). and can be opened be opened using any free/open-source software options capable of opening Excel files, notably LibreOffice Calc, OnlyOffice, and Gnumeri
