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Spatial processes structuring riparian plant communities in agroecosystems: implications for restoration. | LitMetric

Spatial processes structuring riparian plant communities in agroecosystems: implications for restoration.

Ecol Appl

Département de Phytologie, Faculté des Sciences de l'Agriculture et de l'Alimentation, Université Laval, 2425 rue de l'agriculture, Québec, Québec, G1V 0A6, Canada.

Published: October 2016

AI Article Synopsis

  • Human activities like flood regulation and land-use changes disrupt the natural connectivity of water systems, affecting riparian plant communities.
  • In a study of 51 restored riparian zones in Québec, the researchers examined how environmental factors and spatial processes influence plant composition, finding significant effects of upstream-downstream water flow gradients on species distribution.
  • The study highlights the importance of maintaining hydrological connectivity and suggests that strategies for restoring riparian areas should prioritize the natural flow of water and seed traits for effective community recovery.

Article Abstract

The disruption of hydrological connectivity by human activities such as flood regulation or land-use changes strongly impacts riparian plant communities. However, landscape-scale processes have generally been neglected in riparian restoration projects as opposed to local conditions, even though such processes might largely influence community recovery. We surveyed plant composition of field edges and riverbanks in 51 riparian zones restored by tree planting (565 1-m plots) within two agricultural watersheds in southeastern Québec, Canada. Once the effects of environmental variables (hydrology, soil, agriculture, landscape, restoration) were partialled out, three models of spatial autocorrelation based on Moran's eigenvector maps and asymmetric eigenvector maps were compared to quantify the pathways and direction of the spatial processes structuring riparian communities. The ecological mechanisms underlying predominant spatial processes were then assessed by regression trees linking species response to spatial gradients to seed and morphological traits. The structure of riparian communities was predominantly related to unidirectional spatial gradients from upstream to downstream along watercourses, which contributed more to species composition than bidirectional gradients along watercourses or overland. Plant traits selected by regression trees explained 22% of species response to unidirectional upstream-downstream gradients in field edges and 24% in riverbanks, and predominantly corresponded to seed traits rather than morphological traits of the adult plants. Our study showed that even in agriculturally open landscapes, water flow remains a major force structuring spatially riparian plant communities by filtering species according to their seed traits, thereby suggesting long-distance dispersal as a predominant process. Preserving hydrological connectivity at the watershed-scale and restoring riparian plant communities from upstream to downstream should be encouraged to improve the ecological integrity of rivers running through agricultural landscapes.

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Source
http://dx.doi.org/10.1890/15-1368.1DOI Listing

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