Javascript must be enabled to continue!
Environmental filtering and habitat (mis)matching of riverine invertebrate metacommunities
View through CrossRef
Abstract
Aim
Metacommunities are assembled through a combination of local and regional processes, with the relative importance of the drivers of assembly depending on ecological context. Global change can alter community assembly at both local and regional levels, potentially shifting communities into disequilibrium with their local environmental conditions. In this study, we evaluated the spatial variation in environmental filtering and habitat matching of 1078 riverine macroinvertebrate communities distributed across nine ecoregions within the conterminous United States.
Location
Conterminous United States.
Taxon
Freshwater macroinvertebrates.
Methods
We first quantified spatial patterns in environmental filtering, habitat matching, and functional trait diversity. We then used boosted regression trees to identify (1) functional trait predictors of environmental filtering and habitat matching and (2) environmental, landscape, and network variables that predict functional trait abundances.
Results
Our results demonstrated that environmental filtering but not habitat matching varied strongly by ecoregion. We also found that functional trait diversity varied by ecoregion, but not as strongly as the signatures of environmental filtering. We did not identify consistent functional trait predictors for both environmental filtering and habitat matching, with trait predictors instead varying by individual traits, trait categories, and ecoregions. Notwithstanding inconsistent trait predictors, environmental filtering was primarily influenced by habitat preference traits while habitat matching was primarily influenced by both habitat preference and dispersal traits. Predictors of functional traits also varied by trait category and ecoregion, with habitat preference and dispersal traits primarily influenced by network variables.
Main conclusions
Our study demonstrates the contingent patterns and drivers of environmental filtering and habitat matching on a macroecological scale. We aim for this work to provide the foundation on which trait-environment relationships can be further quantified and causal explanations established in the context of community disequilibrium and applied to conservation and management of freshwater systems.
Title: Environmental filtering and habitat (mis)matching of riverine invertebrate metacommunities
Description:
Abstract
Aim
Metacommunities are assembled through a combination of local and regional processes, with the relative importance of the drivers of assembly depending on ecological context.
Global change can alter community assembly at both local and regional levels, potentially shifting communities into disequilibrium with their local environmental conditions.
In this study, we evaluated the spatial variation in environmental filtering and habitat matching of 1078 riverine macroinvertebrate communities distributed across nine ecoregions within the conterminous United States.
Location
Conterminous United States.
Taxon
Freshwater macroinvertebrates.
Methods
We first quantified spatial patterns in environmental filtering, habitat matching, and functional trait diversity.
We then used boosted regression trees to identify (1) functional trait predictors of environmental filtering and habitat matching and (2) environmental, landscape, and network variables that predict functional trait abundances.
Results
Our results demonstrated that environmental filtering but not habitat matching varied strongly by ecoregion.
We also found that functional trait diversity varied by ecoregion, but not as strongly as the signatures of environmental filtering.
We did not identify consistent functional trait predictors for both environmental filtering and habitat matching, with trait predictors instead varying by individual traits, trait categories, and ecoregions.
Notwithstanding inconsistent trait predictors, environmental filtering was primarily influenced by habitat preference traits while habitat matching was primarily influenced by both habitat preference and dispersal traits.
Predictors of functional traits also varied by trait category and ecoregion, with habitat preference and dispersal traits primarily influenced by network variables.
Main conclusions
Our study demonstrates the contingent patterns and drivers of environmental filtering and habitat matching on a macroecological scale.
We aim for this work to provide the foundation on which trait-environment relationships can be further quantified and causal explanations established in the context of community disequilibrium and applied to conservation and management of freshwater systems.
Related Results
Keystone communities can rescue aquatic metacommunities influenced by pesticide contamination
Keystone communities can rescue aquatic metacommunities influenced by pesticide contamination
Abstract
Pesticide contamination in freshwater habitats is a major global issue, affecting water quality, biodiversity, and ecosystem services. Uncontaminated hab...
Filtering Methods for Biomedical Image Denoising
Filtering Methods for Biomedical Image Denoising
In this paper, the filtering method of biomedical image denoising is described comprehensively. Firstly, it introduces the biomedical image denoising, describes the relationship be...
Clinical, laboratory and echocardiographic parameters suggestive of multi-system inflammatory syndrome in children at a tertiary hospital in South Africa
Clinical, laboratory and echocardiographic parameters suggestive of multi-system inflammatory syndrome in children at a tertiary hospital in South Africa
Background. Worldwide studies have described features and outcomes of multi‐system inflammatory syndrome in children (MIS‐C) to assist with the diagnosis and guide medical manageme...
Impact of habitat alteration on amphibian diversity and species composition in a lowland tropical rainforest in Northeastern Leyte, Philippines
Impact of habitat alteration on amphibian diversity and species composition in a lowland tropical rainforest in Northeastern Leyte, Philippines
AbstractThe impact of anthropogenic habitat alteration on amphibians was investigated, employing an investigative focus on leaf-litter and semi-aquatic species across different hab...
Patterns of island fox habitat use in sand dune habitat on San Clemente Island
Patterns of island fox habitat use in sand dune habitat on San Clemente Island
Identifying areas of high-quality habitat is often a critical first step
for the recovery and management of species of conservation concern, yet
patterns of high density in an area...
When humans work like beavers: riparian restoration enhances invertebrate gamma diversity and habitat heterogeneity
When humans work like beavers: riparian restoration enhances invertebrate gamma diversity and habitat heterogeneity
Restoration has the potential to increase habitat heterogeneity through the creation of unique habitat patches that, in turn, increase regional species richness or gamma diversity....
Vegetation of Australian Riverine Landscapes
Vegetation of Australian Riverine Landscapes
Vegetation communities in Australia's riverine landscapes are ecologically, economically and culturally significant. They are also among the most threatened ecosystems on the conti...
Modeling Elk Nutrition and Habitat Use in Western Oregon and Washington
Modeling Elk Nutrition and Habitat Use in Western Oregon and Washington
ABSTRACTStudies of habitat selection and use by wildlife, especially large herbivores, are foundational for understanding their ecology and management, especially if predictors of ...

