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99 results for “scale-dependency”
Scale-dependent shifts in functional and phylogenetic structure of Mediterranean island plant communities over two centuries
<p>1. Since the Industrial Revolution, the rapid global population and economic expansion has had tremendous impacts on biodiversity across spatial scales, especially for islands. While changes in species richness are easily inferred, the impact of human activity on the underlying community assembly processes has been difficult to ascertain because of lack of long-term community data.</p> <p>2. Here, we document how the manifestations of plant community assembly have changed over time and space in a Mediterranean archipelago, using a long-term dataset of plant species composition on 16 Tuscan islands sampled across two centuries. The community structure of Mediterranean island plant communities was assessed by integrating species' trait and evolutionary distances.</p> <p>3. We found that, with increasing island area, the functional and phylogenetic structure of plant communities shifted from clustered early (1830–1950) to overdispersed more recently (1951–2015). On large islands, extirpated species were generally more phylogenetically or functionally similar to remaining residents than expected by chance, while colonists were generally more distantly related to residents. The extinction of similar species and the colonization of dissimilar species drove plant communities towards overdispersion.</p> <p>4. Synthesis. We provide evidence that plant community assembly on islands has dramatically changed following increased human impacts during the last two centuries, and that this change is shaped by the scale dependency of species extinctions and colonizations. Our results reveal accelerated species replacements of closely related residents by distant colonists on large islands over time, reflecting changes in community assembly and which could alter the functioning of island ecosystems in the future. </p>
Data from: Scale-dependent effects of terrestrial habitat on genetic variation in the great crested newt (Triturus cristatus)
<p><b>Context</b></p> <p class="CxSpMiddle">Terrestrial landscapes surrounding aquatic habitat influence the persistence of amphibian spatially structured populations (SSPs) via their crucial role in providing estivation and overwintering sites, facilitating or hampering dispersal and colonisation, and consequently the maintenance or loss of genetic diversity.</p> <p><b>Objectives</b></p> <p class="CxSpMiddle">To highlight the landscape drivers of genetic variation, we investigated the relationship between the level of genetic variation measured within ponds of the great crested newt (<i>Triturus cristatus</i>), and the composition of the surrounding landscape at various spatial scales.</p> <p><b>Methods</b></p> <p class="CxSpMiddle">Based on the sampling of 40 ponds in thirteen SSPs, the influence of landscape features on several estimators of genetic variation was investigated via linear mixed models, with effects within and between SSPs incorporated.</p> <p><b>Results</b></p> <p class="CxSpMiddle">The best models depended on the spatial scale, with more significant associations within radii of 50 and 100 m of core ponds, particularly for allelic richness. Responses within and between SSPs were mostly similar. The availability of aquatic habitat in the landscape had a positive effect, while woodland, arable land and pasture had different effects depending on scale and response variable. Total length of roads within a 250 m radius influenced effective population size negatively.</p> <p><b>Conclusions</b></p> <p class="CxSpMiddle">Our results stress the need to investigate the influence of environmental predictors at multiple spatial scales for an adequate understanding of ongoing processes. Generally, the landscape affected genetic variation similarly within and between SSPs. This allowed us to provide general guidelines for the persistence of great crested newt populations, with an emphasis on the importance of the aquatic habitat.</p>
Spatial scale-dependent dilution effects of biodiversity on plant diseases in grasslands
<p>This study was conducted at the Gansu Gannan Grassland Ecosystem National Observation and Research Station of Lanzhou University (33°40'N, 101°52'E, 3540 m a.s.l.), which is located on the eastern edge of the Qinghai-Tibetan Plateau. </p>
Data from: Scale-dependent responses of pollination and seed dispersal mutualisms in a habitat transformation scenario
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Data from: Scale-dependent genetic structure of the Idaho giant salamander (Dicamptodon aterrimus) in stream networks
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Data from: Scale-dependent shifts in the species composition of flower visitors with changing floral density
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Data from: Scale-dependent strategies for coexistence of mesocarnivores in human-dominated landscapes
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Data from: Scale-dependent variation in nitrogen cycling and soil fungal communities along gradients of forest composition and age in regenerating tropical dry forests
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Data from: Testing scale-dependent effects of semi-natural habitats on farmland biodiversity
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Data from: Scale-dependent home range optimality for a solitary omnivore
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Data from: Scale-dependent effects of terrestrial habitat on genetic variation in the great crested newt (Triturus cristatus)
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Data from: Scale-dependent foraging ecology of a marine top predator modelled using passive acoustic data
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Scale-dependent responses in spider and beetle communities to flooding: The role of dry refuges in wetlands
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Scale-dependent drivers of the phylogenetic structure and similarity of tree communities in northwestern Amazonia
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Scale-dependent species-area relationship: niche-based versus stochastic processes in a typical subtropical forest
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Data from: Scale-dependent adaptive evolution and morphological convergence to climatic niche in Californian eriogonoids (Polygonaceae)
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Data from: Scale-dependent phenological synchrony between songbirds and their caterpillar food source
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Scale-dependent shifts in functional and phylogenetic structure of Mediterranean island plant communities over two centuries
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Data from: Scale-dependent effects of landscape variables on gene flow and population structure in bats
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Data from: Functional diversity of phyllostomid bats in an urban-rural landscape: a scale-dependent analysis
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.