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93 results for “ecological gradient”

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zenodo36/100

Data from: Chilean bee diversity: Contrasting patterns of species and phylogenetic turnover along a large-scale ecological gradient

<p>Title of dataset</p> <p>Data from: Chilean bee diversity: Contrasting patterns of species and phylogenetic turnover along a large-scale ecological gradient</p> <p>Authors of dataset</p> <p>Leon Marshall<sup>1,2</sup>, John S. Ascher<sup>3</sup>, Cristian Villagra<sup>4</sup>, Amaury Beaugendre<sup>1</sup>, Valentina Herrera<sup>4</sup>, Patricia Henr&iacute;quez-Piskulich<sup>4</sup>, Alejandro Vera<sup>5</sup>, Nicolas J. Vereecken<sup>1</sup></p> <ol> <li>Agroecology Lab, Universit&eacute; libre de Bruxelles (ULB), Boulevard du Triomphe CP 264/2, B 1050 Brussels, Belgium</li> <li>Naturalis Biodiversity Center, Darwinweg 2, 2333 CR Leiden, The Netherlands</li> <li>Department of Biological Sciences, National University of Singapore, 14 Science Drive 4, Singapore 117543, Singapore</li> <li>Instituto de Entomolog&iacute;a, Universidad Metropolitana de Ciencias de la Educaci&oacute;n, Santiago, Regi&oacute;n Metropolitana, Chile</li> <li>Departamento de Biolog&iacute;a, Universidad Metropolitana de Ciencias de la Educaci&oacute;n, Santiago, Regi&oacute;n Metropolitana, Chile</li> </ol> <p>Abstract</p> <p>Chile&#39;s isolation and varied climates have driven the evolution of a unique biodiversity with a high degree of endemism. As a result, Chile encompasses diverse environments, including the Mediterranean-type ecosystem, a global biodiversity hotspot. These environments are currently threatened by anthropogenic land use change impacting the integrity of local biomes and associated species. This area is the most intensively sampled of the country with high endemicity of native bee species. Characterising habitat requirements of bees is a pressing priority to safeguard these insects and the ecosystem services they provide. We investigated broad-scale patterns of bee (Hymenoptera: Apoidea: Anthophila) diversity using newly accessible expert-validated datasets comprising digitized specimen records from Chilean and US collections, and novel expert-validated type specimen data for the bees of Chile. We used a generalised dissimilarity modelling (GDM) approach to explore both compositional and phylogenetic &beta;-diversity patterns across latitudinal, altitudinal, climate and habitat gradients in well-sampled bee assemblages in Central Chile. Using the GDM measures of increasing compositional and environmental dissimilarity we categorised and compared the most important drivers of these patterns and used them to classify &#39;wild bee ecoregions&#39; (WBE) representing unique assemblages. Turnover of bee assemblages was explained primarily by latitudinal variation (proxy for climate) from south to north in Chile. However, temperature variations, precipitation and the presence of bare soil also significantly explained turnover in bee assemblages. In comparison, we observed less turnover in phylogenetic biodiversity corresponding to spatial gradients. We identified six de novo ecoregions (WBE), all with distinct taxa, endemic lineages, and representative species. The WBE represent distinct spatial classifications but have similarities to existing biogeographical classifications, ecosystems and bioclimatic zones. This approach establishes the baseline needed to prioritise bee species conservation efforts across this global biodiversity hotspot. We discuss the novelty of this classification considering previous biogeographical characterisations and their relevance in assessing conservation priorities for bee conservation. We argue that Chile&#39;s WBE highlight areas in need of funding for bee species surveys and description, distribution mapping and strengthening of conservation policies.</p> <p>Usage notes</p> <p>The dataset contains species occurrence data of chilean bees aggregated to a 5 x 5 km grid shapefile. The shapefile of the grid and the raster mask of the Central Chilean study area are also included. Finally, a database of type specimen data used to supplement the dataset is included here.&nbsp; The code for the analysis can be found at: <a href="https://github.com/lmar116/ChileanBeeDiversity">https://github.com/lmar116/ChileanBeeDiversity</a>.</p> <p>Shapefiles, rasters, CSV files and code were all loaded and analyzed using R statistics software.&nbsp;</p> <p>Four files are included:</p> <ol> <li>Marshall-et-al-2023_Ecosphere_DataTable_bee_grid: contains all species occurrence data used in GDM analysis, Grid column refers to cl.5km.shp.</li> <li>cl.5km.shp (and associated files): 5 x 5 km grid shapefile of the Central Chilean study area</li> <li>chile.mask.tif: raster outline of the Central Chilean study area</li> <li>Marshall-et-al-2023_Ecosphere_CentralChileTypeSpecimens.xlsx: contains type specimen data used to supplement species occurrence dataset.</li> </ol>

openother-openApr 2023View details →
dryad36/100

Ecological consequences of plant genotypic diversity within a foundation plant, Spartina alterniflora, are pervasive but not universal across multiple stress gradients

<ol> <li>Plant genotypic diversity can influence population- and community-level processes, yet we have a limited understanding of how these effects vary across environmental gradients that are ubiquitous in nature. </li> <li>We conducted a 2-year field experiment manipulating plant (<em>Spartina</em> <em>alterniflora</em>) genotypic diversity across a natural stress gradient in tidal elevation, both with and without the addition of nutrients. </li> <li> <em>Spartina</em> diversity increased stem production, but the magnitude of this effect was reduced at both the most stressful and most benign endpoints of the combined elevation and nutrient gradient, consistent with recent species diversity studies. Complementarity among individuals likely underpins the observed benefit of <em>Spartina</em> diversity. </li> <li> <em>Spartina</em> diversity also affected the associated marsh community, with higher consumer (<em>Littoraria</em> <em>irrorata</em>) abundance in more diverse plots, owing to both greater <em>Spartina</em> density and increased variation in <em>Spartina</em> traits.</li> <li> <em>Synthesis</em>: The positive effects of <em>Spartina</em> diversity on population- and community-level responses under most environmental conditions highlights the ecological importance of plant genotypic diversity for the maintenance of function across the marsh landscape. </li> </ol>

opencc-zeroJun 2023View details →
dryad36/100

Data from: Male competition drives song divergence along an ecological gradient in an avian ring species

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publicSep 2018View details →
dryad36/100

Shifts in dominance and complementarity between sessile oak and beech along ecological gradients

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publicJun 2022View details →
dryad36/100

Data from: Orchid mycorrhizal communities associated with Orchis italica are shaped by ecological factors and geographical gradients

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publicNov 2024View details →
dryad36/100

Data from: Population variation, environmental gradients, and the evolutionary ecology of plant defense against herbivory

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publicSep 2018View details →
dryad36/100

Bromeliad populations perform distinct ecological strategies across a tropical elevation gradient

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publicFeb 2024View details →
dryad36/100

Data from: Bryophyte community composition and diversity are indicators of hydrochemical and ecological gradients in temperate kettle hole mires in Ohio, USA

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publicDec 2023View details →
dryad36/100

Data from: Genomic divergence across ecological gradients in the Central African rainforest songbird (Andropadus virens)

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publicJul 2017View details →
dryad36/100

The evolution of sexually dimorphic traits in ecological gradients: An interplay between natural and sexual selection in hummingbirds

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publicNov 2022View details →
dryad36/100

Ecological niches of epiphyllous bryophytes along afrotropical elevation gradient

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publicJan 2023View details →
dryad36/100

Genomic and phenotypic divergence‐with‐gene‐flow across an ecological and elevational gradient in a neotropical bird

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publicMay 2022View details →
dryad36/100

Data from: The paleobiologic implications of modern nonmarine ecological gradients

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publicMay 2024View details →
dryad36/100

Data from: Change in sexual signalling traits outruns morphological divergence across an ecological gradient in the post‐glacial radiation of the songbird genus Junco

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publicJul 2020View details →
dryad36/100

Competition components along productivity gradients – revisiting a classic dispute in ecology

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publicApr 2022View details →
dryad36/100

Leaf physiological plasticity in Schima superba and Schima argentea is related to ecological niche width under varied altitude gradients

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publicJul 2025View details →
dryad36/100

Data and supplementary materials from: Large genetic divergence underpins cryptic local adaptation across ecological and evolutionary gradients

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publicSep 2022View details →
dryad36/100

Ecological consequences of plant genotypic diversity within a foundation plant, Spartina alterniflora, are pervasive but not universal across multiple stress gradients

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publicJun 2023View details →
dryad36/100

Data from: Changing ecological communities along an elevation gradient in seasonally dry tropical forest on Hispaniola (Sierra Martín García, Dominican Republic)

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publicSep 2019View details →
dryad32/100

Data from: Phenotypic, ecological and genomic variation in common bully (Gobiomorphus cotidianus) populations along depth gradients in New Zealand's Southern Great Lakes

<p>Depth gradients in lakes are often key drivers of population divergence and speciation in fishes. New Zealand has many deep lakes but no known profundal specialist fishes or cases of intralacustrine speciation. We sampled a native benthic fish, the common bully, from 5–90 m depth in four South Island lakes, to test for morphological, ecological, or genetic differentiation associated with depth. Deeper fish consistently had narrower bodies, while other morphological traits showed variable relationships with depth. Carbon and nitrogen stable isotope values of fish increased with depth, largely tracking isotopic trends with depth of benthic invertebrate prey. Genotyping-by-sequencing showed some genome-wide differentiation between two of the lakes, but no evidence for within-lake genetic structuring along depth gradients. These results indicate that individual bullies associate with shallower or deeper habitats within their lifetimes, but we found no evidence of progress toward genetic divergence within lakes. The apparent lack of intralacustrine genetic divergence in New Zealand's fishes may be explained by a combination of environmental factors and constraints intrinsic to its marine-derived freshwater fish fauna.</p>

opencc-zeroJun 2020View details →

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