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149 results for “species connectivity”

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dryad36/100

Landscape connectivity and genetic structure in a mainstem and a tributary stonefly (Plecoptera) species using a novel reference genome

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publicMay 2022View details →
dryad36/100

New species boundaries and the diversification history of marsh rat taxa clarify historical connections among ecologically and geographically distinct wetlands of South America

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publicJan 2021View details →
dryad36/100

Data from: Testing models of refugial isolation, colonization and population connectivity in two species of montane salamanders

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publicMay 2017View details →
dryad36/100

Network analyses reveal the role of large snakes in connecting feeding guilds in a species-rich Amazonian snake community

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publicMar 2023View details →
dryad36/100

Data from: Simulated poaching affects global connectivity and efficiency in social networks of African savanna elephants—An exemplar of how human disturbance impacts group-living species

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publicAug 2025View details →
dryad36/100

Importance of spatio-temporal connectivity to maintain species experiencing range shifts

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publicDec 2019View details →
dryad36/100

Phylogeographical break and limited connectivity between multiple refugia in panantarctic moss species

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publicAug 2022View details →
dryad36/100

Data from: Population genomics and connectivity of the blue mussel species complex: Insights from a North-east Atlantic hybrid zone

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publicDec 2025View details →
dryad36/100

Shifting ecosystem connectivity during the Pleistocene drove diversification and gene-flow in a species-complex of Neotropical birds (Tityridae: Pachyramphus)

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publicMar 2021View details →
dryad36/100

A new, disjunct species of Bahiana (Euphorbiaceae-Acalyphoideae): Phytogeographic connections between the seasonally dry tropical forests of Peru and Brazil, and a review of spinescence in the family

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publicJan 2023View details →
zenodo32/100

Cryptic species and genetic connectivity among populations of the coral Pocillopora damicornis (Scleractinia) in the tropical southwestern Pacific

<p>Studying population genetic connectivity (i.e., identifying gene flow among populations and understanding their impacts on the genetic structure and diversity of populations) is first a matter of knowing what we work on, that is, accurately delimiting evolutionary units. Here, we focused on <em>Pocillopora damicornis</em> sensu stricto (or <em>Pocillopora </em>PSH04 sensu G&eacute;lin et al. in Mol Phylogenet Evol 109:430&ndash;446. http://dx.doi.org/10.1016/j.ympev.2017.01.018, 2017). From 458 colonies sampled within the tropical southwestern Pacific [Chesterfield Islands and New Caledonia (Grande Terre and Loyalty Islands)], Bayesian assignments and network analyses were conducted with 11-microsatellite loci to first evaluate the genetic partitioning of the colonies in distinct Secondary Species Hypotheses (SSHs), then in distinct clusters. Population genetic connectivity was then assessed for each cluster separately. <em>Pocillopora </em>PSH04 was partitioned into two highly differentiated SSHs (SSH04a and SSH04b), regularly found in sympatry. Furthermore, SSH04a was subdivided into two clusters (SSH04a-1 and SSH04a-2). This pattern of genetic structuring seems not related to clonality, but rather to the establishment of reproductive barriers. Nevertheless, considering each cluster separately, the populations appeared highly differentiated, suggesting relatively weak gene flow. This low connectivity among populations, coupled with the existence of cryptic species, brings new insights to the connectivity pattern of this understudied Pacific region.</p> <p>This dataset contains the microsatellite genotypes analysed (458 <em>Pocillopora</em> PSH04 colonies&nbsp;&times; 13&nbsp;loci).</p>

opencc-by-4.0Aug 2020View details →
dryad32/100

Conservation planning across realms: enhancing connectivity for multi-realm species

<p>Connectivity plays a key role in biodiversity conservation as it sustains ecological processes important for the maintenance of populations such as migrations. Connectivity is especially relevant for species that rely on different realms during their life cycle or use different realms daily or seasonally (multi-realm species). However, effort to address conservation across multiple realms have focused on identifying priority areas for conservation in a single realm (mostly marine) accounting for threats propagating from other realms or single species needs. Here, we demonstrate how to identify priority areas for conservation across three different realms (freshwater-terrestrial, estuary and marine) for multiple species, including some multi-realm species, that inhabit or move across the three realms. We use the whole Tagus River Basin, its estuary and nearby marine area as a case study. We compared the allocation of priority areas and spatial connectivity achieved under three scenarios: no-connectivity, within-realm and cross-realm connectivity scenarios. There were some differences in the spatial allocation of priority areas across scenarios. The most remarkable difference laid on the connectivity achieved under each scenario, which experienced a 3-fold increase when considering connectivity across realms, compared to solutions that considered only connectivity within each realm independently. This improvement in connectivity was especially marked for some of the species that occur across the three realms. There were, however, trade-offs between this improvement in connectivity: i) an increase in the number of planning units selected, especially in the estuary, the realm that links the other two; and ii) a decline in connectivity achieved within the freshwater—terrestrial and marine realms. Synthesis and applications: Addressing connectivity across realms deserves especial attention when planning for conservation of multi-realm species to ensure adequacy of conservation recommendations to respond to the needs of these species. Given the potential trade-offs between enhanced cross-realm connectivity and total area needed or internal within-realm connectivity, consideration of cross-realm connectivity must be cautiously evaluated and integrated in multi-realm conservation plans.</p>

opencc-zeroNov 2020View details →
dryad32/100

Data from: Visualizing connectivity of ecological and evolutionary concepts – an exploration of research on plant species rarity

<p>Understanding the ecological and evolutionary factors that influence species rarity has important theoretical and applied implications, yet the reasons why some species are rare while others are common remain unresolved. As a novel exploration of scientific knowledge, we used network analysis conceptually to visualize the foci of a comprehensive base of &gt;800 studies on plant species rarity within the context of ecology and evolution. In doing so, we highlight existing research strengths that could substantiate novel syntheses and gaps that could inspire new research. Our results reveal strong integrated foci on population dynamics with other ecological concepts. In contrast, despite the potential for ecological and evolutionary processes to interact, few studies explored the interplay of environmental factors and microevolutionary patterns. The cellular and molecular biology, physiology, and plasticity of rare plant species within both ecological and evolutionary contexts similarly provide avenues for impactful future investigations.</p>

opencc-zeroJul 2021View details →
dryad32/100

Species distribution, hybridization and connectivity in the genus Chionodraco: unveiling unknown icefish diversity in Antarctica

<p><strong>Aim</strong></p> <p>The species of the genus <em>Chionodraco</em> (Notothenioidei) are the most abundant icefish on the continental shelf of the Weddell Sea. While previous studies indicated that only <em>Chionodraco hamatus</em> and <em>Chionodraco myersi</em> inhabit the Weddell Sea, the third <em>Chionodraco</em> species, <em>Chionodraco rastrospinosus</em>, was recently sampled in the area. Since <em>C. rastrospinosus</em> is supposed to be found only at the Antarctic Peninsula and Scotia Arc, this study aimed at confirming the species classification of <em>C. rastrospinosus</em> by molecular methods and identifying its putative source population. Given the documented evidence of introgression among the three species, we tested whether the newly found <em>C. rastrospinosus</em> shared any genetic variability with the other <em>Chionodraco</em> species. To explain the pattern of distribution of the <em>Chionodraco</em> species, we aimed at estimating the hydrodynamic connectivity between the Antarctic Peninsula and the Weddell Sea.</p> <p><strong>Location</strong></p> <p>Antarctic Peninsula, southern Scotia Arc and the south-eastern Weddell Sea</p> <p><strong>Methods</strong></p> <p>We genotyped 19 microsatellites and sequenced the mitochondrial D-loop for 560 <em>Chionodraco</em> individuals. We simulated the dispersal of more than 3 million drifters (Lagrangian model).</p> <p><strong>Results</strong></p> <p>The molecular analyses support the presence of <em>C. rastrospinosus</em> in the Weddell Sea and its homogeneity with <em>C. rastrospinosus</em> from the Antarctic Peninsula. Bayesian clustering identifies three putative hybrids among <em>C. rastrospinosus</em> and the other congenerics. Lagrangian simulations do not support connectivity driven by the oceanographic features of the Antarctic Peninsula and Weddell Sea via passive larval dispersal only.</p> <p><strong>Main conclusions</strong></p> <p>This study documents, for the first time, the presence of <em>C. rastrospinosus</em> in the Weddell Sea unveiling more biodiversity than previously known in this region. The sympatry of the three <em>Chionodraco</em> species explains the occurrence of occasional, ongoing events of hybridization in the genus. Alternative possible hypotheses need to be tested in future studies about the mechanisms maintaining the interspecific connectivity in <em>Chionodraco</em> spp.</p>

opencc-zeroFeb 2021View details →
dryad32/100

Data from: Phylogenetic signal in module composition and species connectivity in compartmentalized host-parasite networks

Across different taxa, networks of mutualistic or antagonistic interactions show consistent architecture. Most networks are modular, with modules being distinct species subsets connected mainly with each other and having few connections to other modules. We investigate the phylogenetic relatedness of species within modules and whether a phylogenetic signal is detectable in the within- and among module connectivity of species using 27 mammal-flea networks from the Palaearctic. In the 24 networks that were modular, closely-related hosts co-occurred in the same module more often than expected by chance; in contrast, this was rarely the case for parasites. The within- and among-module connectivity of the same host or parasite species varied geographically. However, among-module but not within-module connectivity of host and parasites was somewhat phylogenetically constrained. These findings suggest that the establishment of host-parasite networks results from the interplay between phylogenetic influences acting mostly on hosts and local factors acting on parasites, to create an asymmetrically constrained pattern of geographic variation in modular structure. Modularity in host-parasite networks seems to result from the shared evolutionary history of hosts and by trait convergence among unrelated parasites. This suggests profound differences between hosts and parasites in the establishment and functioning of bipartite antagonistic networks.

opencc-zeroDec 2010View details →
dryad32/100

Data from: Testing the consistency of connectivity patterns for a widely dispersing marine species

Connectivity is widely recognised as an important component in developing effective management and conservation strategies. While managers are generally most interested in demographic, rather than genetic connectivity, new analytic approaches are able to provide estimates of both demographic and genetic connectivity measures from genetic data. Combining such genetic data with mathematical models represents a powerful approach for accurately determining patterns of population connectivity. Here, we use microsatellite markers to investigate the genetic population structure of the New Zealand Rock Lobster, Jasus edwardsii, which has one of the longest known larval durations of all marine species (&gt; 2 years), a very large geographic range (&gt; 5500 km), and has been the subject of extensive dispersal modelling. Despite earlier mitochondrial DNA studies finding homogeneous genetic structure, the mathematical model suggests that there are source-sink dynamics for this species. We found evidence of genetic structure in J. edwardsii populations with three distinct genetic groups across New Zealand and a further Australian group; these groups and patterns of gene flow were generally congruent with the earlier mathematical model. Of particular interest was the consistent identification of a self-recruiting population/region from both modelling and genetic approaches. While there is the potential for selection and harvesting to influence the patterns we observed, we believe oceanographic processes are most likely responsible for the genetic structure observed in J. edwardsii. Our results, using a species at the extreme end of the dispersal spectrum demonstrate that source-sink population dynamics may still exist for such species.

opencc-zeroDec 2012View details →
dryad32/100

Data from: Genomic tests of the species-pump hypothesis: recent island connectivity cycles drive population divergence but not speciation in Caribbean crickets across the Virgin Islands

Harnessing the power of genomic scans, we test the debated 'species pump' hypothesis that implicates repeated cycles of island connectivity and isolation as drivers of divergence. This question has gone understudied given the limited resolution of past molecular markers for studying such dynamic phenomena. With an average of 32000 SNPs from the genome of 136 individuals from ten populations of a Caribbean flightless ground cricket species (Amphiacusta sanctaecrucis) and a complementary set of statistical approaches, we infer a stepping-stone colonization model and high levels of genetic differentiation across the Virgin Islands, which have been periodically inter-connected until 8 ka. Estimates of divergence times from models based on the site frequency spectrum coincide with a period of repeated connection and fragmentation of the islands at 75–130 ka. These results are consistent with a role of island connectivity cycles in promoting genomic divergence and indicate that the genetic distinctiveness of island populations has persisted despite subsequent and extended interisland connections identified from bathymetric data. We discuss these findings in the broader context of Caribbean biogeography, and more specifically why high levels of genomic divergence across the Virgin Islands associated with repeated connectivity cycles do not actually translate into species diversification.

opencc-zeroDec 2014View details →
dryad32/100

Data from: Unusually limited pollen dispersal and connectivity of Pedunculate oak (Quercus robur) refugial populations at the species' southern range margin

Low-latitudinal range margins of temperate and boreal plant species typically consist of scattered populations that persist locally in microrefugia. It remains poorly understood how their refugial habitats affect patterns of gene flow and connectivity, key components for their long-term viability and evolution. We examine landscape-scale patterns of historical and contemporary gene flow in refugial populations of the widespread European forest tree Pedunculate oak (Quercus robur) at the species' southwestern range margin. We sampled all adult trees (n = 135) growing in a 20 km long valley and genotyped 724 acorns from 72 mother trees at 17 microsatellite loci. The ten oak stands that we identified were highly differentiated and formed four distinct genetic clusters, despite sporadic historical dispersal being detectable. By far most contemporary pollination occurred within stands, either between local mates (85.6%) or through selfing (6.8%). Pollen exchange between stands (2.6%) was remarkably rare given their relative proximity and was complemented by long-distance pollen immigration (4.4%) and hybridization with the locally abundant Quercus pyrenaica (0.6%). The frequency of between-stand mating events decreased with increasing size and spatial isolation of stands. Overall, our results reveal outstandingly little long-distance gene flow for a wind-pollinated tree species. We argue that the distinct landscape characteristics of oaks' refugial habitats, with a combination of a rugged topography, dense vegetation and humid microclimate, are likely to increase plant survival but to hamper effective long-distance pollen dispersal. Moreover, local mating might be favoured by high tree compatibility resulting from genetic purging in these long-term relict populations.

opencc-zeroDec 2015View details →
dryad32/100

Data from: A multispecies approach reveals hot-spots and cold-spots of diversity and connectivity in invertebrate species with contrasting dispersal modes

Genetic diversity is crucial for species' maintenance and persistence, yet is often overlooked in conservation studies. Species diversity is more often reported due to practical constraints, but it is unknown if these measures of diversity are correlated. In marine invertebrates, adults are often sessile or sedentary and populations exchange genes via dispersal of gametes and larvae. Species with a larval period are expected to have more connected populations than those without larval dispersal. We assessed the relationship between measures of species and genetic diversity, and between dispersal ability and connectivity. We compiled data on genetic patterns and life history traits in nine species across five phyla. Sampling sites spanned 600 km in the northwest Mediterranean Sea and focused on a 50 km area near Marseilles, France. Comparative population genetic approaches yielded three main results. (1) Species without larvae showed higher levels of genetic structure than species with free-living larvae but the role of larval type (lecithotrophic or planktotrophic) was negligible. (2) A narrow area around Marseilles, subject to offshore advection, limited genetic connectivity in most species. (3) We identified sites with significant positive contributions to overall genetic diversity across all species, corresponding with areas near low human population densities. In contrast, high levels of human activity corresponded with a negative contribution to overall genetic diversity. Genetic diversity within species was positively and significantly linearly related with local species diversity. Our study suggests that local contribution to overall genetic diversity should be taken into account for future conservation strategies.

opencc-zeroDec 2016View details →
dryad32/100

Data from: Landscape connectivity for wildlife: development and validation of multi-species linkage maps

The ability to identify regions of high functional connectivity for multiple wildlife species is of conservation interest with respect to forest management and corridor planning. We present a method that does not require independent, field-collected data, is insensitive to the placement of source and destination sites (nodes) for modeling connectivity, and does not require the selection of a focal species. In the first step of our approach, we created a cost surface that represented permeability of the landscape to movement for a suite of species. We randomly selected nodes around the perimeter of the buffered study area and used circuit theory to connect pairs of nodes. When the buffer was removed, the resulting current density map represented, for each grid cell, the probability of use by moving animals. We found that using nodes that were randomly located around the perimeter of the buffered study area was less biased by node placement than randomly selecting nodes within the study area. We also found that a buffer of ≥ 20% of the study area width was sufficient to remove the effects of node placement on current density. We tested our method by creating a map of connectivity in the Algonquin to Adirondack region in eastern North America, and we validated the map with independently collected data. We found that amphibians and reptiles were more likely to cross roads in areas of high current density, and fishers (Pekania [Martes] pennanti) used areas with high current density within their home ranges. Our approach provides an efficient and cost-effective method of predicting areas with relatively high functional connectivity.

opencc-zeroDec 2013View details →

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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.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

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.

abode-home-cage
behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record