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464 results for “Population Genetic Diversity”

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zenodo36/100

Figure 1 in Microsatellite based genetic diversity of Mediterranean fruit fly (Ceratitis capitata, Diptera: Tephritidae) populations from Southwest Turkey

Figure 1. Map of Turkey with sampling sites.

opencc-by-4.0Apr 2022View details →
zenodo36/100

Figure 1 in Genetic diversity, population structure and demographic history of Dugesia japonica in Taihang Mountains

Figure 1. Geographical distribution of Dugesia japonica populations sampled in Taihang Mountains.

opencc-by-4.0Dec 2021View details →
dryad36/100

Strong population genetic structure and cryptic diversity in the Florida bonneted bat (Eumops floridanus)

<p>Knowledge of genetic structure is essential for the long-term management and conservation of endangered species. We report the results from a genetic examination of the federally endangered Florida bonneted bat (<i>Eumops floridanus</i>) sampled from its range in southern Florida, USA. Bonneted bats are primarily found in four regions separated by approximately 100 to 250 kms, including three western natural areas (BW, PC, and CC) and one urban population on the east coast [Miami-Dade County (MD)]. We used 22 microsatellite loci and cytochrome <i>b</i> sequences to assess the extent of connectivity and levels of genetic diversity. Regional populations were highly differentiated (<i>F</i><sub>ST</sub> = 0.178) and model-based and multivariate analyses showed that MD was the most distinct among pairwise comparisons. Regional populations are small (i.e., <i>N<sub>e</sub></i><sub> </sub>&lt; 100) but demographically stable. Estimates of contemporary migration and historic gene flow suggest that regional populations do not frequently exchange migrants, but simulations suggest that the divergence among western regions is likely a result of recent genetic drift rather than long-term isolation. Significantly, mitochondrial DNA revealed that haplotypes from MD were similar or shared with those recognized as <i>Eumops ferox</i> from Cuba and Jamaica, and divergent (1.5%) from the remainder of bonneted bats in Florida. Our data support the management of each of the four populations as distinct population segments, and that BW, PC and CC combined are on an independent evolutionary trajectory from bats in MD. Critically, bonneted bats in Florida appear to harbor cryptic diversity that will require a reassessment of their taxonomy.</p>

opencc-zeroOct 2021View details →
dryad36/100

Methodological challenges in the genomic analysis of an endangered mammal population with low genetic diversity

<p><span>Recently, populations of various species with very low genetic diversity have been discovered. Some of these persist in the long term, but others could face extinction due to accelerated loss of fitness. In this work, we characterize 45 individuals of one of these populations, belonging to the Iberian desman (<em>Galemys</em> <em>pyrenaicus</em>). For this, we used the ddRADseq technique, which generated 1,421 SNPs. The heterozygosity values of the analyzed individuals were among the lowest recorded for mammals, ranging from 26 to 91 SNPs/Mb. Furthermore, the individuals from one of the localities, highly isolated due to strong barriers, presented extremely high inbreeding coefficients, with values above 0.7. Under this scenario of low genetic diversity and elevated inbreeding levels, some individuals appeared to be almost genetically identical. We used different methods and simulations to determine if genetic identification and parentage analysis were possible in this population. Only one of the methods, which does not assume population homogeneity, was able to identify all individuals correctly. Therefore, genetically impoverished populations pose a great methodological challenge for their genetic study. However, these populations are of primary scientific and conservation interest, so it is essential to characterize them genetically and improve genomic methodologies for their research.</span></p>

opencc-zeroDec 2022View details →
dryad36/100

Data from: Population connectivity patterns of genetic diversity, immune responses and exposure to infectious pneumonia in a metapopulation of desert bighorn sheep

<p>Habitat fragmentation is an important driver of biodiversity loss and can be remediated through management actions aimed at maintenance of natural connectivity in metapopulations. Connectivity may protect populations from infectious diseases by preserving immunogenetic diversity and disease resistance. However, connectivity could exacerbate the risk of infectious disease spread across vulnerable populations.</p> <p>We tracked the spread of a novel strain of <em>Mycoplasma ovipneumoniae</em> in a metapopulation of desert bighorn sheep (<em>Ovis canadensis nelsoni</em>) in the Mojave desert to investigate how variation in connectivity among populations influenced disease outcomes.</p> <p><em>M. ovipneumoniae</em> was detected throughout the metapopulation, indicating that the relative isolation of many of these populations did not protect them from pathogen invasion. However, we show that connectivity among bighorn sheep populations was correlated with higher immunogenetic diversity, a protective immune response and lower disease prevalence. Variation in protective immunity predicted infection risk in individual bighorn sheep and was associated with heterozygosity at genetic loci linked to adaptive and innate immune signalling.</p> <p>Together, these findings may indicate that population connectivity maintains immunogenetic diversity in bighorn sheep populations in this system and has direct effects on immune responses in individual bighorn sheep and their susceptibility to infection by a deadly pathogen.</p> <p>Our study suggests that the genetic benefits of population connectivity could outweigh the risk of infectious disease spread and supports conservation management that maintains natural connectivity in metapopulations.</p>

opencc-zeroJan 2023View details →
dryad36/100

The timings of host diapause and epidemic progression mediate host genetic diversity and future epidemic size in Daphnia-parasite populations

<p>Epidemics commonly exert parasite-mediated selection and cause declines in host population genetic diversity. This could lead to evolution of resistance in the long-term and smaller subsequent epidemics. Alternatively, the loss of genetic diversity could increase host vulnerability to future disease spread and larger future epidemics. Matters are made more complex by the fact that a great many host organisms produce diapausing life stages in response to environmental change (often as a result of sexual reproduction) e.g., plant seeds and invertebrate resting eggs. These diapausing stages can disrupt the relationship between past epidemics, host genetic diversity and future epidemics because they allow host dispersal through time. Specifically, temporally dispersing hosts avoid infection and thus selection from contemporary parasites, and also archive genetic variation for the future. We studied 80 epidemics in 20 semi-natural populations of the temporally dispersing crustacean Daphnia magna and its sterilising bacterial parasite Pasteuria ramosa, and half of these populations experienced a simulated environmental disturbance treatment. We found that early initiation of diapause relative to the timing of the epidemic led to greater host genetic diversity and reduced epidemic size in the subsequent year, but this was unaffected by environmental disturbance.</p>

opencc-zeroJan 2023View details →
dryad36/100

Genetic diversity and population structure from a Peruvian nucleus cattle herd using SNP data

<p>New-generation sequencing technologies, among them SNP chips for massive genotyping, have proven to be useful for the effective management of genetic resources. Also, developing nucleus herds is an effective method for genetic improvement work. To date, molecular studies in Peruvian cattle are still in their infancy. To close this gap, we here employed two SNP panels (BovineHD and Bovine100K) to determine for the first time the Peruvian nucleus herd's genetic diversity and population structure that belong to INIA. This nucleus comprises Brahman (N=16), Braunvieh (N=14), Gyr (N=11), and Fleckvieh (N=22) breeds. Additionally, samples from a locally adapted creole cattle, the Arequipa Fighting Bull (AFB, N=12), were incorporated into the study. The genetic diversity indices in all breeds showed a high proportion of polymorphic SNPs, varying from 69.37% in Gyr to 80.81% in Braunvieh. Also, Braunvieh possessed the highest observed heterozygosity (0.53±0.17), while Brahman possessed the lowest (0.44±0.10), indicating that the former is more diverse compared to the other cattle breed groups. According to the molecular variance analysis, 83.92% of the variance occurs within individuals, whereas 16.0% occurs between populations. The pairwise FST estimates between breeds showed values that ranged from 0.054 (Braunvieh vs AFB) to 0.266 (Brahman vs AFB). Pairwise Reynold's distance showed a pattern similar to the one obtained with the FST statistics, with values ranging from 0.058 to 0.309. A dendrogram was constructed using the Neighbor-Joining clustering algorithm, and similar to the principal coordinate analysis, three groups were identified. Results showed a clear separation between <em>Bos</em> <em>indicus</em> (Brahman and Gyr) and <em>B</em>. <em>taurus</em> breeds (Braunvieh and Fleckvieh). For Fleckvieh and Braunvieh, there were two subgroups each one of them grouping with the AFB group. Similar results were obtained with ADMIXTURE analysis with K= 3 as the most optimal number for the inferred genetic structure of the populations. The results from the current study would contribute to the appropriate management avoiding loss of genetic variability in these breeds and to future improvements for this nucleus. Additional work is needed to speed up the breeding process in the Peruvian cattle system.</p>

opencc-zeroMar 2023View details →
zenodo36/100

Assessment of the Genetic Diversity and Population Structure of the Peruvian Andean Legume, Tarwi (Lupinus mutabilis), with High Quality SNPs

<p><em>Lupinus mutabilis</em> Sweet (Fabaceae), &ldquo;tarwi&rdquo; or &ldquo;chocho&rdquo;, is an important grain legume in the Andean region. In Peru, studies on tarwi have mainly focused on morphological features; however, they have not been molecularly characterized. Currently, it is possible to explore the genetic parameters of plants with reliable and modern methods such as genotyping by sequencing (GBS). Here, for the first time, we used single nucleotide polymorphism (SNP) markers to infer the genetic diversity and population structure of 89 accessions of tarwi from nine Andean regions of Peru. A total of 5922 SNPs distributed along all chromosomes of tarwi were identified. STRUCTURE analysis revealed that this crop is grouped into two clusters. A dendrogram was generated using the UPGMA clustering algorithm and, like the principal coordinate analysis (PCoA), it showed two groups that correspond to the geographic origin of the tarwi samples. AMOVA showed a reduced variation between clusters (7.59%) and indicated that variability within populations is 92.41%. Population divergence (F<sub>st</sub>) between clusters 1 and 2 revealed low genetic difference (0.019). We also detected a negative F<sub>is</sub> for both populations, demonstrating that, like other <em>Lupinus</em> species, tarwi also depends on cross-pollination. SNP markers were powerful and effective for the genotyping process in this germplasm. We hope that this information is the beginning of the path towards a modern genetic improvement and conservation strategies of this important Andean legume.</p>

opencc-by-4.0Mar 2023View details →
dryad36/100

Genetic diversity and sperm characteristics are not associated in two bluethroat (Luscinia svecica) populations

<p>Individual heterozygosity may influence the expression of fitness-related traits, via genome-wide or local genetic effects. Earlier studies have shown negative relationships between heterozygosity and sperm variation, predominantly in captive, highly inbred populations. Little is known about the possible influence of variation in heterozygosity on sperm traits in wild, outbred populations. We studied two populations of the bluethroat, one from the widely distributed northern subspecies (<em>Luscinia</em>. <em>s</em>. <em>svecica</em>) and the other from the smaller, more patchily distributed subspecies breeding along the French coast of Brittany (<em>L. s. namnetum</em>). The two subspecies differed significantly in body size, plumage colour, sperm traits and the degree of genetic diversity. However, there was no evidence that sperm traits (total length and motility) were influenced by the degree of heterozygosity at the individual level. In contrast, we found that male body size was positively related to heterozygosity across both populations, indicating a possible relationship between overall genetic diversity and general vigour or ability to obtain food. We conclude that sperm traits are unrelated to levels of heterozygosity in the studied outbred and weakly genetically depauperate bluethroat populations.</p>

opencc-zeroMay 2023View details →
dryad36/100

Data for: Surrounding landscape, habitat and hybridization dynamics drive population structure and genetic diversity in the Saltmarsh Sparrow (Ammospiza caudacuta)

<p class="MsoNormal">Determining factors that shape a species' population genetic structure is beneficial for identifying effective conservation practices. We assessed population structure and genetic diversity for Saltmarsh Sparrow (<em>Ammospiza caudacuta</em>), an imperiled tidal marsh specialist, using 13 microsatellite markers and 964 individuals sampled from 24 marshes across the breeding range. We show that Saltmarsh Sparrow populations are structured regionally by isolation-by-distance, with gene flow occurring among marshes within ~110-135 km of one another. Isolation-by-resistance and isolation-by-environment also shape genetic variation; several habitat and landscape features are associated with genetic diversity and genetic divergence among populations. Human development in the surrounding landscape isolates breeding marshes, reducing genetic diversity and increasing population genetic divergence, while surrounding marshland and patch habitat quality (proportion high marsh and sea-level-rise trend) have the opposite effect. The distance of the breeding marsh to the Atlantic Ocean also influences genetic variation, with marshes farther inland being more divergent than coastal marshes. In northern marshes, hybridization with Nelson's Sparrow (<em>A. nelsoni</em>) strongly influences Saltmarsh Sparrow genetic variation, by increasing genetic diversity in the population; this has a concomitant effect of increasing genetic differentiation of marshes with high levels of introgression. From a conservation perspective, we found that the majority of population clusters have low effective population sizes, suggesting a lack of resiliency. To conserve the representative breadth of genetic and ecological diversity and to ensure redundancy of populations, it will be important to protect a diversity of marsh types across the latitudinal gradient of the species range, including multiple inland, coastal and urban populations, which we have shown to exhibit signals of genetic differentiation. It will also require maintaining connectivity at a regional level, by promoting high marsh habitat at the scale of gene flow (~130 km), while also ensuring "stepping stone" populations across the range.   </p>

opencc-zeroJul 2023View details →
dryad36/100

Low genetic diversity and shallow population structure in the broom hare, Lepus castroviejoi (Lagomorpha:Leporidae)

<p><span class="TextRun SCXW115721130 BCX4"><span class="NormalTextRun SCXW115721130 BCX4">Microsatellite dataset of 322 hare samples from five species: 76 samples from the broom hare (</span></span><em><span class="TextRun SCXW115721130 BCX4"><span class="NormalTextRun SCXW115721130 BCX4">Lepus </span><span class="NormalTextRun SCXW115721130 BCX4">castroviejoi</span></span></em><span class="TextRun SCXW115721130 BCX4"><span class="NormalTextRun SCXW115721130 BCX4">);  81 for the European hare (<em>L. europaeus</em>); 68 for the Iberian hare (<em>L. granatensis</em>); 77 for the mountain hare (<em>L. timidus</em>); and 20 for the Italian hare (<em>L. corsicanus</em>).</span></span></p>

opencc-zeroJul 2023View details →
dryad36/100

Preservation of genetic diversity in a highly fragmented population of the gray-sided vole Myodes rufocanus in an intensive farming region

<p class="MsoNormal"><span>Individual dispersal plays an important role in preserving genetic diversity in density-fluctuating populations of arvicoline rodents. When habitats are fragmented and dispersal between habitats is severely constrained, genetic diversity can be lost. Here, I investigated whether genetic diversity in the gray-sided vole <em>Myodes rufocanus </em>was preserved in an intensive farming region in Japan, where voles inhabited isolated windbreak forests along the borders of plowed lands. Genetic structure was examined in 673 vole samples (330 in spring and 343 in fall) collected at 34 windbreak forests located 0.35–20 km apart. A part of the control region (425 bp) of mitochondrial DNA (mtDNA) was sequenced in 673 voles, yielding 76 haplotypes. Genetic differentiation of maternally inherited mtDNA among trapping sites was markedly lower in males than in females in both seasons, indicating strong male-biased dispersal. Genotypes at six microsatellite DNA loci were determined in 494 voles (245 in spring and 249 in fall) from 18 trapping sites, and loci harbored 16–24 alleles. The mean number of alleles per locus (allelic diversity) at trapping sites was positively correlated with the number of examined individuals (density) in both seasons, and the relationship was very similar to that of a previous study performed in much less fragmented populations. Genetic differentiation of microsatellite DNA among trapping sites decreased considerably from spring to fall. In a STRUCTURE analysis with a most probable cluster number of two, closer trapping sites showed more similar mean values of cluster admixture proportions. The present findings indicate that gene flow among isolated windbreak forests, which occurred mainly by dispersal of males, was not restrained in this intensive farming region. Furthermore, the results suggest that genetic diversity in the study population was preserved as well as in less fragmented populations.</span></p>

opencc-zeroAug 2023View details →
dryad36/100

Phenotypic and genetic diversity data recorded in island and mainland populations worldwide

<p><span>We used this dataset to assess the strength of isolation due to geographic and macroclimatic distance across island and mainland systems, comparing published measurements of phenotypic traits and neutral genetic diversity for populations of plants and animals worldwide. </span>The dataset includes 112 studies of 108 species (72 animals and 36 plants) in 868 island populations and 760 mainland populations, with population-level taxonomic and biogeographic information, totalling 7438 records.</p>

opencc-zeroSep 2023View details →
dryad36/100

Reference genome resources associated with the project: Functional genetic diversity is correlated with intensity of genetic drift in populations of an endangered rattlesnake

<p class="MsoNormal">Theory predicts that genetic erosion in small, isolated populations of endangered species can be assessed using estimates of neutral genetic variation reflecting long-term impacts of genetic drift, yet this widely used approach has been questioned in the genomics era. Here we leverage a chromosome-level assembly and whole genome resequencing data (N=110 individuals) from an endangered rattlesnake (<em>Sistrurus catenatus</em>) to evaluate the relationship between genome-wide neutral and functional diversity over long- and short-term timescales. As predicted for populations at long-term equilibrium, we found a positive correlation between population-level estimates of neutral genetic diversity (π) and the mean number of highly detrimental loss-of-function mutations, and a negative relationship between neutral genetic diversity and an estimate of genetic load. In contrast, we found only a weak, non-significant positive correlation between levels of neutral and adaptive variation. Additional analyses using estimates of drift at more recent time scales (&gt; 100 generations) show expected correlations between both measures of genetic load, but a lack of a significant correlation with levels of adaptive variation. Individual-based demographic metrics that capture drift impacts over recent time scales confirm these results. Broadly, our results confirm that estimates of diversity and demography based on neutral genetic variation provide an accurate measure of a key component of genetic erosion – genetic load – in populations of a threatened vertebrate. Our findings also provide nuance to the neutral-functional diversity controversy by demonstrating that neutral genetic diversity is useful in predicting some, but not all, components of functional genetic diversity.</p>

opencc-zeroOct 2023View details →
dryad36/100

Data from: An established plant invader may still benefit from increasing genetic diversity – Insights from artificial populations in a common garden experiment

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publicFeb 2025View details →
dryad36/100

Genetic diversity in two insular populations of bobcats (Lynx rufus)

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publicJan 2021View details →
dryad36/100

Big cat vcf files from: Exceedingly low genetic diversity in snow leopards due to persistently small population size

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publicOct 2025View details →
dryad36/100

Data from: Population genetics of fruit bat reservoir informs the dynamics, distribution, and diversity of Nipah virus

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publicOct 2019View details →
dryad36/100

An assemblage-level comparison of genetic diversity and population genetic structure between island and mainland ant populations

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publicJul 2024View details →
dryad36/100

Data from: Linking environmental stability with genetic diversity and population structure in two Atlantic Forest palm trees

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publicSep 2022View details →

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Allen Brain Atlas

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

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abode-home-cage
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Last verified 2026-04-30Open record

DANDI Archive for NWB datasets

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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

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