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528 results for “correspondence”
Expanding forests in alpine regions lead to a corresponding shift in belowground fungal communities
<p>Climate change causes upward shift of forest lines worldwide, with consequences on soil biota and carbon sequestration (C). We here analyse compositional changes in the soil biota across the forest line ecotone, an important transition zone between different ecosystems. We collected soil samples along transects stretching from subalpine mountain birch forests to low-alpine vegetation. Soil fungi and micro-eukaryotes were surveyed using DNA metabarcoding of the 18S and ITS2 markers, while ergosterol was used to quantify fungal biomass. We observed a strong shift in the soil biota across the forest line ecotone: Below the forest line, there were higher proportions of basidiomycetes and mucoromycetes, including ectomycorrhizal and saprotrophic fungi. Above, we observed relatively more root-associated ascomycetes, including Archaeorhizomycetes, ericoid mycorrhizal fungi and dark septate endophytes. Ergosterol and percentage C content in soil strongly and positively correlated with the abundance of root-associated ascomycetes. The predominance of ectomycorrhizal and saprotrophic fungi below the forest line likely promote high C turnover, while root-associated ascomycetes above the forest line may enhance C sequestration. With further rise in forest lines, there will be a corresponding shift in the belowground biota, likely leading to enhanced release of soil C.</p>
Figure 4 from: Qiao Y, Yu Q, Badiss A, Zaidi MA, Ponomareva E, Hu Y, Ye W (2016) Paraphyletic genus Ditylenchus Filipjev (Nematoda, Tylenchida), corresponding to the D. triformis-group and the D. dipsaci-group scheme. ZooKeys 568: 1-12. https://doi.org/10.3897/zookeys.568.5965
Figure 4 - Un-weighted Pair Group Method with Arithmetic Mean (UPGMA) tree showing estimated average genetic distances among all Ditylenchus species based on simple matching coefficient obtained from RAPD analysis.
Figure 3 from: Qiao Y, Yu Q, Badiss A, Zaidi MA, Ponomareva E, Hu Y, Ye W (2016) Paraphyletic genus Ditylenchus Filipjev (Nematoda, Tylenchida), corresponding to the D. triformis-group and the D. dipsaci-group scheme. ZooKeys 568: 1-12. https://doi.org/10.3897/zookeys.568.5965
Figure 3 - Random Amplified Polymorphic DNA (RAPD) profiles of all Ditylenchus species using primer OPG-05.
Figure 1 from: Qiao Y, Yu Q, Badiss A, Zaidi MA, Ponomareva E, Hu Y, Ye W (2016) Paraphyletic genus Ditylenchus Filipjev (Nematoda, Tylenchida), corresponding to the D. triformis-group and the D. dipsaci-group scheme. ZooKeys 568: 1-12. https://doi.org/10.3897/zookeys.568.5965
Figure 1 - The 10001st Bayesian likelihood tree inferred from ITS sequences under GTR+I+G model (lnL = 9697.1895; freqA = 0.2646; freqC = 0.2062; freqG = 0.2602; freqT = 0.269; R(a) = 0.9399; R(b) = 3.4936; R(c) = 2.4954; R(d) = 0.5528; R(e) = 5.2698; R(f) = 1; Pinva = 0.4389; Shape = 0.7862). Posterior probability values exceeding 50% are given on appropriate clades.
Figure 2 from: Qiao Y, Yu Q, Badiss A, Zaidi MA, Ponomareva E, Hu Y, Ye W (2016) Paraphyletic genus Ditylenchus Filipjev (Nematoda, Tylenchida), corresponding to the D. triformis-group and the D. dipsaci-group scheme. ZooKeys 568: 1-12. https://doi.org/10.3897/zookeys.568.5965
Figure 2 - The 10001st Bayesian likelihood tree inferred from 18S sequences under GTR+I+G model (lnL = 9697.1895; freqA = 0.2646; freqC = 0.2062; freqG = 0.2602; freqT = 0.269; R(a) = 0.9399; R(b) = 3.4936; R(c) = 2.4954; R(d) = 0.5528; R(e) = 5.2698; R(f) = 1; Pinva = 0.4389; Shape = 0.7862). Posterior probability values exceeding 50% are given on appropriate clades.
Supplementary Table 1 of the Schöley et al. Lancet correspondence on "Conflicting COVID-19 excess mortality estimates"
<p>See https://github.com/jschoeley/ihme_excess_validation for the code re-creating the published figure from the supplementary table 1.</p>
Nanopore signals corresponding to all negative sample sequences
<p>This dataset contains the nanopore signals of the negative samples in all datasets.</p>
RRR/RAPID input and output files corresponding to "Analytical Propagation of Runoff Uncertainty into Discharge Uncertainty through a Large River Network"
<p><strong>Corresponding peer-reviewed publication</strong></p> <p>This dataset corresponds to all the RRR/RAPID input and output files that were used in the study reported in:</p> <ul> <li> <p>David, C. H., J. M. Hobbs, M. J. Turmon, C. M. Emery, J. T. Reager, and J. S. Famiglietti (2019), Analytical Propagation of Runoff Uncertainty into Discharge Uncertainty through a Large River Network, Geophysical Research Letters, 46, 8102–8113, DOI: 10.1029/2019GL083342.</p> </li> </ul> <p>When making use of any of the files in this dataset, please cite both the aforementioned article and the dataset herein. </p>
Dielectric Properties of Matched Tissue Samples From Thoracic Malignancies and Corresponding Normal Tissues
ClinicalTrials.gov study NCT04804410. IPD Sharing: YES. Countries: 0. Publications: 7.
Data from: Contrasting effects of ectomycorrhizal and arbuscular mycorrhizal tropical tree species on soil nitrogen cycling: the potential mechanisms and corresponding adaptive strategies
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Microgeographic adaptation corresponds with elevational distributions of congeneric montane grasshoppers
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Expanding forests in alpine regions lead to a corresponding shift in belowground fungal communities
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Data from: Evolution of dispersal syndrome and its corresponding metabolomic changes
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Data from: Patterns of authorship in ecology and evolution: first, last and corresponding authorship vary with gender and geography
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Supplemental information for: An early burst in brachiopod evolution corresponding with significant climatic shifts during the great Ordovician biodiversification event
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Data from: Genomic data detect corresponding signatures of population size change on an ecological time scale in two salamander species
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Data from: Contrasting gene expression programs correspond with predator-induced phenotypic plasticity within and across-generations in Daphnia
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Data from: How well do molecular and pedigree relatedness correspond, in populations with variable mating systems, and types and quantities of molecular and demographic data?
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Data from: Gut microbiota of dung beetles correspond to dietary specializations of adults and larvae
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Micronome profiling in 3 pairs of salivary adenoid cystic carcinoma(SACC) and the corresponding nomal salivary gland tissues
GEO Series GSE117275. Homo sapiens. 6 samples. Type: Non-coding RNA profiling by high throughput sequencing.
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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.
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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.