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205 results for “wing pattern”
FIGURE 1 in Wing pattern variation and DNA barcodes defy taxonomic splitting in the New Zealand Pimelea Looper Notoreas perornata (Walker) (Lepidoptera: Geometridae: Larentiinae): the importance of populations as conservation units
FIGURE 1. Mitochondrial DNA (COI) gene tree for Notoreas perornata complex and selected outgroups. Branch lengths are drawn proportional to the estimated number of substitutions per site following the scale bar. Numbers above branches are maximum likelihood bootstrap percentages. Species names are followed by specimen numbers in parentheses.
Data from: Extensive transcriptional response associated with seasonal plasticity of butterfly wing patterns
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Data from: Helper effects in the azure-winged magpie Cyanopica cyana in relation to highly-clumped nesting pattern and high frequency of conspecific nest-raiding
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Deep cis-regulatory homology of the butterfly wing pattern groundplan
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Data from: Wing patterning gene redefines the mimetic history of Heliconius butterflies
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Data from: Interrelations of global macroecological patterns in wing and thorax size, sexual size dimorphism, and range size of the Drosophilidae
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Integrative taxonomic analysis to reveal the species status of Bombus flavidus, combining COI and nuclear sequencing, wing morphometrics and secretions used for mate attraction as well as patterns of color polymorphism
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Data from: Transcriptome analysis reveals novel patterning and pigmentation genes underlying Heliconius butterfly wing pattern variation
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Data from: Genetic constraints on wing pattern variation in Lycaeides butterflies: a case study on mapping complex, multifaceted traits in structured populations
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Wing interference patterns of Chrysomya blowflies (Diptera: Calliphoridae)
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Parallel evolution of ancient, pleiotropic enhancers underlies butterfly wing pattern mimicry
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Data from: EB Ford revisited: assessing the long-term stability of wing-spot patterns and population genetic structure of the meadow brown butterfly on the Isles of Scilly
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Hybridization and transgressive exploration of colour pattern and wing morphology in Heliconius butterflies
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Temporal flexibility of gene regulatory network underlies a novel wing pattern in flies
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FIGURE 1 in Wing Interference Patterns in patterned wings of Culicoides Latreille, 1809 (Diptera: Ceratopogonidae)-exploring potential identification tool
FIGURE 1. Scheme of wing venation of biting midge from genus Culicoides.
Patterns of genetic divergence and demographic history shed light on island-mainland population dynamics and melanic plumage evolution in the white-winged fairywren
<p>The existence of distinct traits in island versus mainland populations offers opportunities to gain insights into how eco-evolutionary processes operate under natural conditions. We used two island colonization events in the white-winged fairywren (<i>Malurus </i><i>leucopterus</i>) to investigate the genomic and demographic origin of melanic plumage. This avian species is distributed across most of Australia, and males of the mainland subspecies (<i>M. l. leuconotus</i>) exhibit a blue nuptial plumage in contrast to males of two island subspecies – <i>M. l. leucopterus </i>on Dirk Hartog Island<i> </i>and <i>M. l. edouardi</i>on Barrow Island – that exhibit a black nuptial plumage. We used reduced-representation sequencing to explore differentiation and demographic history in this species and found clear patterns of divergence between mainland and island populations, with additional substructuring on the mainland. Divergence between the mainland and Dirk Hartog was approximately 10 times more recent than the split between the mainland and Barrow Island, supporting two independent colonizations. In both cases, estimated gene flow between the mainland and the islands was low, contributing to signals of divergence among subspecies. Our results present demographic reconstructions of mainland-island dynamics and associated plumage variation in white-winged fairywrens, with broader implications regarding our understanding of convergent evolution in insular populations.</p>
Data from: Evolutionary novelty in a butterfly wing pattern through enhancer shuffling
An important goal in evolutionary biology is to understand the genetic changes underlying novel morphological structures. We investigated the origins of a complex wing pattern found among Amazonian Heliconius butterflies. Genome sequence data from 142 individuals across 17 species identified narrow regions associated with two distinct red colour pattern elements, dennis and ray. We hypothesise that these modules in non-coding sequence represent distinct cis-regulatory loci that control expression of the transcription factor optix, which in turn controls red pattern variation across Heliconius. Phylogenetic analysis of the two elements demonstrated that they have distinct evolutionary histories and that novel adaptive morphological variation was created by shuffling these cis-regulatory modules through recombination between divergent lineages. In addition, recombination of modules into different combinations within species further contributes to diversity. Analysis of the timing of diversification in these two regions supports the hypothesis of introgression moving regulatory modules between species, rather than shared ancestral variation. The dennis phenotype introgressed into Heliconius melpomene at about the same time that ray originated in this group, while ray introgressed back into H. elevatus much more recently. We show that shuffling of existing enhancer elements both within and between species provides a mechanism for rapid diversification and generation of novel morphological combinations during adaptive radiation.
FIGURE 18 in A new species of Te ph rit is Latreille (Diptera: Tephritidae) with an unusual wing pattern from Iran and its taxonomic implications
FIGURE 18. Host plant: Achillea clypeolata, host of Tephritis sahandi.
Supplementary material 4 from: Jin S, Parks KS, Janzen DH, Hallwachs W, Dyer LA, Whitfield JB (2023) The wing interference patterns (WIPs) of Parapanteles (Braconidae, Microgastrinae): demonstrating a powerful and accessible tool for species-level identification of small and clear winged insects. Journal of Hymenoptera Research 96: 967-982. https://doi.org/10.3897/jhr.96.111382
Data files and R code
Supplementary material 3 from: Jin S, Parks KS, Janzen DH, Hallwachs W, Dyer LA, Whitfield JB (2023) The wing interference patterns (WIPs) of Parapanteles (Braconidae, Microgastrinae): demonstrating a powerful and accessible tool for species-level identification of small and clear winged insects. Journal of Hymenoptera Research 96: 967-982. https://doi.org/10.3897/jhr.96.111382
Wing interference patterns
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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.