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445 results for “Neotropical diversity”
Figure 3 from: Cumberlidge N, Alvarez F, Villalobos J-L (2014) Results of the global conservation assessment of the freshwater crabs (Brachyura, Pseudothelphusidae and Trichodactylidae): The Neotropical region, with an update on diversity. In: Wehrtmann IS, Bauer RT (Eds) Proceedings of the Summer Meeting of the Crustacean Society and the Latin American Association of Carcinology, Costa Rica, July 2013. ZooKeys 457: 133-157. https://doi.org/10.3897/zookeys.457.6598
Figure 3 - Distribution of threatened species of Neotropical freshwater crabs (Pseudothelphusidae and Trichodactylidae) based on all known point localities (n = 173).
Figures 27-30 from: Zaldivar-Riveron A (2014) The genus Spathius Nees (Hymenoptera, Braconidae, Doryctinae) in Mexico: occurrence of a highly diverse Old World taxon in the Neotropics. ZooKeys 427: 59-73. https://doi.org/10.3897/zookeys.427.8074
Figures 27-30 - Spathius chamelae sp. n. (female). 27 Fore and hind wings 28 Metasoma, lateral view 29 Petiole, lateral view 30 Petiole, dorsal view.
Figures 17-26 from: Zaldivar-Riveron A (2014) The genus Spathius Nees (Hymenoptera, Braconidae, Doryctinae) in Mexico: occurrence of a highly diverse Old World taxon in the Neotropics. ZooKeys 427: 59-73. https://doi.org/10.3897/zookeys.427.8074
Figures 17-26 - Spathius chamelae sp. n. (female). 17 Habitus, lateral view 18 Head, front view 19 Head, dorsal view 20 Head and anterior part of mesosoma, lateral view 21 Basal segments of antenna 22 Apical segments of antenna 23 Mesosoma, dorsal view 24 Mesosoma, lateral view 25 Hind coxa and femur 26 Hind tibia.
Figures 1-10 from: Zaldivar-Riveron A (2014) The genus Spathius Nees (Hymenoptera, Braconidae, Doryctinae) in Mexico: occurrence of a highly diverse Old World taxon in the Neotropics. ZooKeys 427: 59-73. https://doi.org/10.3897/zookeys.427.8074
Figures 1-10 - Spathius mexicanus sp. n. (female). 1 Habitus, lateral view 2 Head, dorsal view 3 Head, front view 4 Head and anterior half of mesosoma, lateral view 5 Basal segments of antenna 6 Apical segments of antenna 7 Mesosoma, dorsal view 8 Mesosoma, lateral view 9 Fore tibia 10 Middle tibia.
Figures 11-16 from: Zaldivar-Riveron A (2014) The genus Spathius Nees (Hymenoptera, Braconidae, Doryctinae) in Mexico: occurrence of a highly diverse Old World taxon in the Neotropics. ZooKeys 427: 59-73. https://doi.org/10.3897/zookeys.427.8074
Figures 11-16 - Spathius mexicanus sp. n. (female). 11 Fore wing 12 Hind wing 13 Metasoma, lateral view 14 Metasoma, dorsal view 15 Petiole, lateral view 16 Petiole, dorsal view.
Figure 1 from: Estupiñán RA, Ferrari SF, Gonçalves EC, Barbosa MSR, Vallinoto M, Schneider MPC (2016) Evaluating the diversity of Neotropical anurans using DNA barcodes. ZooKeys 637: 89-106. https://doi.org/10.3897/zookeys.637.8637
Figure 1 - The BX044 priority area for conservation showing the sites at which anuran specimens were collected.
Figure 2 from: Estupiñán RA, Ferrari SF, Gonçalves EC, Barbosa MSR, Vallinoto M, Schneider MPC (2016) Evaluating the diversity of Neotropical anurans using DNA barcodes. ZooKeys 637: 89-106. https://doi.org/10.3897/zookeys.637.8637
Figure 2 - Transition (s) and transversions (v) plotted against the sequence divergence (Kimura 2-parameter distances) for the analyzed anurans.
Figure 4 from: Estupiñán RA, Ferrari SF, Gonçalves EC, Barbosa MSR, Vallinoto M, Schneider MPC (2016) Evaluating the diversity of Neotropical anurans using DNA barcodes. ZooKeys 637: 89-106. https://doi.org/10.3897/zookeys.637.8637
Figure 4 - Neighbor-joining (NJ) tree derived from the analysis of COI sequences. The numbers at the nodes represent the percentage bootstrap values.
FIGURE 32 Occulta ocnus comb.n in Combining target enrichment and Sanger sequencing data to clarify the systematics of the diverse Neotropical butterfly subtribe Euptychiina (Nymphalidae, Satyrinae)
FIGURE 32 Occulta ocnus comb.n. Locality records.
FIGURE 29 Trico tricolor comb.n in Combining target enrichment and Sanger sequencing data to clarify the systematics of the diverse Neotropical butterfly subtribe Euptychiina (Nymphalidae, Satyrinae)
FIGURE 29 Trico tricolor comb.n. Locality records.
FIGURE 25 Xenovena murrayae comb.n in Combining target enrichment and Sanger sequencing data to clarify the systematics of the diverse Neotropical butterfly subtribe Euptychiina (Nymphalidae, Satyrinae)
FIGURE 25 Xenovena murrayae comb.n. Locality records.
FIGURE 22 Taguaiba gen.n in Combining target enrichment and Sanger sequencing data to clarify the systematics of the diverse Neotropical butterfly subtribe Euptychiina (Nymphalidae, Satyrinae)
FIGURE 22 Taguaiba gen.n. Species diversity mapped on a 2 degree grid.
Data from: Paleoclimatic evolution as the main driver of current genomic diversity in the widespread and polymorphic Neotropical songbird Arremon taciturnus
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Raster layers of prioritisation analyses for current and future conditions based on phylogenetic diversity of Neotropical palms
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Data from: Investigating the timing of origin and evolutionary processes shaping regional species diversity: insights from simulated data and Neotropical butterfly diversification rates
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Data from: Bats (Chiroptera: Noctilionoidea) challenge a recent origin of extant neotropical diversity
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Anticipating the potential impacts of Batrachochytrium salamandrivorans on Neotropical salamander diversity
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FIG. 1. — Veredatrypa rosai n. gen., n in New Brazilian Tafaliscina increase the diversity of this Neotropical cricket clade (Orthoptera: Grylloidea: Gryllidae: Oecanthinae: Paroecanthini)
FIG. 1. — Veredatrypa rosai n. gen., n. sp. living habitus: A, adult female; B, adult male.
FIG. 17 in New Brazilian Tafaliscina increase the diversity of this Neotropical cricket clade (Orthoptera: Grylloidea: Gryllidae: Oecanthinae: Paroecanthini)
FIG. 17. — Brazilian map, type locality of Veredatrypa n. gen. species and Tafalisca new species.
Targeted capture of hundreds of nuclear genes unravels phylogenetic relationships of the diverse Neotropical palm tribe Geonomateae.
<p>The tribe Geonomateae is a widely distributed group of 103 species of Neotropical palms which contains six ecologically important understory or subcanopy genera. Although it has been the focus of many studies, our understanding of the evolutionary history of this group, and in particular of the taxonomically complex genus <em>Geonoma</em>, is far from complete due to a lack of molecular data. Specifically, the previous Sanger sequencing-based studies used a few informative characters and partial sampling. To overcome these limitations, we used a recently developed Arecaceae-specific target capture bait set to undertake a phylogenomic analysis of the tribe Geonomateae. We sequenced 3,988 genes for 85% of the species of the tribe, including 84% of the species of the largest genus, <em>Geonoma</em>.<em> </em>Phylogenetic relationships were inferred using both concatenation and coalescent methods. Overall, our phylogenetic tree is highly supported and congruent with taxonomic delimitations although several morphological taxa were revealed to be non-monophyletic. It is the first time that such a large genomic dataset is provided for an entire tribe within the Arecaceae. Our study lays the groundwork not only for detailed macro- and micro-evolutionary studies within the group, but also sets a workflow for understanding other species complexes across the tree of life.</p>
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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)
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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.