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14 results for “Passerida”

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zenodo40/100

Figs 6-9 in Two new species of Cestoda (Cyclophyllidea: Dilepididae) from Ploceidae and Passeridae (Aves: Passeriformes) in Côte d'Ivoire

Figs 6-9. Monopylidium comoensis sp. nov. (6) Scolex. (7) Rostellar hook. (8) Mature proglottis, dorsal view (9) Terminal genitalia. Scale bars: 6, 9: 50 µm; 7: 10 µm; 8: 100 µm.

opencc-by-4.0Nov 2021View details →
zenodo40/100

Figs 1-5 in Two new species of Cestoda (Cyclophyllidea: Dilepididae) from Ploceidae and Passeridae (Aves: Passeriformes) in Côte d'Ivoire

Figs 1-5. Spiniglans thomassankara sp. nov. (1) Scolex. (2) Rotellar hooks. (3) Mature proglottis, ventral view; (4) Terminal genitalia. (5) Egg. Scale bars: 1, 3: 100 µm; 2: 50 µm; 4, 5: 20 µm.

opencc-by-4.0Nov 2021View details →
zenodo40/100

Figure 4 in Mitogenomes resolve the phylogeography and divergence times within the endemic New Zealand Callaeidae (Aves: Passerida)

Figure 4. Palaeogeographical reconstructions of New Zealand. Land is shaded in green, coastal areas in light yellow, shallow sea in light blue, and deep sea in dark blue. Inset shows present-day map of New Zealand: (1) the Wanganui Basin; (2) the Kuripapango Strait; (3) the Ruataniwha Strait; and (4) the Manawatu Strait. Row A maps are adapted from GNS Science reconstructions based on the studies by King et al. (1999) and King (2000). Row B maps are adapted from the work of Trewick & Bland (2012) and are focused on the area outlined in red on the present-day inset. Row C maps are adapted from the study by Bunce et al. (2009); the ~20 Mya map shows the entire landmass, and subsequent ones are focused on the area outlined in the black bounding box. Background grey shading denotes changing geological periods.

opencc-by-4.0Nov 2022View details →
zenodo40/100

Figure 2 in Mitogenomes resolve the phylogeography and divergence times within the endemic New Zealand Callaeidae (Aves: Passerida)

Figure 2. RAXML tree of Callaeidae mitogenomes, excluding the control region, showing different relationships and bootstrap support between Callaeidae (shaded green), Notiomystis cincta, Petroica spp. and Poodytes punctatus. Bootstrap support is shown at nodes.

opencc-by-4.0Nov 2022View details →
zenodo40/100

Figure 3 in Mitogenomes resolve the phylogeography and divergence times within the endemic New Zealand Callaeidae (Aves: Passerida)

Figure 3. BEAST chronogram of Callaeidae and 17 other passerines, based on a relaxed lognormal clock and fossil calibrations from the studies by Oliveros et al. (2019) and Scofield et al. (2017). Time scale is in millions of years. Mean divergence dates are shown in black at nodes; bars represent posterior probability intervals. Bayesian posterior probability is one unless specified by a red asterisk.

opencc-by-4.0Nov 2022View details →
dryad36/100

Data from: Museomics help resolving the phylogeny of snowfinches (Aves, Passeridae, Montifringilla and allies)

<p>Historical specimens from museum collections provide a valuable source of material also from remote areas or regions of conflict that are not easily accessible to scientists today. With this study, we are providing a taxon-complete phylogeny of snowfinches using historical DNA from whole skins of an endemic species from Afghanistan, the Afghan snowfinch, <em>Pyrgilauda theresae</em>. To resolve the strong conflict between previous phylogenetic hypotheses, we generated novel mitogenome sequences for selected taxa and genome-wide SNP data using from ddRAD sequencing for all extant snowfinch species endemic to the Qinghai-Tibet Plateau (QTP) and for an extended intraspecific sampling of the sole Central and Western Palearctic snowfinch species (<em>Montifringilla nivalis</em>).</p>

opencc-zeroJul 2024View details →
dryad36/100

Data from: Museomics help resolving the phylogeny of snowfinches (Aves, Passeridae, Montifringilla and allies)

Open the record for dataset details and reuse information.

publicJul 2024View details →
zenodo32/100

Figure 1 in Arthropods associated with nests of Cacicus sp. and Psarocolius sp. (Passerida: Icteridae) in varzea forest near the meeting of the rivers Negro and Solimões (Central Amazonia, Brazil) at high water

Figure 1. Nests of Cacicus sp. in varzea area, near Manaus, Amazonas State, Brazil. Note: In the circle a nest of wasps Polistinae. (Photograph by F.B.P Gouveia).

opennotspecifiedApr 2012View details →
zenodo32/100

Figure 3 in Arthropods associated with nests of Cacicus sp. and Psarocolius sp. (Passerida: Icteridae) in varzea forest near the meeting of the rivers Negro and Solimões (Central Amazonia, Brazil) at high water

Figure 3. General aspect of the extraction apparatuses. Note: The dotted line indicates the plastic cone placed inside the funnel, where the nest occupies almost the entire space. (Photograph by F.B.P Gouveia).

opennotspecifiedApr 2012View details →
zenodo32/100

Figure 2. Map showing the 10 in Arthropods associated with nests of Cacicus sp. and Psarocolius sp. (Passerida: Icteridae) in varzea forest near the meeting of the rivers Negro and Solimões (Central Amazonia, Brazil) at high water

Figure 2. Map showing the 10 sampling points, municipality of Iranduba, Amazonas State, Brazil. Note: modified from Kunth (1995).

opennotspecifiedApr 2012View details →
zenodo28/100

Figure 1 in Mitogenomes resolve the phylogeography and divergence times within the endemic New Zealand Callaeidae (Aves: Passerida)

Figure 1. Callaeidae, or New Zealand wattlebirds, showing key phenotypic differences between North and South Island forms of Philesturnus and Callaeas. Differences in plumage between North and South Island Philesturnus are exaggerated for clarity.

opencc-by-4.0Nov 2022View details →
dryad24/100

Data from: Obtaining mtDNA genomes from next-generation transcriptome sequencing: a case study on the basal Passerida (Aves: Passeriformes) phylogeny.

Classically, the mitochondrial genome is sequenced by a series of amplicons using conserved PCR primers. Here we show how shot-gun transcriptome sequencing can be used to obtain the complete set of protein-coding genes from the mtDNA of four passerine bird species. With these sequences, we address the still unresolved basal Passerida relationships (Aves: Passeriformes). Our analysis suggests a new hypothesis for the basal relationships of Passerida, namely a clade grouping Sylvioidea and Passeroidea, with Paridae and Muscicapidae as successive sister groups to this clade. This study demonstrates the usefulness of next-generation sequencing transcriptome sequencing for obtaining new mtDNA genomes.

opencc-zeroDec 2012View details →
dryad24/100

Data from: Obtaining mtDNA genomes from next-generation transcriptome sequencing: a case study on the basal Passerida (Aves: Passeriformes) phylogeny.

Open the record for dataset details and reuse information.

publicFeb 2013View details →
dryad24/100

Data from: Passeridae and Cyanocitta stelleri teleport to my deck from other areas

Open the record for dataset details and reuse information.

publicMay 2021View details →

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