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2,576 results for “host species”
Figures 28–30 in Taxonomy and phylogeny of the Asphondylia species (Diptera: Cecidomyiidae) of North American goldenrods: challenging morphology, complex host associations, and cryptic speciation
Figures 28–30. Asphondylia monacha, male terminalia: 28, dorsal; 29, ventral; 30, lateral. Scale bars: 0.1 mm.
Figures 23–27 in Taxonomy and phylogeny of the Asphondylia species (Diptera: Cecidomyiidae) of North American goldenrods: challenging morphology, complex host associations, and cryptic speciation
Figures 23–27. Asphondylia monacha: 23, male flagellomere 5; 24, female flagellomere 5; 25, female flagellomeres 10– 12; 26, female abdomen; 27, male abdomen. Scale bars: 0.1 mm.
Figures 1–6 in Taxonomy and phylogeny of the Asphondylia species (Diptera: Cecidomyiidae) of North American goldenrods: challenging morphology, complex host associations, and cryptic speciation
Figures 1–6. Asphondylia bud galls: 1, 2, Asphondylia monacha spring galls on Solidago altissima sprouts; 3, Asphondylia monacha summer-generation gall on Solidago juncea; 4, Asphondylia monacha summer-generation gall on Solidago erecta; 5, Asphondylia sp. gall on Solidago sempervirens (photo: Charley Eiseman); 6, Asphondylia sp. gall on Solidago bicolor.
Figure 2. Phylogenetic tree resulting from a in Host specialization and species diversity in the genus Stylops (Strepsiptera: Stylopidae), revealed by molecular phylogenetic analysis
Figure 2. Phylogenetic tree resulting from a Bayesian analysis of the partial sequence from the mitochondrial NADH gene. The names of the host Andrena bees are indicated with every Stylops voucher number. The posterior probabilities are given before the slash; the bootstrap values from the maximum-likelihood (ML) analysis are given after the slash. Posterior probability values lower than 0.9, and bootstrap values lower than 50, are considered as unsupported and are thus replaced by an asterisk (*); incongruent nodes between the two analyses are indicated by a dash (-). Branch support is omitted at the nodes that were unsupported in both the Bayesian and the ML analyses.
Figures 15–22 in Taxonomy and phylogeny of the Asphondylia species (Diptera: Cecidomyiidae) of North American goldenrods: challenging morphology, complex host associations, and cryptic speciation
Figures 15–22. Galls: 15, Asphondylia pseudorosa sp. nov. inflorescence gall on Euthamia graminifolia; 16, Asphondylia pseudorosa sp. nov. snap gall on Euthamia graminifolia; 17, Asphondylia pseudorosa sp. nov. rosette galls on Euthamia graminifolia; 18, Asphondylia sp. from Solidago sp. (photo: Tom Murray); 19, 20, Asphondylia silva sp. nov. galls on Solidago caesia; 21, Clinodiplosis comitis sp. nov. larvae around Asphondylia pseudorosa sp. nov. bud gall; 22, Galeopsomia haemon 'internal galls' inside Asphondylia pseudorosa sp. nov. bud gall.
Figure 3. Phylogenetic tree resulting from a in Host specialization and species diversity in the genus Stylops (Strepsiptera: Stylopidae), revealed by molecular phylogenetic analysis
Figure 3. Phylogenetic tree resulting from a Bayesian analysis of the partial sequence from the nuclear EF1 gene. Names of host Andrena bees are indicated at every Stylops voucher number. The names of the host Andrena bees are indicated with every Stylops voucher number. The posterior probabilities are given before the slash; the bootstrap values from the maximum-likelihood (ML) analysis are given after the slash. Posterior probability values lower than 0.9, and bootstrap values lower than 50, are considered as unsupported and thus replaced by an asterisk (*); incongruent nodes between the two analyses are indicated by a dash (-). Branch support is omitted at the nodes that were unsupported in both the Bayesian and the ML analyses.
Figures 7–14 in Taxonomy and phylogeny of the Asphondylia species (Diptera: Cecidomyiidae) of North American goldenrods: challenging morphology, complex host associations, and cryptic speciation
Figures 7–14. Galls: 7, 8, Asphondylia solidaginis snap galls on Solidago altissima; 9, Asphondylia solidaginis snap galls on Solidago gigantea; 10, Asphondylia solidaginis pupa in snap gall on Solidago altissima – gall was cut open to show pupa in fungus-lined chamber; 11, 12, Asphondylia rosulata sp. nov. snap galls on Solidago rugosa; 13, Asphondylia solidaginis rosette gall on Solidago altissima; 14, Asphondylia rosulata sp. nov. rosette gall on Solidago rugosa.
Figure 103 in Taxonomy and phylogeny of the Asphondylia species (Diptera: Cecidomyiidae) of North American goldenrods: challenging morphology, complex host associations, and cryptic speciation
Figure 103. Phylogenetic tree of Asphondylia species associated with goldenrods based on Bayesian analysis of partial sequence of the cytochrome c oxidase subunit I (COI) mitochondrial gene. Support values are shown next to nodes.
Figures 96–101 in Taxonomy and phylogeny of the Asphondylia species (Diptera: Cecidomyiidae) of North American goldenrods: challenging morphology, complex host associations, and cryptic speciation
Figures 96–101. Youngomyia podophyllae: 96, male terminalia, dorsal; 97, male terminalia, inset, ventral; 98, female post-abdomen; 99, proximal part of larval spatula with associated papillae; 100, larval head and prothorax; 101, pupal exuviae, head. Scale bars: 0.1 mm.
Figure 104 in Taxonomy and phylogeny of the Asphondylia species (Diptera: Cecidomyiidae) of North American goldenrods: challenging morphology, complex host associations, and cryptic speciation
Figure 104. Phylogenetic tree of Asphondylia species associated with goldenrods based on combined Bayesian analysis of the cytochrome c oxidase subunit I (COI) mitochondrial and elongation factor 1α (EF-1α) genes. Support values are shown next to nodes. Colours refer to host-plant species; icons on branches refer to galled plant organ. Rectangular brackets on right indicate species boundaries.
Figures 88–95 in Taxonomy and phylogeny of the Asphondylia species (Diptera: Cecidomyiidae) of North American goldenrods: challenging morphology, complex host associations, and cryptic speciation
Figures 88–95. Youngomyia podophyllae: 88, head; 89, female flagellomere 3; 90, female flagellomere 12; 91, acropod (second tiny tooth on claw not shown); 92, wing; 93, male flagellomere 3; 94, male flagellomere 8; 95, male flagellomere 12. Scale bars: 0.1 mm, except 1 mm for wing.
Figures 84–87 in Taxonomy and phylogeny of the Asphondylia species (Diptera: Cecidomyiidae) of North American goldenrods: challenging morphology, complex host associations, and cryptic speciation
Figures 84–87. Clinodiplosis comitis sp. nov.: 84, female post-abdomen; 85, larva head and prothorax; 86, male terminalia, dorsal; 87, larva terminal segment with associated papillae. Scale bars: 0.1 mm.
Figures 78–83 in Taxonomy and phylogeny of the Asphondylia species (Diptera: Cecidomyiidae) of North American goldenrods: challenging morphology, complex host associations, and cryptic speciation
Figures 78–83. Clinodiplosis comitis sp. nov.: 78, head; 79, male flagellomere 3; 80, female flagellomere 9; 81, female flagellomere 12; 82, wing; 83, acropod. Scale bars: 0.1 mm.
FIGURE 3 in Three new host records of endophytic Neofusicoccum species reported from Dendrobium orchids
FIGURE 3. Neofusicoccum parvum (MFLUCC 14-0163). A–B. Colony on PDA (A. surface, B. reverse). C–G. Conidiomata on PDA. H. Conidiogenous cells with conidia. I. Conidiogenous cell with conidium stained with Congo red. J–M. Conidia (I, L, M stained with Congored). Scale bars: C= 200 μm, D=500 μm, H=20 μm, I–K =10 μm, L–M=5 μm.
FIGURE 2 in Three new host records of endophytic Neofusicoccum species reported from Dendrobium orchids
FIGURE 2. Neofusicoccum occulatum on PDA (MFLUCC 20-0234) A–B. Colony on PDA (A: surface, B: reverse). C. Conidiomata masses. D–G. Conidia. Scale bars: C=500 μm, D–G=10 μm.
FIGURE 4 in Three new host records of endophytic Neofusicoccum species reported from Dendrobium orchids
FIGURE 4. Neofusicoccum parvum (MFLUCC 19-0244, C–N from WA). A–B. Colony on PDA (A: surface, B: reverse). C. Conidiomata on slide culture. D–G. Pycnidia. H–L. Conidiogenous cells with conidia. M–N. Conidia. Scale bars: H=10 μm, I–J=5 μm, K–N=10 μm.
FIGURE 1. The consensus phylogram resulting from a in Three new host records of endophytic Neofusicoccum species reported from Dendrobium orchids
FIGURE 1. The consensus phylogram resulting from a RAxML analysis of the combined four loci alignment (ITS-RPB2 -EF-1α-TUB2) of the analysed Neofusicoccum and related species sequences. Strains isolated in this study are in red. Ex-epitype and ex-type isolates are
Figures 62–69 in Taxonomy and phylogeny of the Asphondylia species (Diptera: Cecidomyiidae) of North American goldenrods: challenging morphology, complex host associations, and cryptic speciation
Figures 62–69. Pupal heads: 62, 63, Asphondylia monacha, spring generation; 64, 65, Asphondylia monacha, summer generation; 66, 67, Asphondylia solidaginis; 68, 69, Asphondylia rosulata sp. nov. Scale bars: 200 μm.
Datasets from Benhamou et al.: Cytotype conditions capability to feed and oviposit of the whitefly Bemisia tabaci (Hemiptera: Aleyrodidae) MED species on an unfavorable host plant
<p>This excel file contains all datasets generated analyzed in this study.</p>
FIGURES 77–84 in New species and host plants of Anastrepha (Diptera: Tephritidae) primarily from Suriname and Pará, Brazil
FIGURES 77–84. Eversible membranes, dorsal unless otherwise indicated: 77–78, A. crassaculeus (Colombia: Pamplonita, ICAMF00000437; Suriname: Brownsberg, USNMENT00875105); 79–80, A. curvivenis (Brazil: Rio Urucu, USN- MENT01526558; 80, lateral); 81, A. curvivenis (Peru: Tarapoto, USNMENT00744647); 82–83, A. fuscoalata (Suriname: Berg en Dal, USNMENT01526233; 83, dorsoapical); 84, A. gangadini (Suriname: Brownsberg, USNMENT00875038).
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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.