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4,287
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4,287 results for “new associations”
FIGURE 1 in A new mycorrhizal species of Ceratobasidium (Ceratobasidiaceae) associated with roots of the epiphytic orchid Gomesa recurva from Brazilian Atlantic Forest
FIGURE 1. Bayesian phylogenetic tree inferred with alignment of the nucleotide sequences of the ITS region. Bayesian posterior probabilities (PP≥0.95) and Maximum Likelihood boostrap support (ML≥60) are indicated at the nodes (PP/ML). The isolates in this study are highlighted in bold. Type strains of species are indicated after to the culture collection number (T). The tree was rooted with Waitea circinata IMI 375117.
FIGURE 2. Ceratobasidium gomesae COAD 3147 in A new mycorrhizal species of Ceratobasidium (Ceratobasidiaceae) associated with roots of the epiphytic orchid Gomesa recurva from Brazilian Atlantic Forest
FIGURE 2. Ceratobasidium gomesae COAD 3147. (a) Three-day-old PDA culture; (b) Hyphae stained with SYBR Green I and Calcofluor showing binucleate cells (N = nuclei; S = septa); (c) Hyphae with branching at right angles; (d) Monilioid cell chains in CMA. Scale bars C and D = 20 µm; B = 25 µm.
FIGURES 1−6 in Syncola crypsimorpha (Meyrick, 1922) (Gelechioidea: Blastobasidae): A new pest species associated with cultured lac in India
FIGURES 1−6. Adult forewing patterns and adult features of Syncola crypsimorpha and S. pulverea. 1, Forewing pattern of S. crypsimorpha. 2, Forewing pattern of S. pulverea. 3, Head of S. crypsimorpha, lateral view. Arrow indicates labial palpus ex- tending above vertex of head. 4, Base of antenna showing an unmodfied first flagellomere of S. crypsimorpha. Arrow indicates unmodified first flagellomere. 5, Forewing venation of S. crypsimorpha. Arrow indicates pterostigma between Sc and R 1. 6, Hindwing venation of S. sp. n.crypsimorpha.
FIGURES 11−12 in Syncola crypsimorpha (Meyrick, 1922) (Gelechioidea: Blastobasidae): A new pest species associated with cultured lac in India
FIGURES 11−12. Female genitalia of Syncola crypsimorpha and S. pulverea. Fig. 11, S. crypsimorpha. 12, S. pulverea.
FIGURES 7−10 in Syncola crypsimorpha (Meyrick, 1922) (Gelechioidea: Blastobasidae): A new pest species associated with cultured lac in India
FIGURES 7−10. Male genitalia of Syncola crypsimorpha and S. pulverea. Fig. 7, S. crypsimorpha. Genital capsule. Fig. 8, phallus. Fig. 9, S. pulverea, Genital capsule. Fig. 10, phallus.
Figure 3 in Diaeretellus nymphaealis sp. n. (Hymenoptera, Braconidae, Aphidiinae) - a new member of aphid parasitoid guilds associated with wetland habitats, with a key for identification of Diaeretellus species
Figure 3. (a) Diaeretellus ephippium, female. (b) D. heinzei, female, antenna (redrawn from Mackauer (1959)). (c) D. macrocarpus, female, flagellomeres 1 and 2. (d) D. macrocarpus, female, fore wing.
Figure 2 in Diaeretellus nymphaealis sp. n. (Hymenoptera, Braconidae, Aphidiinae) - a new member of aphid parasitoid guilds associated with wetland habitats, with a key for identification of Diaeretellus species
Figure 2. Diaeretellus nymphaealis sp. nov. Female: (a) head; (b) mesoscutum; (c) propodeum; (d) petiole; (e) ovipositor sheaths; (g) fore wing. (f) Male genitalia.
Figure 1 in Diaeretellus nymphaealis sp. n. (Hymenoptera, Braconidae, Aphidiinae) - a new member of aphid parasitoid guilds associated with wetland habitats, with a key for identification of Diaeretellus species
Figure 1. Diaeretellus nymphaealis sp. nov., female. (a) Antenna; (b) flagellomeres 1 and 2; (c) Flagellomere 11.
Figure 4 in Diaeretellus nymphaealis sp. n. (Hymenoptera, Braconidae, Aphidiinae) - a new member of aphid parasitoid guilds associated with wetland habitats, with a key for identification of Diaeretellus species
Figure 4. Diaeretellus palustris, female. (a) Antenna; (b) flagellomeres 1 and 2; (c) petiole; (d) fore wing.
FIGURE 4 in A new species of Hystrignathus (Nematoda: Thelastomatoidea: Hystrignathidae) associated with the Bess Beetle Passalus Interruptus Linnaeus (Coleoptera: Passalidae) from The Peruvian Amazonia
FIGURE 4. Tanglegram for Host phylogeny (left) and associated nematodes included in the phylogenetic analysis (right). Each color corresponds to a Passalidae clade. Passalidae relationships were drawn based on recent phylogenetic hypotheses (Beza–Beza et al. 2020).
FIGURE 3. Phylogenetic tree inferred from a in A new species of Hystrignathus (Nematoda: Thelastomatoidea: Hystrignathidae) associated with the Bess Beetle Passalus Interruptus Linnaeus (Coleoptera: Passalidae) from The Peruvian Amazonia
FIGURE 3. Phylogenetic tree inferred from a Bayesian inference analysis of concatenated dataset of SSU and LSU partial sequences of Hystrignathidae and other Oxyuridomorpha. Values of posterior probability and bootstrap are shown at the nodes. New species in bold fonts. Clade of species found in Passalidae indicated in bold lines. The scale bar represents the number of nucleotide substitutions per site.
FIGURE 2. Hystrignathus nunashae n in A new species of Hystrignathus (Nematoda: Thelastomatoidea: Hystrignathidae) associated with the Bess Beetle Passalus Interruptus Linnaeus (Coleoptera: Passalidae) from The Peruvian Amazonia
FIGURE 2. Hystrignathus nunashae n. sp. SEM images. Female. A. Oral region, apical view. B. Anal region showing lateral alae ending (LAE), lateral view. C. Anterior region, lateral view showing lateral alae beginning (LAB). D. Tail, ventral view. Scale bars: A, 20 µm; B, 50 µm; C, D 100 µm.
FIGURE 1. Hystrignathus nunashae n in A new species of Hystrignathus (Nematoda: Thelastomatoidea: Hystrignathidae) associated with the Bess Beetle Passalus Interruptus Linnaeus (Coleoptera: Passalidae) from The Peruvian Amazonia
FIGURE 1. Hystrignathus nunashae n. sp. Female. A. Entire nematode, lateral view. B. Oral region, lateral view. C. Oral region, apical view. D. Pharynx region, lateral view. E. Egg. Scale bars: A, D, 100 µm; B, 20 µm; C, 10 µm; E, 50 µm.
FIGURES 20–38. Associated diatom flora. Figs 20–21, 33 in A new diatom (Bacillariophyta) species from Indonesian urban areas, description of Microcostatus labrisicus sp. nov.
FIGURES 20–38. Associated diatom flora. Figs 20–21, 33. Eunotia isabelensis Lange-Bertalot, Bąk & Kociolek. Fig. 22. Microcostatus stapputana Lange-Bertalot & Wydrzycka. Figs 22–23, 35–36. Placoneis geitleri (Hustedt) Vishnjakov. Figs 25–27, 34. Humidophila contenta (Grunow) Lowe et al. Figs 29–31, 37, 38. Luticola muticoides (Hustedt) D.G. Mann. Fig. 32. Luticola sp. Scale bar represents 10 µm (Figs 1–13), 5 µm (Figs 16, 17, 19), 3 µm (Fig. 15), 2 µm (Fig. 18).
Figure 10 in The first cave associated genus of Berothidae (Insecta: Neuroptera), and a new interpretation of the subfamily Cyrenoberothinae
Figure 10. Male genitalia of Speleoberotha mineira sp. nov. (Berothidae: Cyrenoberothinae). A, B, ventral views. C, dorsal view. D, genital complex, dorsal view. Abbreviations: ect, ectoproct; gst10, tenth gonostyli; gx9–gx11, ninth–eleventh gonocoxites; S8, S9, eighth and ninth sternites; T8, T9, eighth and ninth tergites.
Figure 6 in The first cave associated genus of Berothidae (Insecta: Neuroptera), and a new interpretation of the subfamily Cyrenoberothinae
Figure 6. Male genitalia of Speleoberotha palomae sp. nov. (Berothidae: Cyrenoberothinae). A, B, ventral views. C, caudal view. D, genital complex, ventral view. E, genital complex, caudal view. Abbreviations: ect, ectoproct; gph10, tenth gonapophyses; gst10, tenth gonostyli; gx9–gx11, ninth–eleventh gonocoxites; S9, ninth sternite; T9, ninth tergite.
Figure 5 in The first cave associated genus of Berothidae (Insecta: Neuroptera), and a new interpretation of the subfamily Cyrenoberothinae
Figure 5. Male genitalia of Speleoberotha palomae sp. nov. (Berothidae: Cyrenoberothinae). A, B, lateral views. C, oblique view. D, E, genital complex, oblique view. Abbreviations: ect, ectoproct; gph10, tenth gonapophyses; gst10, tenth gonostyli; gx9–gx11, ninth–eleventh gonocoxites; S8, S9, eighth and ninth sternites; T8, T9, eighth and ninth tergites.
Figure 4 in The first cave associated genus of Berothidae (Insecta: Neuroptera), and a new interpretation of the subfamily Cyrenoberothinae
Figure 4. Speleoberotha palomae sp. nov. (Berothidae: Cyrenoberothinae). A, habitus, lateral. B, wings. C, head, frontal view. D, head and thorax, dorsal view. Abbreviations: A1, A2, anal veins; CuA, cubitus anterior; CuP, cubitus posterior; MA, media anterior; MP, media posterior; RA, radius anterior; RP, radius posterior; Sc, subcostal; 1r-m, first radial–medial crossvein.
Figure 9 in The first cave associated genus of Berothidae (Insecta: Neuroptera), and a new interpretation of the subfamily Cyrenoberothinae
Figure 9. Male genitalia of Speleoberotha mineira sp. nov. (Berothidae: Cyrenoberothinae). A, B, lateral views. C, caudal view. D, genital complex, lateral view. E, genital complex, caudal view. Abbreviations: ect, ectoproct; gst10, tenth gonostyli; gx9–gx11, ninth–eleventh gonocoxites; S8, S9, eighth and ninth sternites; T8, T9, eighth and ninth tergites.
Figure 1 in The first cave associated genus of Berothidae (Insecta: Neuroptera), and a new interpretation of the subfamily Cyrenoberothinae
Figure 1. Phylogenetic relationship within Berothidae (Insecta: Neuroptera) (after Aspöck & Randolf, 2014). Most parsimonious and unique tree (number of steps = 217, consistency index = 32, retention index = 59) under implied weight analysis using values of k = 9–15. Character changes are marked on branches: red above = character numbers; and black below = character state. Forward unequivocal changes (black circles) and reversed or multiple changes (white circles) are shown. Bremer values of branch support are presented below nodes in blue. Names for taxa that contain only extinct species are preceded by a dagger (†) (Supporting Information, Table S1).
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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.