Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
557
datasets available to search
ShareScore release 0.9.0
Dataset results
557 results for “new subtribes”
FIG. 1. G in Karyotype comparison of five African Vespertilionini species with comments on phylogenetic relationships and proposal of a new subtribe
FIG. 1. G-banded karyotype of a male L. kirinyaga, 2n = 32. Chromosomal arms are numbered according to the scheme of Bickham (1979) for Myotis species. The nucleolus organizer region (NOR) is indicated by an arrowhead
FIG. 11. G in Karyotype comparison of five African Vespertilionini species with comments on phylogenetic relationships and proposal of a new subtribe
FIG. 11. G-banded karyotype of a female N. schlieffenii, 2n = 34. Homology to MMY validated with painting probes from MMY, Tree shrew or black lemur is indicated by bold numbers. The remaining pairs were identified by G-band comparison with other vespertilionid species
FIG. 8. The G in Karyotype comparison of five African Vespertilionini species with comments on phylogenetic relationships and proposal of a new subtribe
FIG. 8. The G-banded karyotype of a male N. happoldorum with 2n = 24 chromosomes and their homology to M. myotis (MMY). Bold numbers indicate homology validated with FISH applying painting probes from MMY
FIG. 9 in Karyotype comparison of five African Vespertilionini species with comments on phylogenetic relationships and proposal of a new subtribe
FIG. 9. Heteromorphic condition of the fusion products of MMY18 and NOR-bearing MMY15 homologous chromosomal arms in N. happoldorum chromosome NHA8 shown after different staining procedures and FISH from left to right: h — homogeneous Giemsa staining, G — G-banding, Ag — AgNOR staining, C — C-banding, FISH with MMY18 and MMY15 painting probes. Both homologs differ concerning the position of the centromeres, which are highlighted by dashes. The left chromosome of each pair displays the result of a centric fusion between MMY15 and MMY18 homologous chromosomal arms. On the right chromosome of each pair, the centromere is located within the MMY18 homologous arm, transforming the morphology from submetacentric to subtelocentric. Note that the NORs are positioned at the SC of the long arm, as indicated by arrowheads
FIG. 7 in Karyotype comparison of five African Vespertilionini species with comments on phylogenetic relationships and proposal of a new subtribe
FIG. 7. Examples of G-banded X chromosomes: The banding patterns of the X chromosomes from L. kirinyaga (LKI) and N. schlieffeni (NSC) were similar to that of state II of the basic vespertilionid karyotype. The N. guineensis (NGU) X was the product of an X-autosome translocation and the X chromosomes from P. brunnea (PBR) and N. happoldorum (NHA) showed unique derived G-banding patterns
FIG. 4. G in Karyotype comparison of five African Vespertilionini species with comments on phylogenetic relationships and proposal of a new subtribe
FIG. 4. G-banded karyotype of a male P. brunnea, 2n = 36. At the X, a horizontal line indicates the position of the centromere in the X chromosome of the basic karyotype, state II. Asterisks indicate interstitial heterochromatic segments
FIG. 3. X in Karyotype comparison of five African Vespertilionini species with comments on phylogenetic relationships and proposal of a new subtribe
FIG. 3. X-autosome translocation in N. guineensis: The X chromosomes are shown after different staining procedures and FISH (G — G-banding, C — C-banding, R — replication banding procedure). Note the dark stained, early replicating distal part of the short arm in both X chromosomes, the early replicating (left homolog of the pair) and the late replicating (XL, right) long arms of the X chromosomes. FISH with the MMY X painting probe resulted in signals on the long arm of the N. guineensis X chromosome. FISH with a painting probe containing homologous sequences to Myotis chromosome 25 revealed signals on the short arm of the X
Fig. 2 in Simonachne, a new genus for Australia segregated from Ancistrachne s.l. (Poaceae: Panicoideae: Paniceae) and a new subtribe Cleistochloinae
Fig. 2. Spikelets of species from subtribe Cleistochloinae ('the cleistogamy group') with view of the lower lemma. (a and b) Simonachne maidenii (=Ancistrachne maidenii) from Thompson EJT936. (c and d) Dimorphochloa sp. (Miles E. J. Thompson EJT906) from E. J. Thompson MOR931. (e and f) Calyptochloa cylindrosperma from Thompson EJT786. (g and h) Dimorphochloa rigida from Thompson EJT959. (i and j) Cleistochloa sclerachne from Thompson EJT981. Photos: E. J. Thompson. el, remnants of elaiosome. Scale bar: 5 mm.
Fig. 1 in Simonachne, a new genus for Australia segregated from Ancistrachne s.l. (Poaceae: Panicoideae: Paniceae) and a new subtribe Cleistochloinae
Fig. 1. Inflorescences of Simonachne maidenii (=Ancistrachne maidenii). (a) Fertile culm of showing amphigamous inflorescences comprising terminal reduced spike-like panicles (TI) and axillary racemes (AI). (b) Terminal inflorescence. (c) Axillary inflorescence. All from Thompson EJT936 (BRI). Photos: Queensland Herbarium. Scale bar: 10 cm.
Fig. 4 in Simonachne, a new genus for Australia segregated from Ancistrachne s.l. (Poaceae: Panicoideae: Paniceae) and a new subtribe Cleistochloinae
Fig. 4. Lower lemmas from chasmogamous spikelets from terminal inflorescences: (a) Simonachne maidenii; (b) Ancistrachne uncinulata; (a) from Thompson EJT936 (BRI) and (b) from Thompson EJT1018 (BRI). Photos: E. J. Thompson. LG1, lower glume; st, stigma emergent at half way along spikelet; wh, woolly hairs; uh, uncinate macrohairs. Scale bar: 2 mm.
Fig. 6 in Simonachne, a new genus for Australia segregated from Ancistrachne s.l. (Poaceae: Panicoideae: Paniceae) and a new subtribe Cleistochloinae
Fig. 6. Three-dimensional ordination generated from PATN analyses using Gower association measure, and dataset with 24 samples and all 161 morphological characters. Ordination stress value = 0.0711. Ordination from principal-component analysis using semi-strong hybrid multidimensional scaling (SSH).
Fig. 5. Dendrogram generated from PATN analysis using Gower association measure and baseline dataset comprising 24 samples and 161 in Simonachne, a new genus for Australia segregated from Ancistrachne s.l. (Poaceae: Panicoideae: Paniceae) and a new subtribe Cleistochloinae
Fig. 5. Dendrogram generated from PATN analysis using Gower association measure and baseline dataset comprising 24 samples and 161 morphological characters. Three main clusters were resolved, viz. subtribes Cleistochloinae and subtribe Neurachninae sensu Clayton and Renvoize (1986) and 'paniculate inflorescence group' and 'paniculate inflorescence group'. Classification strategy set at flexible UPGMA agglomerative hierarchical fusion technique with Beta = −0.10. Size of symbols and letters indicates depth of field.
Fig. 3 in Simonachne, a new genus for Australia segregated from Ancistrachne s.l. (Poaceae: Panicoideae: Paniceae) and a new subtribe Cleistochloinae
Fig. 3. Distribution of Simonachne maidenii (=Ancistrachne maidenii) on the basis of herbarium specimen point data.
FIGURE 10 in New taxa of the subtribe Lebinthina (Orthoptera: Gryllidae: Eneopterinae Lebinthini) from New Guinea and nearby islands
FIGURE 10. Microbinthus elegans sp. nov. morphology. Head dorsum in dorsal view (A); face in anterior view (B); head, pronotum and FWs in lateral view (C); male FW in dorsal view (D). Scale bar = 1 mm.
FIGURE 9 in New taxa of the subtribe Lebinthina (Orthoptera: Gryllidae: Eneopterinae Lebinthini) from New Guinea and nearby islands
FIGURE 9. Microbinthus elegans sp. nov. male holotype in dorsal (A) and lateral (B) views. Scale bar = 10 mm.
FIGURE 7 in New taxa of the subtribe Lebinthina (Orthoptera: Gryllidae: Eneopterinae Lebinthini) from New Guinea and nearby islands
FIGURE 7. Macrobinthus mamai sp. nov. male holotype in dorsal (A) and lateral (B) views. Scale bar = 10 mm.
FIGURE 6 in New taxa of the subtribe Lebinthina (Orthoptera: Gryllidae: Eneopterinae Lebinthini) from New Guinea and nearby islands
FIGURE 6. Macrobinthus genitalia. Macrobinthus kei sp. nov. male genitalia in dorsal (A), ventral (B) and lateral (C) views, and female genitalia in ventral view (D); Macrobinthus mamai sp. nov. male genitalia in dorsal (E), ventral (F) and lateral (G) views. Scale bars = 1 mm (all except D); 0.5 mm (D).
FIGURE 4 in New taxa of the subtribe Lebinthina (Orthoptera: Gryllidae: Eneopterinae Lebinthini) from New Guinea and nearby islands
FIGURE 4. Macrobinthus kei sp. nov. habitus. Male habitus in dorsal (A) and lateral (B) views; female habitus in dorsal (C) and lateral (D) views. Scale bar = 10 mm.
FIGURE 3 in New taxa of the subtribe Lebinthina (Orthoptera: Gryllidae: Eneopterinae Lebinthini) from New Guinea and nearby islands
FIGURE 3. Gnominthus milneus sp. nov. male genitalia in dorsal (A), ventral (B) and lateral (C) views; female genitalia in ventral view (D). Scale bar = 1 mm.
FIGURE 2 in New taxa of the subtribe Lebinthina (Orthoptera: Gryllidae: Eneopterinae Lebinthini) from New Guinea and nearby islands
FIGURE 2. Gnominthus milneus sp. nov. morphology. Head dorsum in dorsal view (A); face in anterior view (B); head, pronotum and FWs in lateral view (C); male FW in dorsal view (D); female FW in dorsal view (E). Scale bar = 1 mm (A–C); 0.5 mm (D, E).
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.