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.
500
datasets available to search
ShareScore release 0.9.0
Dataset results
500 results for “Marsupialia”
Fig. 3 in First Crania and Assessment of Species Boundaries in Nimbadon (Marsupialia: Diprotodontidae) from the Middle Miocene of Australia
Fig. 3. Nimbadon lavarackorum cranium (QM F50470) in: A, dorsal; B, ventral; and C, lateral views.
Data from: Cranial remains of Ramsayia magna from the Late Pleistocene of Australia and the evolution of gigantism in wombats (Vombatidae; Marsupialia)
Open the record for dataset details and reuse information.
FIGURE 4 in A morphological and molecular phylogenetic analysis of relationships between genera of the nematode sub-family Cloacininae (Stossich) (Strongyloidea Chabertiidae) parasitic in kangaroos, wallabies and rat-kangaroos (Marsupialia Macropodoidea)
FIGURE 4. Morphological phylogenetic analysis of the genera of the Cloacininae. Numerals represent bootstrap values.
FIGURE 5 in A morphological and molecular phylogenetic analysis of relationships between genera of the nematode sub-family Cloacininae (Stossich) (Strongyloidea Chabertiidae) parasitic in kangaroos, wallabies and rat-kangaroos (Marsupialia Macropodoidea)
FIGURE 5. Molecular phylogenetic analysis of available representatives of the Cloacininae based on ITS+ sequence data. GenBank registration numbers for sequence data follow each taxon. Numerals represent posterior probabilities.
FIGURE 1 in A morphological and molecular phylogenetic analysis of relationships between genera of the nematode sub-family Cloacininae (Stossich) (Strongyloidea Chabertiidae) parasitic in kangaroos, wallabies and rat-kangaroos (Marsupialia Macropodoidea)
FIGURE 1. Buccal capsules of representative genera of the Cloacininae (lateral views). A. Rugopharynx rosemariae Beveridge & Presidente (Pharyngostrongylinea); B. Cyclostrongylus kartana (Mawson) (Pharyngostrongylinea); C. Thallostonema lichtenfelsi Beveridge (Zoniolaiminea); D. Tethystrongylus coronatus Beveridge (Zoniolaiminea); E. Parazoniolaimus collaris Johnston & Mawson (Labiostrongylinea); F. Labiostrongylus labiostrongylus Yorke & Maplestone (Labiostrongylinea); G. Rugostrongylus labiatus (Davey & Wood) (Pharyngostrongylinea); H. Pharyngostrongylus kappa Mawson (Pharyngostrongylinea); I. Macroponema comani Mawson (Macropostrongylinea); J. Popovastrongylus pearsoni (Johnston & Mawson) (Coronostrongylinea); K. Popovastrongylus macropodis Beveridge (Coronostrongylinea); L. Alocostoma clelandi (Johnston & Mawson) (Macropostrongylinea); M. Cloacina hydriformis Johnston & Mawson (Cloacininea); N. Monilonema ochetocephalum Beveridge (Macropostrongylinea); O. Wallabinema thylogale Beveridge (Zoniolaiminea); P. Woodwardostrongylus petrogale Beveridge (Pharyngostrongylinea); Q. Dorcopsinema simile Smales (Labiostrongylinea); R. Zoniolaimus mawsonae Beveridge (Zoniolaiminea); S. Coronostrongylus coronatus Johnston & Mawson (Coronostrongylinea); T. Papillostrongylus labiatus Johnston & Mawson (Coronostrongylinea). Figures redrawn from: Beveridge, 1982 (A, B, G, H); Beveridge, 1983 (C, D, O, R), Beveridge, 1986a (tribe Macropostrongylinea) (I); Beveridge, 1986b (Popovastrongylus) (J, K); Beveridge, 1986c (Alocostoma) (L); Beveridge, 1986d (Molinonema) (N); Beveridge, 1998a (P); Beveridge, 1998b (M); Beveridge, 2002 (S); Chilton et al., 2002 (T); Huby-Chilton et al., 2002 (R); Smales, 2002 (E), 1994 (F), 1999 (Q).
FIGURE 3 in A morphological and molecular phylogenetic analysis of relationships between genera of the nematode sub-family Cloacininae (Stossich) (Strongyloidea Chabertiidae) parasitic in kangaroos, wallabies and rat-kangaroos (Marsupialia Macropodoidea)
FIGURE 3. Oesophagi of representative genera of the Cloacininae. A. Cloacina metis Beveridge; B. Coronostrongylus coronatus Johnston & Mawson; C. Wallabinema thylogale Beveridge; D. Spirostrongylus spirostrongylus Yorke & Maplestone; E. Pharyngostrongylus kappa Mawson; F. Zoniolaimus mawsonae Beveridge; G. Thallostonema lichtenfelsi Beveridge; H. Labiomultiplex eugenii (Johnston & Mawson) (Labiostrongylinea). Figures redrawn from Beveridge, 1982 (D, E); Beveridge, 1983 (C, G); Beveridge, 1998a (A); Beveridge, 2002 (B); Huby-Chilton et al., 2002 (F); Smales, 1994 (H).
FIGURE 2 in A morphological and molecular phylogenetic analysis of relationships between genera of the nematode sub-family Cloacininae (Stossich) (Strongyloidea Chabertiidae) parasitic in kangaroos, wallabies and rat-kangaroos (Marsupialia Macropodoidea)
FIGURE 2. Features of the oral region of representative genera of the Cloacininae. A. Anterior extremity of buccal capsules of Thallostonema lichtenfelsi Beveridge (Zoniolaiminea); B. Monilonema ochetocephalum Beveridge (Macropostrongylinea); C. Alocostoma propinquum Beveridge (Macropostrongylinea); D. Macroponema comani Mawson (Macropostrongylinea); E. Rugopharynx rosemariae Beveridge & Presidente (Pharyngostrongylinea); Apical views of the mouth opening: F. Cyclostrongylus kartana (Mawson) (Pharyngostrongylinea); G. Woodwardostrongylus petrogale Beveridge (Pharyngostrongylinea); H. Papillostrongylus labiatus Johnston & Mawson, 1939 (Coronostrongylinea); I. Zoniolaimus mawsonae Beveridge (Zoniolaiminea); J. Wallabinema thylogale Beveridge (Zoniolaiminea); K. Pharyngostrongylus kappa Mawson (Pharyngostrongylinea); L. Popovastrongylus pearsoni (Johnston & Mawson) (Coronostrongylinea); M. Dorcopsistrongylus ewini Purwaningsih & Smales (Pharyngostrongylinea); N. Tethystrongylus coronatus Beveridge (Zoniolaiminea); O. Thallostonema lichtenfelsi Beveridge (Zoniolaiminea); P. Labiostrongylus labiostrongylus Yorke & Maplestone (Labiostrongylinea); Q. Dorcopsinema simile Smales (Labiostrongylinea). Figures redrawn from Beveridge, 1982 (E, F, K); Beveridge, 1983 (A, J, N, O); Beveridge, 1986a (D, H); Beveridge, 1986b (L); Beveridge, 1986c (C); Beveridge, 1986d (B); Beveridge, 1998a (G); Huby-Chilton et al., 2002 (I); Purwaningsih & Smales, 2010 (M); Smales, 1994 (P); Smales, 1999 (Q).
Data from: New DNA data from a Transthyretin nuclear intron suggest an Oligocene to Miocene diversification of living South America opossums (Marsupialia: Didelphidae).
Phylogenetic relationships of 19 species of didelphid marsupials were studied using two nuclear markers, the non-coding transthyretin intron 1 (TTR) and the coding interphotoreceptor retinoid binding protein exon 1 (IRBP), and two mitochondrial genes, the protein-coding cytochrome b (cyt-b) and the structural 12S ribosomal DNA (12S rDNA). Evolutionary dynamics of these four markers were compared to each other, revealing the appropriate properties presented by TTR intron 1 together with its well supported and resolved phylogenetic signal. Nuclear markers supported the monophyly of medium and large-sized opossums Metachirus+(Chironectes, Lutreolina, Didelphis, Philander), and the paraphyly of mouse-sized opossums, with the genera Gracilinanus, Thylamys, and Marmosops as a sister group to medium and large-sized didelphids. Conflicting branching patterns between mitochondrial and nuclear data involved the phylogenetic position of Marmosa-Micoureus-Monodelphis relative to other mouse-sized opossums. Nuclear phylogenetic inferences among genera were confirmed by the presence of synapomorphic indels observed in TTR intron 1. A Bayesian relaxed molecular clock dating of didelphid evolution using nuclear markers estimated their origin in the Middle Eocene (39.8 million years ago), with subsequent diversification during the Oligocene (Deseadan) and Miocene.
FIGURE 17 in A new dasyurid marsupial from eastern Queensland, Australia: the Buff-footed Antechinus, Antechinus mysticus sp. nov. (Marsupialia: Dasyuridae)
FIGURE 17. Scatterplot of inter orbital constriction (IOW) versus anterior palatal vacuity length (APV) measures for male Antechinus mysticus (closed circles) and Antechinus swainsonii (closed squares).
FIGURE 22 in A new dasyurid marsupial from eastern Queensland, Australia: the Buff-footed Antechinus, Antechinus mysticus sp. nov. (Marsupialia: Dasyuridae)
FIGURE 22. Scatterplot of canonical variates scores (roots 1 and 3) for males of five antechinus species: A. mysticus (closed circles), A. flavipes flavipes (open circles), A. subtropicus (closed triangles), A. stuartii (open triangles), A. swainsonii (closed squares).
FIGURE 21 in A new dasyurid marsupial from eastern Queensland, Australia: the Buff-footed Antechinus, Antechinus mysticus sp. nov. (Marsupialia: Dasyuridae)
FIGURE 21. Scatterplot of canonical variates scores (roots 1 and 2) for males of five antechinus species: A. mysticus (closed circles), A. flavipes flavipes (open circles), A. subtropicus (closed triangles), A. stuartii (open triangles), A. swainsonii (closed
FIGURE 6 in A new dasyurid marsupial from eastern Queensland, Australia: the Buff-footed Antechinus, Antechinus mysticus sp. nov. (Marsupialia: Dasyuridae)
FIGURE 6. Map of known distribution site records of A. mysticus. Grey squares denote locations of major cities; black circles denote unique site records of A. mysticus.
FIGURE 5. A in A new dasyurid marsupial from eastern Queensland, Australia: the Buff-footed Antechinus, Antechinus mysticus sp. nov. (Marsupialia: Dasyuridae)
FIGURE 5. A. mysticus holotype specimen stereo microscope photographs of skull and dentary (a–e) and SEM photographs of lower molar tooth row of right dentary from labial view (f) with entoconids arrowed, lower molar tooth row of left dentary from above (g) and upper molar tooth row from below (h).
FIGURE 3 in A new dasyurid marsupial from eastern Queensland, Australia: the Buff-footed Antechinus, Antechinus mysticus sp. nov. (Marsupialia: Dasyuridae)
FIGURE 3. Bayesian phylogeny of the Genus Antechinus based on concatenated mitochondrial (Cytb) and nuclear (IRBP) gene sequences.
FIGURE 16 in A new dasyurid marsupial from eastern Queensland, Australia: the Buff-footed Antechinus, Antechinus mysticus sp. nov. (Marsupialia: Dasyuridae)
FIGURE 16. Scatterplot of posterior palatal vacuity length (PPV) versus inter palatal vacuity distance (IPV) measures for female A. mysticus (closed circles) and A. subtropicus (closed triangles).
FIGURE 5. A in A new dasyurid marsupial from eastern Queensland, Australia: the Buff-footed Antechinus, Antechinus mysticus sp. nov. (Marsupialia: Dasyuridae)
FIGURE 5. A. mysticus holotype specimen stereo microscope photographs of skull and dentary (a-e) and SEM photographs of lower molar tooth row of right dentary from labial view (f) with entoconids arrowed, lower molar tooth row of left dentary from above (g) and upper molar tooth row from below (h).
FIGURE 1. A in A new dasyurid marsupial from eastern Queensland, Australia: the Buff-footed Antechinus, Antechinus mysticus sp. nov. (Marsupialia: Dasyuridae)
FIGURE 1. A guide to measurement of variables: A. mysticus holotype skull and dentary (a–h), and external body measures (i, j).
FIGURE 1. A in A new dasyurid marsupial from eastern Queensland, Australia: the Buff-footed Antechinus, Antechinus mysticus sp. nov. (Marsupialia: Dasyuridae)
FIGURE 1. A guide to measurement of variables: A. mysticus holotype skull and dentary (a–h), and external body measures (i, j).
FIGURE 15 in A new dasyurid marsupial from eastern Queensland, Australia: the Buff-footed Antechinus, Antechinus mysticus sp. nov. (Marsupialia: Dasyuridae)
FIGURE 15. Scatterplot of posterior palatal vacuity length (PPV) versus inter palatal vacuity distance (IPV) measures for male A. mysticus (closed circles) and A. subtropicus (closed triangles).
FIGURE 20 in A new dasyurid marsupial from eastern Queensland, Australia: the Buff-footed Antechinus, Antechinus mysticus sp. nov. (Marsupialia: Dasyuridae)
FIGURE 20. Scatterplot of principal component scores (roots 1 and 2) for genetically validated females of four antechinus species: A. mysticus (closed circles), A. flavipes flavipes (open circles), A. subtropicus (closed triangles), A. stuartii (open triangles).
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.