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Figure 2 in Reproductive isolating barriers between colour-differentiated populations of an African annual killifish, Nothobranchius korthausae (Cyprinodontiformes)
Figure 2. The number of eggs, fertilization rate and hatching success of pairings between sympatric and allopatric populations during the no-choice experiment. Means with SE (boxes) and confidence intervals (whiskers) for data on virgin and nonvirgin fish are indicated.
Figure 1 in Reproductive isolating barriers between colour-differentiated populations of an African annual killifish, Nothobranchius korthausae (Cyprinodontiformes)
Figure 1. The rates of male courtship towards females and female response (per 30 min) expressed for each male ¥ female combination and virgin and nonvirgin fish separately. Means with 1SE are indicated.
Figure 3 in Reproductive isolating barriers between colour-differentiated populations of an African annual killifish, Nothobranchius korthausae (Cyprinodontiformes)
Figure 3. The results of the hybrid performance experiment, with number of eggs (A) and hatching success (B) standardized within each experimental group shown. Means with 1SE (boxes) and confidence intervals (whiskers) are indicated for each experimental combination (mm, offspring of Mafia male and Mafia female; kk, offspring of Kwachepa male and Kwachepa female; mk: Mafia male, Kwachepa female; km: Kwachepa male, Mafia female). Sample size for the number of eggs is N = 8 replicates for each combination, sample size for hatching success is smaller (because only replicates with more than 5 eggs were analysed) and the exact N is given above each combination.
Figure 14 in From the mud to the tree: phylogeny of Austrolebias killifishes, new generic structure and description of a new species (Cyprinodontiformes: Rivulidae)
Figure 14. Historical climatic data from Puerto Iguazú Misiones (approximately −25.612, −54.573), based on data from Servicio Meteorológico Nacional (2021). Light green arrows indicate months when we found juvenile fish and the turquoise arrow indicates when we found adult fish.
Figure 8 in From the mud to the tree: phylogeny of Austrolebias killifishes, new generic structure and description of a new species (Cyprinodontiformes: Rivulidae)
Figure 8. Ontogenetic changes in colour patterns in Argolebias guarani males. A, juvenile ~1 cm standard length (SL). B, juvenile ~1.5 cm SL. C, juvenile ~2 cm SL. D, young adult ~2.5 cm SL. E, adult individual ~5 cm SL.
Figure 15 in From the mud to the tree: phylogeny of Austrolebias killifishes, new generic structure and description of a new species (Cyprinodontiformes: Rivulidae)
Figure 15. Scanning electron microscopy images of egg surface of Argolebias guarani. A, general view. B, C, detail of chorion surface. D, micropyle.
Figure 7 in From the mud to the tree: phylogeny of Austrolebias killifishes, new generic structure and description of a new species (Cyprinodontiformes: Rivulidae)
Figure 7. Colour pattern variability of Argolebias guarani females. A, immediately after capture. B–D, in aquarium.
Figure 5 in From the mud to the tree: phylogeny of Austrolebias killifishes, new generic structure and description of a new species (Cyprinodontiformes: Rivulidae)
Figure 5. Argolebias guarani detail of diagnostic characters. A, orange-yellowish background coloration on the base of unpaired fins and yellowish belly in juveniles and young adults. B, scattered small dark brown to grey irregular blotches on the laterodorsal surface of the head and anterior portion of the trunk. C, abundant and relatively big sub-square irregular iridescent turquoise to light blue blotches on unpaired fins, evenly distributed, with those on the distal portion elongated and merging; trunk and tail of mature males with anterocentral portion of scales iridescent turquoise with grey borders, generating a reticulated pattern; and thin border of scales below dorsal fin in dorsal portion of trunk iridescent turquoise.
Figure 3 in From the mud to the tree: phylogeny of Austrolebias killifishes, new generic structure and description of a new species (Cyprinodontiformes: Rivulidae)
Figure 3. Argolebias diagnostic characters: black blotch on most anterior region of dorsal fin (A, B); fused iridescent marks on distal portion of dorsal fin (C, D); a wide dark grey to black border on most scales on ventral half portion of flank, above anal fin, in mature dominant males (not considering bands; E, F); and iridescent spots on medial distal portion of pectoral fin (G, H).
Figure 6 in From the mud to the tree: phylogeny of Austrolebias killifishes, new generic structure and description of a new species (Cyprinodontiformes: Rivulidae)
Figure 6. Colour pattern variability of Argolebias guarani males. A, male immediately after capture. B–D, in aquarium.
Figure 4. Argolebias guarani IBIGEO-I 473, 51.0 in From the mud to the tree: phylogeny of Austrolebias killifishes, new generic structure and description of a new species (Cyprinodontiformes: Rivulidae)
Figure 4. Argolebias guarani IBIGEO-I 473, 51.0 mm standard length, male, holotype, in left lateral view. A, picture of live animal taken in aquarium. B, holotype preserved in alcohol after fixation in formaldehyde.
Figure 13 in From the mud to the tree: phylogeny of Austrolebias killifishes, new generic structure and description of a new species (Cyprinodontiformes: Rivulidae)
Figure 13. Type locality of Argolebias guarani. A, B, November 2017. C, D, November 2018. E, F, June 2019.
Figure 9 in From the mud to the tree: phylogeny of Austrolebias killifishes, new generic structure and description of a new species (Cyprinodontiformes: Rivulidae)
Figure 9. Ontogenetic changes in colour patterns in Argolebias guarani females. A, juvenile ~1 cm standard length (SL). B, young adult ~1.5 cm SL. C, adult individual ~2.5 cm SL.
Figure 1 in From the mud to the tree: phylogeny of Austrolebias killifishes, new generic structure and description of a new species (Cyprinodontiformes: Rivulidae)
Figure 1. Phylogenetic relationships of the Austrolebias genus group based on morphological characters (191) and molecular markers [four mitochondrial markers (12s, 16s, cytb and cox1) and six nuclear markers (glyt, rag1, enc1, rh1, sh3px3 and 28s)]. Analysis was performed under implied weighting (K = 3). Numbers on nodes represent symmetric resampling (GC values). The colours of terminal taxa represent data analysed for the taxon as follows: black, morphology and two or more molecular markers; green, only morphology; blue, two or more molecular markers; orange, only one molecular marker. *Type species of the genus.
Figure 12 in From the mud to the tree: phylogeny of Austrolebias killifishes, new generic structure and description of a new species (Cyprinodontiformes: Rivulidae)
Figure 12. Map showing the known distribution of the Argolebias genus as defined herein. Stars represent type localities and circles other records. Each symbol can represent more than one record. Colours of symbols are coded as follows: red, Argolebias guarani; yellow, Argolebias nigripinnis; and orange, Argolebias paranaensis. Based on the studies by Calviño (2007), Calviño et al. (2016), Costa (2006a), Volcan et al. (2017) and this study.
FIGURE 2. Aphanius irregularis, FFR 08654 in Aphanius irregularis, a new killifish from south-western Anatolia (Cyprinodontiformes: Aphaniidae)
FIGURE 2. Aphanius irregularis, FFR 08654, left side from top: males 25, 24 and 25; right side from top: females, 40, 32 and 30 mm SL; mm SL; Turkey: Kaklık spring.
FIGURE 7 in Aphanius irregularis, a new killifish from south-western Anatolia (Cyprinodontiformes: Aphaniidae)
FIGURE 7. Aphanius maeandricus, from the top: FSJF, female, 40 mm SL, male, 30 mm SL; Turkey: Işıklı spring.
FIGURE 6 in Aphanius irregularis, a new killifish from south-western Anatolia (Cyprinodontiformes: Aphaniidae)
FIGURE 6. Kaklık spring: a, outflow of the semi-artificial pond entering the cave and the travertine formations; b, natural pond located just at the entrance of the cave.
FIGURE 4 in Aphanius irregularis, a new killifish from south-western Anatolia (Cyprinodontiformes: Aphaniidae)
FIGURE 4. Aphanius irregularis, not preserved, captive individuals; from the top: female lacking pelvic fin; male, both about 30 mm SL); Turkey: Kaklık spring.
FIGURE 3 in Aphanius irregularis, a new killifish from south-western Anatolia (Cyprinodontiformes: Aphaniidae)
FIGURE 3. Aphanius irregularis, from the top: FFR 08654, female, paratype, 52 mm SL; FFR 08653, male, holotype, 35 mm SL; Turkey: Kaklık spring.
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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)
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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.