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2,775 results for “G×E”
F I G U R E 1 in Larval stages of the Antarctic dragonfish Akarotaxis nudiceps (Waite, 1916), with comments on the larvae of the morphologically similar species Prionodraco evansii Regan 1914 (Notothenioidei: Bathydraconidae)
F I G U R E 1 Map of a portion of the western Antarctic Peninsula showing the capture sites of the 14 larval specimens of Akarotaxis nudiceps examined herein with depth contours in meters. The inset shows Antarctica with the grey box indicating the map region. The specimens were collected by the Palmer Antarctica Long-Term Ecological Research (Palmer LTER) programme during austral summer (January–February). The corresponding VIMS catalogue numbers to each of the shortened labels are given in Table 1
F I G U R E 5 Phylogenetic study using the 5S in Genetic characteristics and growth patterns of the hybrid grouper derived from the hybridization of Epinephelus fuscoguttatus (female) Epinephelus polyphekadion (male)
F I G U R E 5 Phylogenetic study using the 5S rDNA sequences from Epinephelus fuscoguttatus, Epinephelus polyphekadion and the hybrid grouper
F I G U R E 6 in Genetic characteristics and growth patterns of the hybrid grouper derived from the hybridization of Epinephelus fuscoguttatus (female) Epinephelus polyphekadion (male)
F I G U R E 6 Proportion of the total length and head length of the hybrid grouper, shown as percentages of body length
F I G U R E 2 in Larval stages of the Antarctic dragonfish Akarotaxis nudiceps (Waite, 1916), with comments on the larvae of the morphologically similar species Prionodraco evansii Regan 1914 (Notothenioidei: Bathydraconidae)
F I G U R E 2 Development of Akarotaxis nudiceps in left lateral view. (a) VIMS 43571, 10.8 mm total length (LT), preflexion. (b) VIMS 41368, 14.9 mm LT, postflexion. (c) VIMS 22690, 19.7 mm LT, postflexion. (d) VIMS 22788a, 22.7 mm LT, postflexion
F I G U R E 8 in Riverscape genetics of the orangethroat darter complex
F I G U R E 8 FST isolation by distance plots. Segregation of allele frequencies is shown between pairs of basins v. geographic (river/land) distance. (a, b). All basin pairs in this study with comparisons within regions shown in black and between regions in gray for overland distance (a) and river distance (b). (c, d). Within region site comparisons, grouped by regions for overland distance (c) and river distance (d). The Tennessee River and Great Lakes regions were omitted because one basin was sampled in each region.
F I G U R E 5 in Effects of dietary hydrolysate supplementation on growth, body composition, hematological responses, and liver histology of juvenile giant trevally (Caranx ignobilis Forsskal, 1775)
F I G U R E 5 Liver microscopy of giant trevally fed fish protein hydrolysate (FPH) for 8 weeks (scale bar = 50 μm, 400 magnification). Stained with hematoxylin and eosin.
F I G U R E 5 in Turcinoemacheilus ekmekciae, a new dwarf loach from upper Tigris and Euphrates (Teleostei: Nemacheilidae)
F I G U R E 5 Sampling sites where Turcinoemacheilus specimens found in upper Tigris-Euphrates: Habitat of T. kosswigi, (a) Eziki stream: Habitats of T. minimus, (b) Göksu River, (c) Kahta stream: Habitats of T. ekmekciae, (d) Çıratan stream, (e) Destumi stream, (f) Nerduş stream, (g) Sason stream, (h) Kesan stream, and (i) Kaynarca stream.
F I G U R E 4 in Turcinoemacheilus ekmekciae, a new dwarf loach from upper Tigris and Euphrates (Teleostei: Nemacheilidae)
F I G U R E 4 Turcinoemacheilus ekmekciae, paratypes; FFR 3616, from the top, 45 mm standard length (SL); 39 mm SL, Nerduş stream: FFR 3618, 30 mm SL; 30 mm SL; Sason stream.
F I G U R E 1 in Riverscape genetics of the orangethroat darter complex
F I G U R E 1 Approximate collection sites of orangethroat species complex specimens used in this study. Colors indicate species. Numbers and region names correspond to USGS HUC2 watershed designations. Inset shows regional boundary between Upper Mississippi River and Ohio River regions.
F I G U R E 2 in Riverscape genetics of the orangethroat darter complex
F I G U R E 2 Results from STRUCTURE for (a) K = 3 and (b) K = 8. Each color corresponds to a distinct genetic cluster, and each bar represents an individual's assigned ancestry to each cluster. Names above chart correspond to river basin (HUC6). EB—E. burri, EP—E. pulchellum, ES— E. spectabile, and EU—E. uniporum. Glaciated and unglaciated correspond to areas that were/were not covered in ice during the last glacial maximum.
F I G U R E 4 Assigned ancestry plot using AIC criteria determining optimal K in Riverscape genetics of the orangethroat darter complex
F I G U R E 4 Assigned ancestry plot using AIC criteria determining optimal K of 5. Each color corresponds to a distinct genetic cluster, and each bar represents an individual's assigned ancestry to each cluster. Names above chart correspond to river basin (HUC6). EB—E. burri, EP— E. pulchellum, ES—E. spectabile, and EU—E. uniporum. Glaciated and unglaciated correspond to areas that were/were not covered in ice during the last glacial maximum.
F I G U R E 6 in Riverscape genetics of the orangethroat darter complex
F I G U R E 6 Principle component analysis (PCA) of Ceasia. Name indicates the basin where samples were collected.
F I G U R E 5 in Riverscape genetics of the orangethroat darter complex
F I G U R E 5 Cluster assignments at sampling locations under the AIC method and a K=5. Pie graphs represent proportion of individuals at the site assigned to a given cluster. Individuals with less than 85% assigned ancestry in either cluster are shown in gray.
F I G U R E 3 in Genetic characteristics and growth patterns of the hybrid grouper derived from the hybridization of Epinephelus fuscoguttatus (female) Epinephelus polyphekadion (male)
F I G U R E 3 Representative sequences of 5S rDNA. (a) Complete 5S coding regions from Epinephelus fuscoguttatus, Epinephelus polyphekadion and the hybrid grouper. Internal control regions of the coding region are shaded. (b) Comparison of the nontranscribed spacer (NTS) sequences from Epinephelus fuscoguttatus, Epinephelus polyphekadion and the hybrid grouper. The NTS upstream TATA elements are shaded and asterisks mark variable sites in the NTS
F I G U R E 1 in Genetic characteristics and growth patterns of the hybrid grouper derived from the hybridization of Epinephelus fuscoguttatus (female) Epinephelus polyphekadion (male)
F I G U R E 1 DNA content of (a) Epinephelus fuscoguttatus, (b) Epinephelus polyphekadion and (c) the hybrid grouper
F I G U R E 2 in Genetic characteristics and growth patterns of the hybrid grouper derived from the hybridization of Epinephelus fuscoguttatus (female) Epinephelus polyphekadion (male)
F I G U R E 2 Chromosome spreads at metaphase in Epinephelus fuscoguttatus, Epinephelus polyphekadion and the hybrid grouper. (a) The 48 chromosomes of Epinephelus fuscoguttatus. (b) The 48 chromosomes of Epinephelus polyphekadion. (c) The 48 chromosomes of the hybrid grouper
F I G U R E 1 3 in Analysis of pigment cell composition, pigment content, tyrosinase content and activity of three kinds of loaches Misgurnus anguillicaudatus from Poyang Lake
F I G U R E 1 3 Tyrosinase content of three kinds of loaches (*means P <0.05, **means P <0.01). () BBL; () SBL; () NBL; () dorsal skin; () abdominal skin
F I G U R E 3 in Analysis of pigment cell composition, pigment content, tyrosinase content and activity of three kinds of loaches Misgurnus anguillicaudatus from Poyang Lake
F I G U R E 3 The distribution of skin pigment cells in abdomen of three kinds of loaches. (a) The abdominal epidermis of big blackspot loaches (BBL), (b) the abdominal epidermis of small blackspot loaches (SBL) and (c) the abdominal epidermis of non-blackspot loaches (NBL). The blue arrow refers to xanthophores. The magnification (a–c) is 80
F I G U R E 3 A in A low-density single nucleotide polymorphism panel for brown trout (Salmo trutta L.) suitable for exploring genetic diversity at a range of spatial scales
F I G U R E 3 A priori discriminant analysis of principal components (DAPC) plot of Camel trout. Each point represents the genotype of an individual fish, with centroids for each site labelled. Discriminant function 1 (DF1) is represented by the x axis, and discriminant function 2 (DF2) by the y-axis
F I G U R E 1 in A low-density single nucleotide polymorphism panel for brown trout (Salmo trutta L.) suitable for exploring genetic diversity at a range of spatial scales
F I G U R E 1 Map showing the location of rivers sampled for brown trout within the UK, France and Ireland. The left panel shows the rivers used to assess the performance of the single nucleotide polymorphisms (SNP) panel at characterising genetic parameters within and outside the target region. The top right (blue) panel shows the locations of the four sampled rivers in Mount's Bay, Cornwall (Case Study 1). The bottom right (red) panel shows the location of the sample locations in the Camel catchment (Case Study 2). The red box within the bottom right panel gives the position of the impassable De Lank quarry site
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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.