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119 results for “Sparidae”
FIG. 2 in Sur deux espèces de Copépodes Lernaeopodidae (Siphonostomatoida) parasites du marbré Lithognathus mormyrus (Linnaeus, 1758) (Pisces, Sparidae)
FIG. 2. — Partie antérieure du tronc d'un paratype de Sparidicola lithognathi (Kensley & Grindley, 1973), d'Afrique du Sud montrant les deux papilles latérales (flèches). Échelle: 200 µm.
FIG. 3. — Clavellotis briani n in Sur deux espèces de Copépodes Lernaeopodidae (Siphonostomatoida) parasites du marbré Lithognathus mormyrus (Linnaeus, 1758) (Pisces, Sparidae)
FIG. 3. — Clavellotis briani n. sp. femelle; A, habitus, vue dorsale; B, habitus, vue latérale; C, habitus, vue ventrale. Les proéminences caractéristiques du tronc sont indiquées par les flèches. Échelle: 1 mm.
FIG. 4. — Lamellodiscus sigillatus n in Lamellodiscus (Plathelminthes, Monogenea, Diplectanidae) nouveaux parasites branchiaux des poissons marins du genre Pagrus (Teleostei, Sparidae)
FIG. 4. — Lamellodiscus sigillatus n. sp.; A, hapteur en vue ventrale; B, barre transversale latérale dorsale; C, barre transversale médiane ventrale; D, gripus ventral; E, gripus dorsal; F, appareil copulateur mâle. Échelle: A, 100 µm; B-F, 50 µm.
FIG. 3. — Lamellodiscus sarculus n in Lamellodiscus (Plathelminthes, Monogenea, Diplectanidae) nouveaux parasites branchiaux des poissons marins du genre Pagrus (Teleostei, Sparidae)
FIG. 3. — Lamellodiscus sarculus n. sp., hapteur en vue ventrale montrant la disposition des uncinili et la position des glandes postérieures. Abréviations: I-VII, numéro des uncinuli. Échelle: 100 µm.
FIG. 5. — Lamellodiscus rastellus n in Lamellodiscus (Plathelminthes, Monogenea, Diplectanidae) nouveaux parasites branchiaux des poissons marins du genre Pagrus (Teleostei, Sparidae)
FIG. 5. — Lamellodiscus rastellus n. sp.; A, barre transversale latérale dorsale; B, barre transversale médiane ventrale; C, gripus dorsal; D, gripus ventral; E, appareil copulateur mâle. Échelle: 50 µm.
FIG. 2. — Lamellodiscus sarculus n in Lamellodiscus (Plathelminthes, Monogenea, Diplectanidae) nouveaux parasites branchiaux des poissons marins du genre Pagrus (Teleostei, Sparidae)
FIG. 2. — Lamellodiscus sarculus n. sp.; A, animal in toto vue ventrale; B, barre transversale latérale dorsale; C, barre transversale médiane ventrale; D, gripus ventral; E, gripus dorsal; F, appareil copulateur mâle. Abréviations: ac, appareil copulateur mâle; def, déférent; gpl, glande postérieure latérale; gpm, glande postérieure médiane; oot, ootype; ov, ovaire; ph, pharynx; ps, pseudospermatophore; rpr, réservoir prostatique; rs, réceptacle séminal; test, testicule; vg, vagin; vit, vitellogènes; vs, vésicule séminale. Échelle: A, 200 µm; B-F, 50 µm.
FIG. 1 in Lamellodiscus (Plathelminthes, Monogenea, Diplectanidae) nouveaux parasites branchiaux des poissons marins du genre Pagrus (Teleostei, Sparidae)
FIG. 1. — Mensurations et nomenclature utilisées pour l'étude des Lamellodiscus; A, pièces sclérifiées du hapteur; B, mensurations du gripus dorsal; C, mensurations du gripus ventral; D, pièces copulatrices du type « lyre »; E, lamellodisque du groupe « ignoratus »; F, lamellodisque du groupe « elegans ». Abréviations: a, axial; l, latéral; Li, longueur de la barre transversale dorsale; Lm, longueur de la barre transversale ventrale; x, longueur.
16S rRNA sequences from Mediterranean Sparidae gut microbiome
<p><span>Animals have been developing key associations with micro-organisms through evolutionary processes and ecological diversification. Hence, in some host clades, phylogenetic distance between hosts is correlated to dissimilarity in microbiomes, a pattern called phylosymbiosis. Teleost fishes, despite being the most diverse and ancient group of vertebrate, have received little attention from the microbiome perspective and our understanding of its determinants is currently limited. In this study, we assessed the gut microbiome of 12 co-occurring species of teleost representing a large breadth of ecological diversity and originating from a single family (<i>i.e.</i> the Sparidae). We tested how host evolutionary history, diet composition and morphological traits are related to fish gut microbiome. Despite fish species having different microbiomes, there is no phylosymbiosis signal in this fish family, but gut length and diet had a strong influence on the microbiome. We revealed that the only species with a specialized herbivorous diet, <i>Sarpa salpa</i> had a 3.3 times longer gut than carnivorous species and such a long gut favor the presence of anaerobic bacteria typical of herbivorous gut microbiomes. Hence, dietary uniqueness is paired with both unique gut anatomy and unique microbiome.</span></p>
Figure 8 in Gonadal development and fecundity of bogue Boops boops (Linnaeus, 1758) (Sparidae) on the central Algerian coast
Figure 8. Sex frequency distribution, based on B. boops size.
Figure 2 in Gonadal development and fecundity of bogue Boops boops (Linnaeus, 1758) (Sparidae) on the central Algerian coast
Figure 2. Monthly change of the sexual maturity stages (%) in B. boops females.
Figure 1 in Gonadal development and fecundity of bogue Boops boops (Linnaeus, 1758) (Sparidae) on the central Algerian coast
Figure 1. Location of the study.
Figure 1 in Ecomorphological patterns and shape indices of otoliths in the Pagellus acarne (Actinopterygii, Sparidae) from the Aegean and Marmara Seas
Figure 1. Sampling sites of Pagellus acarne in the Aegean and Marmara Seas.
Figure 1 in First record and new depth range extension of the curled Picarel, Centracanthus cirrus (Sparidae) from the Sea of Marmara, Turkey
Figure 1. - Location map of capture of Centracanthus cirrus specimen in the Sea of Marmara, Turkey.
Figure 2 in First record and new depth range extension of the curled Picarel, Centracanthus cirrus (Sparidae) from the Sea of Marmara, Turkey
Figure 2. - Centracanthus cirrus caught from Sea of Marmara (Picture: M.L. Artüz).
Supplementary material for the manuscript of G.E. Gus'kov "The first record of adult Boops boops (Perciformes, Sparidae) near the Caucasian coast of the Black sea".
<p>Video and photographs confirming the record of Boops boops (Pisces: Perciformes: Sparidae) near the Caucasian coast of the Black sea (Russian sector)</p>
16S rRNA sequences from Mediterranean Sparidae gut microbiome
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FIGURE 14 in Acanthopagrus datnia (Hamilton, 1822), a senior synonym of Acanthopagrus longispinnis (Valenciennes, 1830) (Perciformes: Sparidae)
FIGURE 14. Species similar to some Acanthopagrus spp.—Sparidentex hasta, A. USNM FIN 34396, 293mm SL, Bahrain; (Photo: J.E. Randall). B. Uncatalogued specimen, ~225 mm SL, Karachi, Pakistan (Photo: H.B. Osmany).
FIGURE 7 in Acanthopagrus datnia (Hamilton, 1822), a senior synonym of Acanthopagrus longispinnis (Valenciennes, 1830) (Perciformes: Sparidae)
FIGURE 7. Acanthopagrus datnia—Molariform teeth, upper jaw (above) and lower jaw (below), at different length ranges: A. CUMSF507.25; B. AMS I.48390-001; C. CUMS-F507.19 (All Photo: M. Eusuf Hasan)
FIGURE 12 in Acanthopagrus datnia (Hamilton, 1822), a senior synonym of Acanthopagrus longispinnis (Valenciennes, 1830) (Perciformes: Sparidae)
FIGURE 12. Day's historical (1865) syntypes of Chrysophrys datnia representing two different species. A. Acanthopagrus datnia. AMS B. 8265, 200 mm SL, Calcutta, Bengal, British India (Photo: D. Kambayashi). B. Acanthopagrus arabicus. AMS B8280, 123 mm SL, Sind, Pakistan. (Photo: D. Kambayashi).
FIGURE 10 in Acanthopagrus datnia (Hamilton, 1822), a senior synonym of Acanthopagrus longispinnis (Valenciennes, 1830) (Perciformes: Sparidae)
FIGURE 10. Acanthopagrus datnia, synonymised specimens— MNHN 5282, Chrysophrys longispinnis of Valenciennes (1830), lectotype (lower, 148 mm SL) and paralectotype (upper, 126 mm SL), Calcutta, Bengal, British India (Photo: MNHN, Paris).
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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.