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18 results for “Seriola”
Age, sex, length (mm), weight (g), and plasma sex steroid concentrations (ng/ml) of greater amberjack Seriola dumerili reared in sea cages during the process of sex differentiation
<p>The dataset contains an excel file with the age, sex, total length (mm), wet weight (g) and plasma concentrations (ng/ml) of the following sex steroids, measured with the use of liquid chromatography/tandem mass spectrometry (LC-MS/MS): adrenosterone (Ad), androstenedione (Δ4), 11-ketotestosterone (11ΚΤ), testosterone (Τ), estradiol (Ε2), progesterone (P4) and 17,20β-dihydroxy-4-pregnen-3-one (17,20βP).</p>
Data for: Mediterranean Sea heatwaves jeopardize greater amberjack's (Seriola dumerili) aquaculture productivity through impacts on the fish microbiota.
<p>The data in this repository with the DOI 10.5281/zenodo.8414745 is licensed under a Creative Commons Attribution 4.0 International License.<br> For more information, see https://creativecommons.org/licenses/by/4.0.</p> <p>Physicochemical, microbiome and growth data for:</p> <p>Paper title: Mediterranean Sea heatwaves jeopardize greater amberjack’s (Seriola dumerili) aquaculture productivity through impacts on the fish microbiota<br> Paper DOI: 10.3389/fmars.2023.1168953 </p> <p>Code repository DOI for reproducing the Figures: https://doi.org/10.1038/s43705-023-00243-7</p> <p>Corresponding Author</p> <p>Name: Pablo Sanchez<br> LEITAT Technological Center, 08225, Terrassa, Spain<br> Address: Carrer Innovació, 2, 08225 Terrassa, Barcelona, Spain<br> Email: psanchez@leitat.org<br> </p> <p> </p>
Timing of puberty in hatchery-produced greater amberjack (Seriola dumerili)
<p>This dataset contains three excel files with age, sex, length (cm), wet weight (g), gonadal weight (g), sex steroids and sperm quality parameters of greater amberjack (Seriola dumerili)</p>
FIGURE 6. Caligus aesopus Wilson, 1921, male. A in 1921 and C. spinosus Yamaguti, 1939 (Copepoda: Siphonostomatoida: Caligidae) parasitic on amberjacks (Seriola spp.) from Korea
FIGURE 6. Caligus aesopus Wilson, 1921, male. A, habitus, dorsal; B, urosome, ventral; C, antenna; D, postantennal process; E, maxillule; F, maxilliped; G, legs 5 and 6. Scale bars: 0.5 mm for A; 0.2 mm for B; 0.05 mm for C–G.
FIGURE 5. Caligus aesopus Wilson, 1921, female. A, leg 1 in 1921 and C. spinosus Yamaguti, 1939 (Copepoda: Siphonostomatoida: Caligidae) parasitic on amberjacks (Seriola spp.) from Korea
FIGURE 5. Caligus aesopus Wilson, 1921, female. A, leg 1; B, distal part of leg 1; C, leg 2; D, leg 3; E, first exopodal segment of leg 3; F, leg 4. Scale bars: 0.1 mm for A and C–F; 0.05 mm for B.
FIGURE 4. Caligus aesopus Wilson, 1921, female. A in 1921 and C. spinosus Yamaguti, 1939 (Copepoda: Siphonostomatoida: Caligidae) parasitic on amberjacks (Seriola spp.) from Korea
FIGURE 4. Caligus aesopus Wilson, 1921, female. A, habitus, dorsal; B, abdomen, ventral; C, caudal ramus, ventral; D, antennule; E, antenna; F, postantennal process; G, maxillule; H, maxilla; I, maxilliped; J, sternal furca. Scale bars: 0.5 mm for A; 0.1 mm for B, D, E, H, and I; 0.05 mm for C, F, G, and J.
FIGURE 2. Caligus spinosus Yamaguti, 1939, female. A in 1921 and C. spinosus Yamaguti, 1939 (Copepoda: Siphonostomatoida: Caligidae) parasitic on amberjacks (Seriola spp.) from Korea
FIGURE 2. Caligus spinosus Yamaguti, 1939, female. A, sternal furca; B, leg 1; C, leg 2; D, leg 3; E, first exopodal segment of leg 3; F, leg 4. Scale bars: 0.05 mm for A and E; 0.1 mm for B–D, and F.
FIGURE 3. Caligus spinosus Yamaguti, 1939, male. A in 1921 and C. spinosus Yamaguti, 1939 (Copepoda: Siphonostomatoida: Caligidae) parasitic on amberjacks (Seriola spp.) from Korea
FIGURE 3. Caligus spinosus Yamaguti, 1939, male. A, habitus, dorsal; B, antenna; C, terminal claw of antenna; D, maxillule; E, maxilliped. Scale bars: 0.5 mm for A; 0.05 mm for B–E.
FIGURE 1. Caligus spinosus Yamaguti, 1939, female. A in 1921 and C. spinosus Yamaguti, 1939 (Copepoda: Siphonostomatoida: Caligidae) parasitic on amberjacks (Seriola spp.) from Korea
FIGURE 1. Caligus spinosus Yamaguti, 1939, female. A, habitus, dorsal; B, abdomen, ventral; C, antennule; D, antenna; E, postantennal process; F, maxillule; G, maxilla; H, maxilliped. Scale bars: 0.5 mm for A; 0.1 mm for B, C, G, and H; 0.05 mm for D–F.
FIGURE 27. Seriola lalandi Valenciennes 1833 in The fish collection of José Mariano da Conceição Veloso (1742-1811) and the beginning of ichthyological research in Brazil, with a taxonomic description of the extant specimens
FIGURE 27. Seriola lalandi Valenciennes 1833; a: ACL-HN-0051, 730 mm SL; b: ACL-HN-0050, 760 mm SL. Photos by Luis M. P. Ceríaco.
FIGURE 2 in Paradeontacylix godfreyi n. sp. (Digenea: Sanguinicolidae) from the heart of wild Seriola lalandi (Perciformes: Carangidae) in southern Australia
FIGURE 2. Large posterior tegumental spines (lpts) and medium posterior tegumental spines (mpts), ventral view of Australian Paradeontacylix species. A. Paradeontacylix godfreyi n. sp, holotype, showing clawlike large posterior tegumental spines arranged in 4 longitudinal rows each comprising 4 spines and medium posterior tegumental spines arranged in 2 to 3 longitudinal rows each comprising 4 spines on either side of large posterior tegumental spines. B. Paradeontacylix sp. (SAMA AHC 28912) showing pointed, slightly curved large posterior tegumental spines arranged in 4 longitudinal rows each comprising 3 spines and medium posterior tegumental spines arranged in 3 longitudinal rows each comprising 3 spines on either side of large posterior tegumental spines. Scale bars = 30 m.
FIGURE 1. Paradeontacylix godfreyi n in Paradeontacylix godfreyi n. sp. (Digenea: Sanguinicolidae) from the heart of wild Seriola lalandi (Perciformes: Carangidae) in southern Australia
FIGURE 1. Paradeontacylix godfreyi n. sp. A. Whole adult parasite, holotype, ventral view. B. Posterior portion, holotype, ventral view, showing testicular field and post–ovarian region. Abbreviations: ac, anterior caecum; c, cirrus; cs, cirrus sac; cv, common vitelline duct; e, egg; fgp, female genital pore; g, gland cells; lpts, large posterior tegumental spines; m, mouth; ma, margin; me, metraterm; Mg, Mehlis' gland; mgp, male genital pore; mpts, medium posterior tegumental spines; mts, marginal tegumental spines; o, ovary; oe, oesophagus; oo, oötype; ov, oviduct; pc, posterior caecum; sr, seminal receptacle; sv, seminal vesicle; t, testis; u, uterus; v, vitellarium; vd, vas deferens. Scale bars: A = 1,000 m; B = 250 m.
FIGURE 8. Seriola fasciata, 250 in Mediterranean fish biodiversity: an updated inventory with focus on the Ligurian and Tyrrhenian seas
FIGURE 8. Seriola fasciata, 250 mm TL, gill net set at 10-15 m depth, 01 January 2012, Vietri sul Mare, Tyrrhenian Sea (photo A. Amato). Zoological Museum of Naples 'Federico II' (Italy) ichthyological collection, voucher no. Z7026
Data from: Feeding and water temperature modulate the activity of gut microbiota in greater amberjack juveniles (Seriola dumerili)
<p>Illumina (MiSeq v3) sequencing data for gut microbiota profiling in greater amberjack (<em>Seriola dumerili</em>) juveniles reared at three different water temperatures and sampled along a day cycle. </p>
Data from: A comprehensive transcriptome of early development in yellowtail kingfish (Seriola lalandi)
Seriola lalandi is an ecologically and economically important species that is globally distributed in temperate and subtropical marine waters. The aim of this study was to identify large numbers of genic single nucleotide polymorphisms (SNPs) and differential gene expression (DGE) related to the early development of normal and deformed S. lalandi larvae using high-throughput RNA-seq data. A de novo assembly of reads generated 40 066 genes ranging from 300 bases to 64 799 bases with an N90 of 788 bases. Homology search and protein signature recognition assigned gene ontology (GO) terms to a total of 15 744 (39.34%) genes. A search against the Kyoto Encyclopedia of Genes and Genomes Pathway database (KEGG) retrieved 6808 KEGG orthology (KO) identifiers for 10 520 genes (26.25%), and mapping of KO identifiers generated 337 KEGG pathways. Comparisons of annotated genes revealed that 1262 genes were downregulated and 1047 genes were upregulated in the deformed larvae group compared to the normal group of larvae. Additionally, we identified 6989 high-quality SNPs from the assembled transcriptome. These putative SNPs contain 4415 transitions and 2574 transversions, which will be useful for further ecological studies of S. lalandi. This is the first study to use a global transcriptomic approach in S. lalandi, and the resources generated can be used further for investigation of gene expression of marine teleosts to investigate larval developmental biology. The results of the GO enrichment analysis highlight the crucial role of the extracellular matrix in normal skeleton development, which could be important for future studies of skeletal deformities in S. lalandi and other marine species.
Data from: A comprehensive transcriptome of early development in yellowtail kingfish (Seriola lalandi)
Open the record for dataset details and reuse information.
Molecular Adaptation to Ambient Salinity Oscillations in Greater Amberjack (Seriola dumerili): Implications to Aquaculture
GEO Series GSE220485. Seriola dumerili. 12 samples. Type: Expression profiling by high throughput sequencing.
Differential gene expression analysis for California yellowtail (Seriola dorsalis) to investigate slow- and fast-growing larvae over different growth stages
GEO Series GSE85882. Seriola lalandi dorsalis. 18 samples. Type: Expression profiling by high throughput sequencing.
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