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RNA/DNA ratio of Scophthalmus maximus first feeding larvae during feeding wit...
This dataset has no description
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Lipid content of liver and muscle tissue of juvenile turbot (Scophthalmus max...
This study examined the growth response of juvenile turbot (Scophthalmus maximus) to diets with graded fishmeal (FM) replacement with plant, animal, and emerging protein sources... -
Feed intake of juvenile turbot (Scophthalmus maximus) fed with emerging prote...
This study examined the growth response of juvenile turbot (Scophthalmus maximus) to diets with graded fishmeal (FM) replacement with plant, animal, and emerging protein sources... -
Glycogen and glucose content of liver and muscle tissue of juvenile turbot (S...
This study examined the growth response of juvenile turbot (Scophthalmus maximus) to diets with graded fishmeal (FM) replacement with plant, animal, and emerging protein sources... -
Scophthalmus maximus in the Sylt Rømø bight in 2022
Due to changing temperature regimes in the North- and the Wadden Sea, a fish survey in the Sylt Rømø bight (SRB) was established in 2007 for at least ten years. The aim is to... -
Body length and body weight of juvenile turbot (Scophthalmus maximus) fed wit...
This study examined the growth response of juvenile turbot (Scophthalmus maximus) to diets with graded fishmeal (FM) replacement with plant, animal, and emerging protein sources... -
Fish-T1K (Transcriptomes of 1000 fishes)_Phylogeny Project Raw sequence reads
Fish-T1K_Phylogeny Project -
Raw sequence reads from Danish species
Raw reads from samples of danish species, sequenced with the purpose of assembling mito genomes for future references. -
the gonad transcriptome of two flatfish
the ovary transcriptome of two flatfish -
Scophthalmus maximus (turbot), genomic and transcriptomic data
This project collects the genomic and transcriptomic data generated for Scophthalmus maximus, common name turbot, to facilitate genome assembly and annotation as part of the... -
MIPs: Multi-locus Intron Polymorphisms in species identification and populati...
The study explored the possibility of using intron regions as a source of quantifiable variability and applying them to Molecular Ecology studies of non-model organisms (species... -
Fishboost: Genetic Basis for resistance to Philasterides Dicentrarchi
Development of panel of more than 20000 SNPs, using 2b-RAD, to ascertain the genetic architecture of the resistance to Philasterides dicentrarchi in turbot. A total of more than... -
Transcriptome analysis of turbot head kidney with Vibrio anguillarum infection
To understand the immune response of turbot against V. anguillarum infection, the transcriptomes of the head kidney of turbot were analyzed before and after V. anguillarum... -
Draft genomes of female and male turbot (Scophthalmus maximus)
Turbot (Scophthalmus maximus) is a commercially important species and is among the most produced flatfish in aquaculture. The draft turbot genomes will provide a valuable... -
Scophthalmus maximus Targeted Locus (Loci)
the sequence using RAD technique is to find SNP loci related to Sex and growth(weight, length and width) traits -
Transcriptome analysis reveals potential anti-viral immune pathways of turbot...
Successful viral infection and multiplication chiefly rely on virus subversion mechanisms against host anti-viral immune responses. In this study, in order to reveal the... -
Scophthalmus maximus Transcriptome or Gene expression
This transcriptional data provides an overview of intestinal genes in turbot after 12 weeks of feeding high soybean meal and sodium butyrate -
Performance and precision of ddRAD
In this study we investigate the precision of the recently developed NGS sequencing technique called double-digest Restriction site Associated DNA (ddRAD). Amount of information... -
Transcriptome analysis of turbot gill
To understand the immune response of turbot against V. anguillarum infection and explore novel immune related genes, the geneome of gill of turbot were analyzed after V.... -
Scophthalmus maximus Transcriptome or Gene expression
Transcriptome Dynamics During Turbot Spermatogenesis Predicting the Potential Key Genes Regulating Male Germ Cell Proliferation and Maturation