0000000000321079

AUTHOR

Josep A. Calduch-giner

0000-0003-3124-5986

showing 5 related works from this author

Proteomic evaluation of potentiated sulfa treatment on gilthead sea bream (Sparus aurata L.) liver

2013

Potentiated sulfa drugs are a combination of sulfonamide and pyrimidine potentiators. They are currently used against fish bacterial pathogens in Mediterranean marine fish farming. The present work aimed studying the potential hepatotoxicity of a combination of sulfadiazine (SDZ) and trimethoprim (TMP) in gilthead sea bream juveniles after oral administration, at the recommended ratio of 5: 1 (SDZ/TMP), equivalent to a dose of 30 mg kg(-1) fish day(-1), for 10 days at 19 degrees C temperature. Electrophoresis (DIGE) technology coupled with MS was used to identify possible markers of hepatotoxicity of this treatment. The results obtained show significant changes in the expression of 41 prote…

AntioxidantApolipoprotein Bbiologymedicine.medical_treatmentFish farmingLipid metabolismAquatic ScienceCarbohydrate metabolismFatty acid-binding proteinSulfadiazineBiochemistrybiology.proteinmedicineProtein biosynthesismedicine.drug
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Genome Sequencing and Transcriptome Analysis Reveal Recent Species-specific Gene Duplications in the Plastic Gilthead Sea Bream

2019

AbstractGilthead sea bream is an economically important fish species that is remarkably well-adapted to farming and changing environments. Understanding the genomic basis of this plasticity will serve to orientate domestication and selective breeding towards more robust and efficient fish. To address this goal, a draft genome assembly was reconstructed combining short- and long-read high-throughput sequencing with genetic linkage maps. The assembled unmasked genome spans 1.24 Gb of an expected 1.59 Gb genome size with 932 scaffolds (∼732 Mb) anchored to 24 chromosomes that are available as a karyotype browser at www.nutrigroup-iats.org/seabreambrowser. Homology-based functional annotation, …

0303 health sciencesRetrotransposonBiologyGenomeDNA sequencing03 medical and health sciences0302 clinical medicineEvolutionary biologyGene family14. Life underwaterMobilomeGenome sizeGene030217 neurology & neurosurgery030304 developmental biologySynteny
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Under control: how a dietary additive can restore the gut microbiome and proteomic profile, and improve disease resilience in a marine teleostean fis…

2017

[Background]: The constant increase of aquaculture production and wealthy seafood consumption has forced the industry to explore alternative and more sustainable raw aquafeed materials, and plant ingredients have been used to replace marine feedstuffs in many farmed fish. The objective of the present study was to assess whether plant-based diets can induce changes in the intestinal mucus proteome, gut autochthonous microbiota and disease susceptibility of fish, and whether these changes could be reversed by the addition of sodium butyrate to the diets. Three different trials were performed using the teleostean gilthead sea bream (Sparus aurata) as model. In a first preliminary short-term tr…

0301 basic medicineProteomicsAliments BiotecnologiaProteomeAquaculturemedicine.disease_causechemistry.chemical_compoundFish DiseasesAquacultureSparus aurataFood science2. Zero hungerPathogen challengebiologyDiet VegetarianSodium butyrate04 agricultural and veterinary sciences3. Good healthIntestineslcsh:QR100-130Microbiology (medical)Fish farmingParasitic Diseases AnimalIntestinal parasiteButyrateMicrobiologylcsh:Microbial ecology03 medical and health sciencesIntestinal healthmedicineAnimals14. Life underwaterMicrobiomeMyxozoaNutricióNutritionPeixos Alimentacióbusiness.industryPhotobacteriumResearchEnteromyxum leeiSodium butyratePhotobacteriumbiology.organism_classificationAnimal FeedSea BreamGastrointestinal Microbiome030104 developmental biologychemistry040102 fisheries0401 agriculture forestry and fisheriesButyric AcidMicrobiomebusinessBacteria
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Effect of ivermectin on the liver of gilthead sea bream Sparus aurata: a proteomic approach.

2010

23 p., 2 tablas, 4 figuras y bibliografía

ProteomicsFish ProteinsEnvironmental EngineeringNew biomarkersSparidaeProteomeHealth Toxicology and MutagenesisDifference gel electrophoresisBiologyIvermectinAquaculturemedicineEnvironmental ChemistryAnimalsGilthead seabreamIvermectinAntiparasitic AgentsEcologybusiness.industryPublic Health Environmental and Occupational HealthHepatotoxinLipid metabolismAquatic animalGeneral MedicineGeneral ChemistryMetabolismbiology.organism_classificationPollutionSea BreamMass spectrometry (MS)BiochemistryLiver2D-DIGEbusinessBiomarkersWater Pollutants Chemicalmedicine.drugChemosphere
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Genome Sequencing and Transcriptome Analysis Reveal Recent Species-Specific Gene Duplications in the Plastic Gilthead Sea Bream (Sparus aurata)

2019

Gilthead sea bream is an economically important fish species that is remarkably well-adapted to farming and changing environments. Understanding the genomic basis of this plasticity will serve to orientate domestication and selective breeding toward more robust and efficient fish. To address this goal, a draft genome assembly was reconstructed combining short- and long-read high-throughput sequencing with genetic linkage maps. The assembled unmasked genome spans 1.24 Gb of an expected 1.59 Gb genome size with 932 scaffolds (~732 Mb) anchored to 24 chromosomes that are available as a karyotype browser at www.nutrigroup-iats.org/seabreamdb. Homology-based functional annotation, supported by R…

0106 biological sciencesTransposable element010504 meteorology & atmospheric scienceslcsh:QH1-199.5Adaptive plasticitytransposon mobilizationOcean EngineeringRetrotransposonAquatic ScienceBiologylcsh:General. Including nature conservation geographical distributionOceanography01 natural sciencesGenomeimmune responsegilthead sea breamGene family14. Life underwaterresponse to stimuluslcsh:ScienceGeneGenome size0105 earth and related environmental sciencesWater Science and TechnologySyntenyGlobal and Planetary Changegene duplications010604 marine biology & hydrobiologyphylogenomicsEvolutionary biologylcsh:QMobilomeFrontiers in Marine Science
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