Please use this identifier to cite or link to this item: http://hdl.handle.net/10553/72068
DC FieldValueLanguage
dc.contributor.authorRivero, F.en_US
dc.contributor.authorTorrecillas Burriel,Silviaen_US
dc.contributor.authorCaballero Cansino, María Joséen_US
dc.contributor.authorMakol, A.en_US
dc.contributor.authorIzquierdo, Marisolen_US
dc.contributor.authorMontero Vítores, Danielen_US
dc.date.accessioned2020-05-06T09:50:52Z-
dc.date.available2020-05-06T09:50:52Z-
dc.date.issued2016en_US
dc.identifier.issn1050-4648en_US
dc.identifier.otherWoS-
dc.identifier.urihttp://hdl.handle.net/10553/72068-
dc.description.abstractLow dietary levels of raw marine ingredients in marine fish species diets induce variable side-effects on fish growth performance, welfare and health, depending mainly on the terrestrial protein and oil source used, dietary levels and fish species studied. Particularly, high dietary levels of vegetable meals (VM) and oils (VO) blends, may induce intestinal dysfunction by altering tissue morphology, intestinal functionality, microbiota populations or gut associated lymphoid tissue (GALT) homeostasis. On the other hand, alternative feed ingredients such as prebiotics and probiotics have demonstrated to promote fish performance and disease resistance through potentiating GALT efficiency and functionality. Thus, the main objective of this study is to evaluate the effects of dietary mannan oligosaccharides (Biomos® and ActigenTM), Pediococcus acidilactici (BAC; Bactocell ®) and their combination in low FM and FO diets for european sea bass juveniles. Fish of 19.7±0.09g were distributed in 18 tanks and fed for 90 days six experimental diets with a low content of FM and FO, containing graded and combined levels of MOS and BAC as follows: HP; LP; B; HPB; LPB and C (Control). After 60 and 90 days of feeding, fish were sampled for growth, gut morphometry and histopathology, gut mucus production and expression of GALT related genes. Besides, samples were taken for gut iNOS and TNFα immunohistochemistry (IHQ) and for in situ hybridation (ISH) studies of MHCβ, TCRβ, CD4 and CD8. Fish fed diets HP, LP and LPB presented higher final weight. Two-way ANOVA attributed this effect to MOS regardless of dietary BAC inclusion. The use of prebiotic induced an increase on number of goblet cells in posterior gut (Fig.1). IHQ analyses performed against iNOS and TNFα showed the use of prebiotics induce an inflammatory-like pattern in the apical side of gut villi. Results for ISH showed that combined use of pre and probiotic induced a wider distribution of TCR-β marked cells, with special emphasis in the lamina propria. Expression of GALT-related genes, will be also discussed. Fig.1. Posterior gut (Alcian Blue-PAS). (a) LPB and (b) C diets t=90days. Note the higher number of goblet cell for fish fed LPB diet Acknowledgements: This study has been funded by the Spanish Ministry of Economy and Competitiveness, Project AGL2012-39919 (PROINMUNOIL).en_US
dc.description.abstractThis study evaluates the effects of dietary mannan oligosaccharides (MOS) on growth, tissue composition, fatty acid profiles and liver morphology of European sea bass (Dicentrarchus labrax) fed diets containing either soybean oil (SBO; SBOMOS) or fish oil (FO; FOMOS) as unique oil source for 8 weeks. Results showed that MOS supplementation enhanced specific growth rate, regardless of the oil source used, and that dietary oil source reduced fish length, regardless of dietary MOS supplementation. Dietary MOS favoured lipid accumulation in muscle and anterior intestine when supplemented in FO‐based diets compared to fish fed SBO diet and reduces it in liver in relation to lower hepatocyte area, particularly in fish fed SBOMOS diet. Dietary MOS favoured liver and not muscular ∑n‐3 PUFA, DHA, EPA and ARA deposition, when combined with FO but not when included in SBO‐based diets. Thus, MOS dietary supplementation favours fish performance and helps to minimize the side effects derived from high dietary SBO supplementation on liver lipid accumulation and hepatocyte vacuolization, which could be of especial interest on long‐term feeding trials; however, the effects on favoured deposition ∑n‐3 PUFA are limited to FO‐based diets.en_US
dc.languageengen_US
dc.publisherElsevieren_US
dc.relationComplementos Dieteticos en la Utilización de Lipidos Alternativos Al Aceite de Pescado en Acuicultura Marina: Herramienta Para Maximizar El Potencial de Resistencia A Patogenosen_US
dc.relation.ispartofFish and Shellfish Immunologyen_US
dc.sourceFish & Shellfish Immunology [ISSN 1050-4648], v. 53, p. 69, Abstract O-032, (Junio 2016)en_US
dc.subject251092 Acuicultura marinaen_US
dc.subject.otherDicentrarchus Labraxen_US
dc.subject.otherImmunostimulantsen_US
dc.subject.otherProbioticsen_US
dc.subject.otherISHen_US
dc.subject.otherGALTen_US
dc.titleCombined effects of dietary mannan oligosaccharides and Pediococcus acidilactici and their combination in low fish meal and fish oil diets for European sea bass, Dicentrarchus labrax, juvenilesen_US
dc.typeinfo:eu-repo/semantics/conferenceObjecten_US
dc.typeConferenceObjecten_US
dc.relation.conference2nd Conference of the International Society of Fish & Shellfish Immunology. ISFSI 2016en_US
dc.identifier.doi10.1016/J.FSI.2016.03.075en_US
dc.identifier.isi000377730400039-
dc.identifier.eissn1095-9947-
dc.description.lastpage69en_US
dc.description.firstpage69en_US
dc.relation.volume53en_US
dc.investigacionCienciasen_US
dc.type2Actas de congresosen_US
dc.contributor.daisngid231204-
dc.contributor.daisngid1545065-
dc.contributor.daisngid436538-
dc.contributor.daisngid4299213-
dc.contributor.daisngid31444473-
dc.contributor.daisngid233847-
dc.description.notasEdited by Anne Langston, Timothy Bowdenen_US
dc.description.observacionesEmpresa: Biomar, North Shore Road, Grangemouth FK3 8UL, Scotland Ámbito de la empresa: Europeaen_US
dc.description.numberofpages1en_US
dc.utils.revisionen_US
dc.contributor.wosstandardWOS:Rivero, F-
dc.contributor.wosstandardWOS:Torrecillas, S-
dc.contributor.wosstandardWOS:Caballero, MJ-
dc.contributor.wosstandardWOS:Makol, A-
dc.contributor.wosstandardWOS:Izquierdo, MS-
dc.contributor.wosstandardWOS:Montero, D-
dc.date.coverdateJunio 2016en_US
dc.identifier.abstractidO-032-
dc.identifier.ulpgcen_US
dc.description.sjr1,114
dc.description.jcr3,148
dc.description.sjrqQ1
dc.description.jcrqQ1
dc.description.scieSCIE
item.grantfulltextopen-
item.fulltextCon texto completo-
crisitem.author.deptGIR Grupo de Investigación en Acuicultura-
crisitem.author.deptIU de Investigación en Acuicultura Sostenible y Ec-
crisitem.author.deptGIR IUSA-ONEHEALTH 3: Histología y Patología Veterinaria y Forense (Terrestre y Marina)-
crisitem.author.deptIU de Sanidad Animal y Seguridad Alimentaria-
crisitem.author.deptDepartamento de Morfología-
crisitem.author.deptGIR Grupo de Investigación en Acuicultura-
crisitem.author.deptIU de Investigación en Acuicultura Sostenible y Ec-
crisitem.author.deptDepartamento de Biología-
crisitem.author.deptGIR Grupo de Investigación en Acuicultura-
crisitem.author.deptIU de Investigación en Acuicultura Sostenible y Ec-
crisitem.author.deptDepartamento de Biología-
crisitem.author.orcid0000-0002-2575-0997-
crisitem.author.orcid0000-0003-4297-210X-
crisitem.author.orcid0000-0002-4358-2157-
crisitem.author.parentorgIU de Investigación en Acuicultura Sostenible y Ec-
crisitem.author.parentorgIU de Sanidad Animal y Seguridad Alimentaria-
crisitem.author.parentorgIU de Investigación en Acuicultura Sostenible y Ec-
crisitem.author.parentorgIU de Investigación en Acuicultura Sostenible y Ec-
crisitem.author.fullNameTorrecillas Burriel, Silvia-
crisitem.author.fullNameCaballero Cansino, María José-
crisitem.author.fullNameIzquierdo López, María Soledad-
crisitem.author.fullNameMontero Vítores, Daniel-
crisitem.event.eventsstartdate26-06-2016-
crisitem.event.eventsenddate30-06-2016-
crisitem.project.principalinvestigatorMontero Vítores, Daniel-
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