Cargando…

Dietary Phytogenics and Galactomannan Oligosaccharides in Low Fish Meal and Fish Oil-Based Diets for European Sea Bass (Dicentrarchus labrax) Juveniles: Effects on Gill Structure and Health and Implications on Oxidative Stress Status

An effective replacement for fish meal (FM) and fish oil (FO) based on plant-based raw materials in the feed of marine fish species is necessary for the sustainability of the aquaculture sector. However, the use of plant-based raw materials to replace FM and FO has been associated with several negat...

Descripción completa

Detalles Bibliográficos
Autores principales: Torrecillas, Silvia, Terova, Genciana, Makol, Alex, Serradell, Antonio, Valdenegro-Vega, Victoria, Izquierdo, Marisol, Acosta, Felix, Montero, Daniel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8149968/
https://www.ncbi.nlm.nih.gov/pubmed/34054829
http://dx.doi.org/10.3389/fimmu.2021.663106
_version_ 1783698062994046976
author Torrecillas, Silvia
Terova, Genciana
Makol, Alex
Serradell, Antonio
Valdenegro-Vega, Victoria
Izquierdo, Marisol
Acosta, Felix
Montero, Daniel
author_facet Torrecillas, Silvia
Terova, Genciana
Makol, Alex
Serradell, Antonio
Valdenegro-Vega, Victoria
Izquierdo, Marisol
Acosta, Felix
Montero, Daniel
author_sort Torrecillas, Silvia
collection PubMed
description An effective replacement for fish meal (FM) and fish oil (FO) based on plant-based raw materials in the feed of marine fish species is necessary for the sustainability of the aquaculture sector. However, the use of plant-based raw materials to replace FM and FO has been associated with several negative health effects, some of which are related to oxidative stress processes that can induce functional and morphological alterations in mucosal tissues. This study aimed to evaluate the effects of dietary oligosaccharides of plant origin (5,000 ppm; galactomannan oligosaccharides, GMOS) and a phytogenic feed additive (200 ppm; garlic oil and labiatae plant extract mixture, PHYTO) on the oxidative stress status and mucosal health of the gills of juvenile European sea bass (Dicentrarchus labrax). The experimental diets, low FM and FO diets (10%FM/6%FO) were supplemented with GMOS from plant origin and PHYTO for 63 days. GMOS and PHYTO did not significantly affect feed utilization, fish growth, and survival. GMOS and PHYTO downregulated the expression of β-act, sod, gpx, cat, and gr in the gills of the fish compared with that in fish fed the control diet. The expression of hsp70 and ocln was upregulated and downregulated, respectively, in the GMOS group compared with that in the control group, whereas the expression of zo-1 was downregulated in the PHYTO group compared with that in the GMOS group. The morphological, histopathological, immunohistochemical, and biochemical parameters of the fish gills were mostly unaffected by GMOS and PHYTO. However, the PHYTO group had lower incidence of lamellar fusion than did the control group after 63 days. Although the tissular distribution of goblet cells was unaffected by GMOS and PHYTO, goblet cell size showed a decreasing trend (−11%) in the GMOS group. GMOS and PHYTO significantly reduced the concentration of PCNA+ in the epithelium of the gills. The above findings indicated that GMOS and PHYTO in low FM/FO-based diets protected the gill epithelia of D. labrax from oxidative stress by modulating the expression of oxidative enzyme-related genes and reducing the density of PCNA+ cells in the gills of the fish.
format Online
Article
Text
id pubmed-8149968
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-81499682021-05-27 Dietary Phytogenics and Galactomannan Oligosaccharides in Low Fish Meal and Fish Oil-Based Diets for European Sea Bass (Dicentrarchus labrax) Juveniles: Effects on Gill Structure and Health and Implications on Oxidative Stress Status Torrecillas, Silvia Terova, Genciana Makol, Alex Serradell, Antonio Valdenegro-Vega, Victoria Izquierdo, Marisol Acosta, Felix Montero, Daniel Front Immunol Immunology An effective replacement for fish meal (FM) and fish oil (FO) based on plant-based raw materials in the feed of marine fish species is necessary for the sustainability of the aquaculture sector. However, the use of plant-based raw materials to replace FM and FO has been associated with several negative health effects, some of which are related to oxidative stress processes that can induce functional and morphological alterations in mucosal tissues. This study aimed to evaluate the effects of dietary oligosaccharides of plant origin (5,000 ppm; galactomannan oligosaccharides, GMOS) and a phytogenic feed additive (200 ppm; garlic oil and labiatae plant extract mixture, PHYTO) on the oxidative stress status and mucosal health of the gills of juvenile European sea bass (Dicentrarchus labrax). The experimental diets, low FM and FO diets (10%FM/6%FO) were supplemented with GMOS from plant origin and PHYTO for 63 days. GMOS and PHYTO did not significantly affect feed utilization, fish growth, and survival. GMOS and PHYTO downregulated the expression of β-act, sod, gpx, cat, and gr in the gills of the fish compared with that in fish fed the control diet. The expression of hsp70 and ocln was upregulated and downregulated, respectively, in the GMOS group compared with that in the control group, whereas the expression of zo-1 was downregulated in the PHYTO group compared with that in the GMOS group. The morphological, histopathological, immunohistochemical, and biochemical parameters of the fish gills were mostly unaffected by GMOS and PHYTO. However, the PHYTO group had lower incidence of lamellar fusion than did the control group after 63 days. Although the tissular distribution of goblet cells was unaffected by GMOS and PHYTO, goblet cell size showed a decreasing trend (−11%) in the GMOS group. GMOS and PHYTO significantly reduced the concentration of PCNA+ in the epithelium of the gills. The above findings indicated that GMOS and PHYTO in low FM/FO-based diets protected the gill epithelia of D. labrax from oxidative stress by modulating the expression of oxidative enzyme-related genes and reducing the density of PCNA+ cells in the gills of the fish. Frontiers Media S.A. 2021-05-12 /pmc/articles/PMC8149968/ /pubmed/34054829 http://dx.doi.org/10.3389/fimmu.2021.663106 Text en Copyright © 2021 Torrecillas, Terova, Makol, Serradell, Valdenegro-Vega, Izquierdo, Acosta and Montero https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Torrecillas, Silvia
Terova, Genciana
Makol, Alex
Serradell, Antonio
Valdenegro-Vega, Victoria
Izquierdo, Marisol
Acosta, Felix
Montero, Daniel
Dietary Phytogenics and Galactomannan Oligosaccharides in Low Fish Meal and Fish Oil-Based Diets for European Sea Bass (Dicentrarchus labrax) Juveniles: Effects on Gill Structure and Health and Implications on Oxidative Stress Status
title Dietary Phytogenics and Galactomannan Oligosaccharides in Low Fish Meal and Fish Oil-Based Diets for European Sea Bass (Dicentrarchus labrax) Juveniles: Effects on Gill Structure and Health and Implications on Oxidative Stress Status
title_full Dietary Phytogenics and Galactomannan Oligosaccharides in Low Fish Meal and Fish Oil-Based Diets for European Sea Bass (Dicentrarchus labrax) Juveniles: Effects on Gill Structure and Health and Implications on Oxidative Stress Status
title_fullStr Dietary Phytogenics and Galactomannan Oligosaccharides in Low Fish Meal and Fish Oil-Based Diets for European Sea Bass (Dicentrarchus labrax) Juveniles: Effects on Gill Structure and Health and Implications on Oxidative Stress Status
title_full_unstemmed Dietary Phytogenics and Galactomannan Oligosaccharides in Low Fish Meal and Fish Oil-Based Diets for European Sea Bass (Dicentrarchus labrax) Juveniles: Effects on Gill Structure and Health and Implications on Oxidative Stress Status
title_short Dietary Phytogenics and Galactomannan Oligosaccharides in Low Fish Meal and Fish Oil-Based Diets for European Sea Bass (Dicentrarchus labrax) Juveniles: Effects on Gill Structure and Health and Implications on Oxidative Stress Status
title_sort dietary phytogenics and galactomannan oligosaccharides in low fish meal and fish oil-based diets for european sea bass (dicentrarchus labrax) juveniles: effects on gill structure and health and implications on oxidative stress status
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8149968/
https://www.ncbi.nlm.nih.gov/pubmed/34054829
http://dx.doi.org/10.3389/fimmu.2021.663106
work_keys_str_mv AT torrecillassilvia dietaryphytogenicsandgalactomannanoligosaccharidesinlowfishmealandfishoilbaseddietsforeuropeanseabassdicentrarchuslabraxjuvenileseffectsongillstructureandhealthandimplicationsonoxidativestressstatus
AT terovagenciana dietaryphytogenicsandgalactomannanoligosaccharidesinlowfishmealandfishoilbaseddietsforeuropeanseabassdicentrarchuslabraxjuvenileseffectsongillstructureandhealthandimplicationsonoxidativestressstatus
AT makolalex dietaryphytogenicsandgalactomannanoligosaccharidesinlowfishmealandfishoilbaseddietsforeuropeanseabassdicentrarchuslabraxjuvenileseffectsongillstructureandhealthandimplicationsonoxidativestressstatus
AT serradellantonio dietaryphytogenicsandgalactomannanoligosaccharidesinlowfishmealandfishoilbaseddietsforeuropeanseabassdicentrarchuslabraxjuvenileseffectsongillstructureandhealthandimplicationsonoxidativestressstatus
AT valdenegrovegavictoria dietaryphytogenicsandgalactomannanoligosaccharidesinlowfishmealandfishoilbaseddietsforeuropeanseabassdicentrarchuslabraxjuvenileseffectsongillstructureandhealthandimplicationsonoxidativestressstatus
AT izquierdomarisol dietaryphytogenicsandgalactomannanoligosaccharidesinlowfishmealandfishoilbaseddietsforeuropeanseabassdicentrarchuslabraxjuvenileseffectsongillstructureandhealthandimplicationsonoxidativestressstatus
AT acostafelix dietaryphytogenicsandgalactomannanoligosaccharidesinlowfishmealandfishoilbaseddietsforeuropeanseabassdicentrarchuslabraxjuvenileseffectsongillstructureandhealthandimplicationsonoxidativestressstatus
AT monterodaniel dietaryphytogenicsandgalactomannanoligosaccharidesinlowfishmealandfishoilbaseddietsforeuropeanseabassdicentrarchuslabraxjuvenileseffectsongillstructureandhealthandimplicationsonoxidativestressstatus