Supplementation of recombinant human lysozyme into diets affects the growth performance, muscle quality, immunity and intestinal microbiota in large yellow croaker Larimichthyscrocea.

Fuente: PubMed
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Autores principales: Liu, Dayin, Qu, Peng, Huangfu, Yingxu, Wang, Xinyu, Pan, Mingzhu, Wu, Yang, Mai, Kangsen, Zhang, Wenbing
Formato: Artículo científico
Lenguaje:en
Publicado: Fish & shellfish immunology 2025
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author Liu, Dayin
Qu, Peng
Huangfu, Yingxu
Wang, Xinyu
Pan, Mingzhu
Wu, Yang
Mai, Kangsen
Zhang, Wenbing
author_facet Liu, Dayin
Qu, Peng
Huangfu, Yingxu
Wang, Xinyu
Pan, Mingzhu
Wu, Yang
Mai, Kangsen
Zhang, Wenbing
Liu, Dayin
Qu, Peng
Huangfu, Yingxu
Wang, Xinyu
Pan, Mingzhu
Wu, Yang
Mai, Kangsen
Zhang, Wenbing
collection PubMed - marine biology
contents Supplementation of recombinant human lysozyme into diets affects the growth performance, muscle quality, immunity and intestinal microbiota in large yellow croaker Larimichthyscrocea. Liu, Dayin Qu, Peng Huangfu, Yingxu Wang, Xinyu Pan, Mingzhu Wu, Yang Mai, Kangsen Zhang, Wenbing Animals Gastrointestinal Microbiome Perciformes Dietary Supplements Diet Animal Feed Muramidase Random Allocation Recombinant Proteins Immunity, Innate Dose-Response Relationship, Drug Muscles Muscle, Skeletal The aim of the present study was to investigate the influence of supplementation of lysozyme (LZM) into diet on the growth performance, muscle quality, immunity, intestinal microbiota in large yellow croaker (Larimichthys crocea) with initial body weight of 194.5 ± 0.27 g. After a 70-day feeding trial, 6 experimental diets with LZM supplementation at 0 (LZM0), 10 (LZM10), 30 (LZM30), 50 (LZM50), 70 (LZM70) and 90 mg/kg (LZM90) were tested. Results showed that the fish in the LZM70 group exhibited the lowest feed conversion ratio and the highest weight gain (WG), along with the highest trypsin and Na/K ATPase activities in intestine (P
format Artículo científico
id pubmed_39617307
institution PubMed
language en
publishDate 2025
publisher Fish & shellfish immunology
record_format pubmed
spellingShingle Supplementation of recombinant human lysozyme into diets affects the growth performance, muscle quality, immunity and intestinal microbiota in large yellow croaker Larimichthyscrocea.
Liu, Dayin
Qu, Peng
Huangfu, Yingxu
Wang, Xinyu
Pan, Mingzhu
Wu, Yang
Mai, Kangsen
Zhang, Wenbing
Animals
Gastrointestinal Microbiome
Perciformes
Dietary Supplements
Diet
Animal Feed
Muramidase
Random Allocation
Recombinant Proteins
Immunity, Innate
Dose-Response Relationship, Drug
Muscles
Muscle, Skeletal
Supplementation of recombinant human lysozyme into diets affects the growth performance, muscle quality, immunity and intestinal microbiota in large yellow croaker Larimichthyscrocea. Liu, Dayin Qu, Peng Huangfu, Yingxu Wang, Xinyu Pan, Mingzhu Wu, Yang Mai, Kangsen Zhang, Wenbing Animals Gastrointestinal Microbiome Perciformes Dietary Supplements Diet Animal Feed Muramidase Random Allocation Recombinant Proteins Immunity, Innate Dose-Response Relationship, Drug Muscles Muscle, Skeletal The aim of the present study was to investigate the influence of supplementation of lysozyme (LZM) into diet on the growth performance, muscle quality, immunity, intestinal microbiota in large yellow croaker (Larimichthys crocea) with initial body weight of 194.5 ± 0.27 g. After a 70-day feeding trial, 6 experimental diets with LZM supplementation at 0 (LZM0), 10 (LZM10), 30 (LZM30), 50 (LZM50), 70 (LZM70) and 90 mg/kg (LZM90) were tested. Results showed that the fish in the LZM70 group exhibited the lowest feed conversion ratio and the highest weight gain (WG), along with the highest trypsin and Na/K ATPase activities in intestine (P
title Supplementation of recombinant human lysozyme into diets affects the growth performance, muscle quality, immunity and intestinal microbiota in large yellow croaker Larimichthyscrocea.
topic Animals
Gastrointestinal Microbiome
Perciformes
Dietary Supplements
Diet
Animal Feed
Muramidase
Random Allocation
Recombinant Proteins
Immunity, Innate
Dose-Response Relationship, Drug
Muscles
Muscle, Skeletal
url https://pubmed.ncbi.nlm.nih.gov/39617307/