Effects of Aspergillus-meal prebiotic diet on the growth performance, health status and gut microbiota of Asian seabass, Lates calcarifer.
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[1] M. Alkafafy,et al. Dietary Salvia officinalis leaves enhances antioxidant-immune-capacity, resistance to Aeromonas sobria challenge, and growth of Cyprinus carpio. , 2022, Fish & shellfish immunology.
[2] F. Aarestrup,et al. Rice protein concentrate as a fish meal substitute in Oreochromis niloticus: Effects on immune response, intestinal cytokines, Aeromonas veronii resistance, and gut microbiota composition. , 2022, Fish & shellfish immunology.
[3] C. Faggio,et al. Immune-antioxidant trait, Aeromonas veronii resistance, growth, intestinal architecture, and splenic cytokines expression of Cyprinus carpio fed Prunus armeniaca kernel-enriched diets. , 2022, Fish & shellfish immunology.
[4] Shao-Yang Hu,et al. A synbiotic containing prebiotic prepared from a by-product of king oyster mushroom, Pleurotus eryngii and probiotic, Lactobacillus plantarum incorporated in diet to improve the growth performance and health status of white shrimp, Litopenaeus vannamei. , 2021, Fish & shellfish immunology.
[5] M. Alagawany,et al. Use of rice protein concentrates in Oreochromis niloticus diets and its effect on growth, intestinal morphology, biochemical indices and ghrelin gene expression , 2021, Aquaculture Nutrition.
[6] Chun‐Hung Liu,et al. Probiotic, Lactobacillus pentosus BD6 boost the growth and health status of white shrimp, Litopenaeus vannamei via oral administration. , 2021, Fish & shellfish immunology.
[7] Hu Li,et al. TGF‐β isoforms inhibit hepatitis C virus propagation in transforming growth factor beta/SMAD protein signalling pathway dependent and independent manners , 2021, Journal of cellular and molecular medicine.
[8] Zhenhua Ma,et al. Immune Responses of Asian Seabass Lates calcarifer to Dietary Glycyrrhiza uralensis , 2020, Animals : an open access journal from MDPI.
[9] Tao Tao,et al. mTOR signaling pathway and mTOR inhibitors in cancer: progress and challenges , 2020, Cell & Bioscience.
[10] M. Elhady,et al. Growth performance, haematology and intestinal histo‐morphology of Nile tilapia fed on Indian Lotus (Nelumbo nuciferaGaertn.) leaf powder at different concentrations , 2019, Aquaculture Research.
[11] M. L. Martins,et al. Enterococcus faecium as potential probiotic for ornamental neotropical cichlid fish, Pterophyllum scalare (Schultze, 1823) , 2019, Aquaculture International.
[12] T. V. Kumar,et al. Betanodavirus-associated mortality in Asian seabass (Lates calcarifer, Bloch) cultured in indoor tanks and sea cages , 2018, Aquaculture International.
[13] Nameun Kim,et al. Dietary Probiotic Effect of Lactococcus lactis WFLU12 on Low-Molecular-Weight Metabolites and Growth of Olive Flounder (Paralichythys olivaceus) , 2018, Front. Microbiol..
[14] R. Jha,et al. Strategies to modulate the intestinal microbiota of Tilapia (Oreochromis sp.) in aquaculture: a review , 2018 .
[15] R. Pérez-Castañeda,et al. Effect of β-glucan dietary levels on immune response and hematology of channel catfish (Ictalurus punctatus) juveniles , 2017 .
[16] S. Yin,et al. The role of three heat shock protein genes in the immune response to Aeromonas hydrophila challenge in marbled eel, Anguilla marmorata , 2016, Royal Society Open Science.
[17] F. Respondek,et al. Hydrolysed wheat gluten as part of a diet based on animal and plant proteins supports good growth performance of Asian seabass (Lates calcarifer), without impairing intestinal morphology or microbiota , 2016 .
[18] W. Kneifel,et al. A new view of the fish gut microbiome: Advances from next-generation sequencing , 2015 .
[19] A. M. Memon,et al. Probiotics and prebiotics associated with aquaculture: A review. , 2015, Fish & shellfish immunology.
[20] R. Ranjan,et al. Effect of dietary chitosan on haematology, innate immunity and disease resistance of Asian seabass Lates calcarifer (Bloch) , 2014 .
[21] May Lee,et al. The intestinal microbiome of fish under starvation , 2014, BMC Genomics.
[22] S. Chi,et al. Persistently betanodavirus-infected barramundi (Lates calcarifer) exhibit resistances to red sea bream iridovirus infection. , 2013, Developmental and comparative immunology.
[23] L. Platanias,et al. The evolution of the TOR pathway and its role in cancer , 2013, Oncogene.
[24] Ł. Adaszek,et al. Cytotoxic effects and changes in cytokine gene expression induced by microcystin-containing extract in fish immune cells--an in vitro and in vivo study. , 2013, Fish & shellfish immunology.
[25] G. Rathore,et al. Vibrio alginolyticus infection in Asian seabass (Lates calcarifer, Bloch) reared in open sea floating cages in India , 2012 .
[26] F. Acosta,et al. The in vitro effect of probiotic Vagococcus fluvialis on the innate immune parameters of Sparus aurata and Dicentrarchus labrax. , 2012, Fish & shellfish immunology.
[27] S. Bearson,et al. Mitsuokella jalaludinii inhibits growth of Salmonella enterica serovar Typhimurium. , 2012, Veterinary microbiology.
[28] M. Horton,et al. Regulation of immune responses by mTOR. , 2012, Annual review of immunology.
[29] J. Clemente,et al. Diet Drives Convergence in Gut Microbiome Functions Across Mammalian Phylogeny and Within Humans , 2011, Science.
[30] P. Bossier,et al. Heat shock proteins (chaperones) in fish and shellfish and their potential role in relation to fish health: a review. , 2010, Journal of fish diseases.
[31] Anne Marie Bakke,et al. Prebiotics in aquaculture: a review , 2010 .
[32] J. Ransangan,et al. Identification of Vibrio harveyi isolated from diseased Asian seabass Lates calcarifer by use of 16S ribosomal DNA sequencing. , 2009, Journal of aquatic animal health.
[33] M. Tsan,et al. Heat shock proteins and immune system , 2009, Journal of leukocyte biology.
[34] J. Blenis,et al. Molecular mechanisms of mTOR-mediated translational control , 2009, Nature Reviews Molecular Cell Biology.
[35] M. Izquierdo,et al. Immune stimulation and improved infection resistance in European sea bass (Dicentrarchus labrax) fed mannan oligosaccharides. , 2007, Fish & shellfish immunology.
[36] G. Prud’homme. Pathobiology of transforming growth factor β in cancer, fibrosis and immunologic disease, and therapeutic considerations , 2007, Laboratory Investigation.
[37] Meng Gan,et al. A Highly Pathogenic Strain of Staphylococcus sciuri Caused Fatal Exudative Epidermitis in Piglets , 2007, PloS one.
[38] A. Bakhrouf,et al. Virulence and enterobacterial repetitive intergenic consensus PCR of Vibrio alginolyticus strains isolated from Tunisian cultured gilthead sea bream and sea bass outbreaks. , 2006, Veterinary microbiology.
[39] R. Russo,et al. Dietary Beta‐Glucans and Nucleotides Enhance Resistance of Red‐Tail Black Shark (Epalzeorhynchos bicolor, fam. Cyprinidae) to Streptococcus iniae Infection , 2006 .
[40] José Luis Balcázar,et al. Lactococcus garvieae in fish: a review. , 2006, Comparative immunology, microbiology and infectious diseases.
[41] Peng Li,et al. Evaluation of the prebiotic GroBiotic®-A and brewers yeast as dietary supplements for sub-adult hybrid striped bass (Morone chrysops×M. saxatilis) challenged in situ with Mycobacterium marinum , 2005 .
[42] A. R. Thirunavukkarasu,et al. Nodavirus infection causes mortalities in hatchery produced larvae of Lates calcarifer: first report from India. , 2005, Diseases of aquatic organisms.
[43] M. C. Balebona,et al. Bacteria recovered from diseased cultured gilthead sea bream (Sparus aurata L.) in southwestern Spain , 2003 .
[44] Thomas D. Schmittgen,et al. Analysis of relative gene expression data using real-time quantitative PCR and the 2(-Delta Delta C(T)) Method. , 2001, Methods.
[45] M. Nakagawa,et al. Molecular analysis of hereditary deficiency of the third component of complement (C3) in two sisters. , 2001, Internal medicine.
[46] C. López,et al. Vibrio alginolyticus infection in cobia (Rachycentron canadum) cultured in Taiwan , 2001 .
[47] C. Young,et al. Epidermal lesions and mortality caused by vibriosis in deep-sea Bahamian echinoids: a laboratory study. , 2000, Diseases of aquatic organisms.
[48] L. Pane,et al. Occurrence of Vibrio alginolyticus in Ligurian Coast Rock Pools (Tyrrhenian Sea, Italy) and Its Association with the Copepod Tigriopus fulvus (Fisher 1860) , 1993, Applied and environmental microbiology.
[49] J. Bidwell,et al. Ionization of Ammonia in Seawater: Effects of Temperature, pH, and Salinity , 1978 .
[50] Chun‐Hung Liu,et al. Screening probiotic candidates for a mixture of probiotics to enhance the growth performance, immunity, and disease resistance of Asian seabass, Lates calcarifer (Bloch), against Aeromonas hydrophila , 2017, Fish & shellfish immunology.
[51] Z. Ali,et al. OCCURRENCE OF SALMONELLA IN FRESHWATER FISHES : A REVIEW , 2015 .
[52] Carly L. Daniels,et al. Microbial manipulations to improve fish health and production--a Mediterranean perspective. , 2011, Fish & shellfish immunology.
[53] R. Thune,et al. Streptococcus iniae infection in cultured Asian sea bass (Lates calcarifer) and red tilapia (Oreochromis sp.) in southern Thailand , 2010 .
[54] N. Parameswaran,et al. Tumor necrosis factor-α signaling in macrophages. , 2010, Critical reviews in eukaryotic gene expression.
[55] J. Golski,et al. USABILITY OF FERMACTO PREBIOTIC IN FEEDS FOR COMMON CARP (CYPRINUS CARPIO L.) FRY , 2008 .
[56] G. Gibson. Fibre and effects on probiotics (the prebiotic concept) , 2004 .
[57] Mahavir Singh,et al. Heat shock protein 70 is a potent activator of the human complement system , 2002, Cell stress & chaperones.
[58] D. Russell,et al. Survival of stocked barramundi, Lates calcarifer (Bloch), in a coastal river system in far northern Queensland, Australia , 1998 .