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. 2018 Aug 10;9:1818. doi: 10.3389/fmicb.2018.01818

Table 4.

An overview on LAB used as probiotic in finfish aquaculture.

Probiotic Doses and administrationduration Fish species Parameters examined References
Lb. plantarum 2 × 107 CFU g−1–72 days Rainbow trout (Oncorhynchus mykiss) Growth performance and immune parameters Soltani et al., 2017b
10 × 109 CFU/kg–90 days European sea bass (Dicentrarchus labrax) Growth performance and serum biochemical parameters Piccolo et al., 2015
108 CFU g−1–60 days Rainbow trout Serum biochemical as well as immune responses Kane et al., 2016
1.2 × 106, 0.9 × 106, and 0.56 × 106 cfu/g–80 days Common carp (Cyprinus carpio) Growth performance, Immune parameters, disease resistance Soltani et al., 2017a
1.81 × 107 CFU g−1–58 days Nile tilapia Growth performance, haemato-immunological parameters and gut microbiota Yamashita et al., 2017
108 CFU g−1–28 days Nile tilapia Intestinal microbiota, growth performance and resistance against Cd exposure Zhai et al., 2017
Growth performance and resistance against waterborne aluminum exposure Yu et al., 2017
Heat killed Lb. plantarum 0.01, 0.1, 1 and 2 g kg−1–56 days Red sea bream (Pagrus major) Growth performance, immune parameters and antioxidant defense Dawood et al., 2015
Lb. plantarum + B. subtilis + P. aeruginosa 0.5 × 108 CFU g−1–60 days Rohu (Labeo rohita) Immune parameters, antioxidant defenses and disease resistance Giri et al., 2014
Lb. plantarum + L. lactis log10 7.0 CFU/g–30 days Olive flounder (Paralichthys olivaceus) Immune parameters and disease resistance Beck et al., 2015
Lb. plantarum +LMWSA 108 CFU g−1–60 days Nile tilapia (Oreochromis niloticus) Growth performance, immune parameters and disease resistance Van Doan et al., 2016c
Lb. plantarum + Jerusalem artichoke 108 CFU g−1–12 weeks Pangasius catfish (Pangasius bocourti) Growth performance, immune parameters and disease resistance Van Doan et al., 2016a
Lb. plantarum + Eryngii mushroom (Pleurotus eryngii) 108 CFU g−1–90 days Pangasius catfish Growth performance, immune parameters and disease resistance Van Doan et al., 2016b
Lb. acidophilus 1.5 × 108, 3 × 108 and 6 × 108 CFU g−1–70 days Black swordtail (Xiphophorus helleri) Growth performance, mucosal immunity and intestinal microbiota Hoseinifar et al., 2015c
1.5 × 108, 3 × 108 and 6 × 108 CFU g−1–56 days Gold fish (Carassius auratus gibelio) Skin mucus protein profile and immune parameters, appetite and immune related genes expression Hosseini et al., 2016
106 CFU g−1–15 days Nile tilapia Immune related genes expression and disease resistance Villamil et al., 2014
Lb. acidophilus + B. cereus + Clostridium butyricum 1.0 × 109 CFU g−1–60 days Hybrid grouper (Epinephelus lanceolatus♂ × Epinephelus fuscoguttatus ♀) Growth performance, digestive and antioxidant enzymes activities He et al., 2017
Lb. casei 5 × 106, 5 × 107 and 5 × 108 CFU g−1–60 days Shirbot (Barbus gryprus) Growth performance and digestive enzymes activity Mohammadian et al., 2017
1.0 × 108 cells/g–28 days Zebrafish (Danio rerio) Reproductive performance and related genes expression Qin et al., 2014
Lb. casei + apple cider vinegar 108 CFU g−1–56 days Common carp Serum and mucus immune parameters, immune and antioxidant defense related genes expression Safari et al., 2017
Lb. paracasei 106 CFU g−1–66 days Rainbow trout Growth performance and intestinal microbiota Lopez Cazorla et al., 2015
Lb. delbrueckii 1 × 105, 1 × 106, 1 × 107 and 1 × 108 CFU g−1 Common carp Intestinal immune parameters, immune related genes expression, antioxidant defense, disease resistance Zhang C.-N. et al., 2017
Lb. delbrueckii ssp. bulgaricus 5 × 107 CFU g−1–60 days Shirbot Immune parameters and disease resistance Mohammadian et al., 2016
Lb. rhamnosus 103,105 and 106 CFU/g–63 days European eel (Anguilla anguilla) Sperm quality and quantity, expression of genes related to spermatogenesis Vílchez et al., 2015
1 × 102, 1 × 104 and 1 × 106 cells g−1–56 days Red sea bream Plasma and mucus parameters Dawood et al., 2017
107 and 108 CFU g−1–56 days Rainbow trout Intestinal microbiota and histology, biochemical parameters, and antioxidant defense Topic (Popovic et al., 2017)
Lb. rhamnosus+ Lb. lactis 106 × cell/g–56 days Red sea bream Immune parameters and antioxidant defense Dawood et al., 2016b
P. acidilactici 106 CFU/g–10 days Zebrafish Expression of genes related to male and sperm quality Valcarce et al., 2015
1 g kg−1–56 days Green terror (Aequidens rivulatus) Innate immune parameters and resistance to hypoxia stress Neissi et al., 2013
P. acidilactici+ galactooligosaccharide (GOS) 7.57 log CFU g−1–56 days Rainbow trout Growth performance, immune parameters and disease resistance Hoseinifar et al., 2015a,b, 2016a
P. acidilactici+ GOS 7.57 log CFU g−1–56 days Common carp Immune parameters and related genes expression Modanloo et al., 2017
P. pentosaceus 6 × 1010, 1.6 × 1011, 1.6 × 1012 and 3.2 × 1012 cells g−1–56 days Red sea bream Skin mucus and serum immune parameters, resistance to low-salinity stress Dawood et al., 2016a
2 × 107, 2 × 108 and 2 × 109 CFU g−1–56 days Siberian sturgeon Intestinal and body composition Moslehi et al., 2016
109 CFU g−1–21 days Orange-spotted grouper (Epinephelus coioides) Growth performance, immune related genes expression and disease resistance Huang J.-B. et al., 2014
W. cibaria 1.18 × 107 CFU g−1–45 days Brazilian native surubins Growth performance, haemato-immunological parameters and intestinal histomorphology Jesus et al., 2017
Lc. mesenteroides+ E. faecalis+ Lb. fermentum 105, 107 and109 CFU g−1–56 days Javanese carp (Puntius gonionotus) Growth performance, intestinal microbiota and body composition Allameh et al., 2016
L. lactis WFLU12 109 CFU g−1–56 days Olive flounder Growth performance, immune parameters and disease resistance Nguyen et al., 2017
E. faecium 107 CFU/g–35 days Javanese carp Digestive enzymes activity, intestinal short chain fatty, disease resistance Allameh et al., 2015
E. gallinarum L-1 106, 107, and 108 cfu mL−1–28 days Sea bream, European sea bass, meager (Argyrosomus regius) and red porgy (Pagrus pagrus) Immune parameters and peroxidase content Román et al., 2015
E. casseliflavus 107, 108, and 109 CFU g−1–56 days Rainbow trout Intestinal microbiota, humoral immune parameters and disease resistance Safari et al., 2016