Literature DB >> 24041843

Lactococcus lactis BFE920 activates the innate immune system of olive flounder (Paralichthys olivaceus), resulting in protection against Streptococcus iniae infection and enhancing feed efficiency and weight gain in large-scale field studies.

Daniel Kim1, Bo Ram Beck, Saet-Byeol Heo, Jungjoon Kim, Hyun Duk Kim, Sun-Min Lee, Youngchan Kim, So Young Oh, Kyungro Lee, HyungKi Do, KwanHee Lee, Wilhelm H Holzapfel, Seong Kyu Song.   

Abstract

The protective effect of a food-grade lactic acid bacterium Lactococcus lactis BFE920 against disease of olive flounder (Paralichthys olivaceus) cultivated on a large scale was studied. Initially, antimicrobial activity of L. lactis against several fish pathogens was evaluated in vitro; the probiotic showed strong antibacterial activity against Streptococcus iniae, Streptococcus parauberis and Enterococcus viikkiensis, and moderate activity against Lactococcus garviae. When olive flounders were fed for two weeks with experimental diets containing varying concentrations of L. lactis (1 × 10(6), 5 × 10(6), 2.5 × 10(7) and 1.25 × 10(8) CFU/g feed), all the experimental feed groups showed 68-77% survival upon challenge with S. iniae. A field-scale feeding trial with L. lactis dietary supplement was conducted in a local fish farm (n = 12,000) for three months, and disease resistance, innate immune parameters and growth performance were evaluated. The average weight gain and feed efficiency were increased up to 6.8% and 8.5%, respectively. At the end of the feeding trial, the olive flounders were challenged with S. iniae. The L. lactis-fed group was protected from S. iniae challenge with a 66% survival rate. This disease protection is due to the flounder's innate immunity activated by the L. lactis administration: increased lysosomal activities and production of IL-12 and IFN-γ. These data clearly indicated that L. lactis BFE920 may be developed as a functional feed additive for protection against diseases, and for enhancement of feed efficiency and weight gain in olive flounder farming.
Copyright © 2013 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  IFN-γ; IL-12; Lactococcus lactis BFE920; Olive flounder; Probiotics

Mesh:

Substances:

Year:  2013        PMID: 24041843     DOI: 10.1016/j.fsi.2013.09.008

Source DB:  PubMed          Journal:  Fish Shellfish Immunol        ISSN: 1050-4648            Impact factor:   4.581


  16 in total

1.  Dietary Administration of Lactobacillus plantarum Enhanced Growth Performance and Innate Immune Response of Siberian Sturgeon, Acipenser baerii.

Authors:  Moheb Ali Pourgholam; Hossein Khara; Reza Safari; Mohammad Ali Yazdani Sadati; Mohammad Sadegh Aramli
Journal:  Probiotics Antimicrob Proteins       Date:  2016-03       Impact factor: 4.609

2.  Combined or Individual Effects of Dietary Probiotic Pedicoccus acidilactici and Nucleotide on Growth Performance, Intestinal Microbiota, Hemato-biochemical Parameters, and Innate Immune Response in Goldfish (Carassius auratus).

Authors:  Nooshin Mehdinejad; Mohammad Reza Imanpour; Valiollah Jafari
Journal:  Probiotics Antimicrob Proteins       Date:  2018-09       Impact factor: 4.609

3.  Hemato-Immunological Responses and Disease Resistance in Siberian Sturgeon Acipenser baerii Fed on a Supplemented Diet of Lactobacillus plantarum.

Authors:  Moheb Ali Pourgholam; Hossein Khara; Reza Safari; Mohammad Ali Yazdani Sadati; Mohammad Sadegh Aramli
Journal:  Probiotics Antimicrob Proteins       Date:  2017-03       Impact factor: 4.609

4.  Dietary Supplementation of Bacillus sp. SJ-10 and Lactobacillus plantarum KCCM 11322 Combinations Enhance Growth and Cellular and Humoral Immunity in Olive Flounder (Paralichthys olivaceus).

Authors:  Md Tawheed Hasan; Won Je Jang; Bong-Joo Lee; Sang Woo Hur; Sang Gu Lim; Kang Woong Kim; Hyon-Sob Han; Eun-Woo Lee; Sungchul C Bai; In-Soo Kong
Journal:  Probiotics Antimicrob Proteins       Date:  2021-03-13       Impact factor: 4.609

5.  The Effect of Lactococcus lactis subsp. lactis PTCC 1403 on the Growth Performance, Digestive Enzymes Activity, Antioxidative Status, Immune Response, and Disease Resistance of Rainbow Trout (Oncorhynchus mykiss).

Authors:  Sakineh Yeganeh; Milad Adel; Ahmad Nosratimovafagh; Mahmoud A O Dawood
Journal:  Probiotics Antimicrob Proteins       Date:  2021-05-18       Impact factor: 4.609

Review 6.  Mechanisms Used by Probiotics to Confer Pathogen Resistance to Teleost Fish.

Authors:  Rocío Simón; Félix Docando; Noelia Nuñez-Ortiz; Carolina Tafalla; Patricia Díaz-Rosales
Journal:  Front Immunol       Date:  2021-04-27       Impact factor: 7.561

7.  The Effect of Dietary Lactic Acid Bacteria on Intestinal Microbiota and Immune Responses of Crucian Carp (Carassius auratus) Under Water Temperature Decrease.

Authors:  Yuan Liu; Haoxin Lv; Liping Xu; Kun Zhang; Yan Mei; Jun Chen; Min Wang; Yifei Guan; Huili Pang; Yanping Wang; Zhongfang Tan
Journal:  Front Microbiol       Date:  2022-04-18       Impact factor: 6.064

8.  Maternal Vegetable and Fruit Consumption during Pregnancy and Its Effects on Infant Gut Microbiome.

Authors:  Hsien-Yu Fan; Yu-Tang Tung; Yu-Chen S H Yang; Justin BoKai Hsu; Cheng-Yang Lee; Tzu-Hao Chang; Emily Chia-Yu Su; Rong-Hong Hsieh; Yang-Ching Chen
Journal:  Nutrients       Date:  2021-05-05       Impact factor: 5.717

9.  Genome-Wide Comparison Reveals a Probiotic Strain Lactococcus Lactis WFLU12 Isolated from the Gastrointestinal Tract of Olive Flounder (Paralichthys Olivaceus) Harboring Genes Supporting Probiotic Action.

Authors:  Thanh Luan Nguyen; Do-Hyung Kim
Journal:  Mar Drugs       Date:  2018-04-24       Impact factor: 5.118

Review 10.  Probiotics as Means of Diseases Control in Aquaculture, a Review of Current Knowledge and Future Perspectives.

Authors:  Seyed Hossein Hoseinifar; Yun-Zhang Sun; Anran Wang; Zhigang Zhou
Journal:  Front Microbiol       Date:  2018-10-12       Impact factor: 5.640

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