Selection of lactic acid bacteria as candidate probiotics and in vivo test on Artemia nauplii

Lactic acid bacteria (LAB) were isolated from rotifer cultures in a marine hatchery to search for potential probiotics for marine animals. Fifteen strains were first selected among a total of 55, according to antibacterial activity against Vibrio sp. Among eight strains identified as Lactobacillus c...

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Published inAquaculture international Vol. 22; no. 2; pp. 699 - 709
Main Authors Lamari, Faouzi, Sadok, Khouadja, Bakhrouf, Amina, Gatesoupe, François-Joël
Format Journal Article
LanguageEnglish
Published Cham Springer-Verlag 01.04.2014
Springer International Publishing
Springer Nature B.V
Springer Verlag
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Abstract Lactic acid bacteria (LAB) were isolated from rotifer cultures in a marine hatchery to search for potential probiotics for marine animals. Fifteen strains were first selected among a total of 55, according to antibacterial activity against Vibrio sp. Among eight strains identified as Lactobacillus casei, four were highly adhesive, suggesting some ability for surface colonization. The other strains were identified as Lactobacillus plantarum, Lactobacillus dextrinicus, and Leuconostoc sp. To validate probiotic potential, Artemia were challenged against pathogenic Vibrio alginolyticus, with or without one of six selected LAB strains. The six strains protected Artemia against the pathogen, to some extent on condition that nutrient enrichment was provided. La. casei BR51 and X2 were preferred, as they were efficient even in the absence of nutrient supply. La. casei X2 was finally selected as candidate probiotic, due to the best growth performances of Artemia, with or without the pathogen.
AbstractList Lactic acid bacteria (LAB) were isolated from rotifer cultures in a marine hatchery to search for potential probiotics for marine animals. Fifteen strains were first selected among a total of 55, according to antibacterial activity against Vibrio sp. Among eight strains identified as Lactobacillus casei, four were highly adhesive, suggesting some ability for surface colonization. The other strains were identified as Lactobacillus plantarum, Lactobacillus dextrinicus, and Leuconostoc sp. To validate probiotic potential, Artemia were challenged against pathogenic Vibrio alginolyticus, with or without one of six selected LAB strains. The six strains protected Artemia against the pathogen, to some extent on condition that nutrient enrichment was provided. La. casei BR51 and X2 were preferred, as they were efficient even in the absence of nutrient supply. La. casei X2 was finally selected as candidate probiotic, due to the best growth performances of Artemia, with or without the pathogen.
Lactic acid bacteria (LAB) were isolated from rotifer cultures in a marine hatchery to search for potential probiotics for marine animals. Fifteen strains were first selected among a total of 55, according to antibacterial activity against Vibrio sp. Among eight strains identified as Lactobacillus casei, four were highly adhesive, suggesting some ability for surface colonization. The other strains were identified as Lactobacillus plantarum, Lactobacillus dextrinicus, and Leuconostoc sp. To validate probiotic potential, Artemia were challenged against pathogenic Vibrio alginolyticus, with or without one of six selected LAB strains. The six strains protected Artemia against the pathogen, to some extent on condition that nutrient enrichment was provided. La. casei BR51 and X2 were preferred, as they were efficient even in the absence of nutrient supply. La. casei X2 was finally selected as candidate probiotic, due to the best growth performances of Artemia, with or without the pathogen.[PUBLICATION ABSTRACT]
Lactic acid bacteria (LAB) were isolated from rotifer cultures in a marine hatchery to search for potential probiotics for marine animals. Fifteen strains were first selected among a total of 55, according to antibacterial activity against Vibrio sp. Among eight strains identified as Lactobacillus casei , four were highly adhesive, suggesting some ability for surface colonization. The other strains were identified as Lactobacillus plantarum , Lactobacillus dextrinicus , and Leuconostoc sp. To validate probiotic potential, Artemia were challenged against pathogenic Vibrio alginolyticus , with or without one of six selected LAB strains. The six strains protected Artemia against the pathogen, to some extent on condition that nutrient enrichment was provided . La. casei BR51 and X2 were preferred, as they were efficient even in the absence of nutrient supply. La. casei X2 was finally selected as candidate probiotic, due to the best growth performances of Artemia , with or without the pathogen.
Author Gatesoupe, François-Joël
Lamari, Faouzi
Sadok, Khouadja
Bakhrouf, Amina
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Issue 2
Keywords Antagonism
Lactic acid bacteria
16S rDNA
ACL
Artemia
Vibrio
Language English
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PublicationSubtitle Journal of the European Aquaculture Society
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Snippet Lactic acid bacteria (LAB) were isolated from rotifer cultures in a marine hatchery to search for potential probiotics for marine animals. Fifteen strains were...
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SubjectTerms Acids
Agricultural sciences
Animal biology
animals
antibacterial properties
Antibiotics
Antimicrobial agents
Aquaculture
Artemia
Bacteria
Bacteriology
Biomedical and Life Sciences
Freshwater & Marine Ecology
growth performance
hatcheries
Invertebrate Zoology
lactic acid bacteria
Lactobacillus casei
Lactobacillus plantarum
Leuconostoc
Life Sciences
Marine
Microbiology and Parasitology
nauplii
Nutrients
Pathogens
Probiotics
Ribosomal DNA
Rotifera
Vibrio alginolyticus
Zoology
Zootechny
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Title Selection of lactic acid bacteria as candidate probiotics and in vivo test on Artemia nauplii
URI https://link.springer.com/article/10.1007/s10499-013-9699-5
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Volume 22
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