Functional and genomic characterization of a novel probiotic Lactobacillus johnsonii KD1 against shrimp WSSV infection
White Spot syndrome virus (WSSV) causes rapid shrimp mortality and production loss worldwide. This study demonstrates potential use of Lactobacillus johnsonii KD1 as an anti-WSSV agent for post larva shrimp cultivation and explores some potential mechanisms behind the anti-WSSV properties. Treatment...
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Veröffentlicht in: | Scientific reports 2023-12, Vol.13 (1), p.21610-21610, Article 21610 |
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Sprache: | eng |
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Zusammenfassung: | White Spot syndrome virus (WSSV) causes rapid shrimp mortality and production loss worldwide. This study demonstrates potential use of
Lactobacillus johnsonii
KD1 as an anti-WSSV agent for post larva shrimp cultivation and explores some potential mechanisms behind the anti-WSSV properties. Treatment of
Penaeus vannamei
shrimps with
L. johnsonii
KD1 prior to oral challenge with WSSV-infected tissues showed a significantly reduced mortality. In addition, WSSV copy numbers were not detected and shrimp immune genes were upregulated. Genomic analysis of
L. johnsonii
KD1 based on Illumina and Nanopore platforms revealed a 1.87 Mb chromosome and one 15.4 Kb plasmid. Only one antimicrobial resistance gene (
ermB
) in the chromosome was identified. Phylogenetic analysis comparing
L. johnsonii
KD1 to other
L. johnsonii
isolates revealed that
L. johnsonii
KD1 is closely related to
L. johnsonii
GHZ10a isolated from wild pigs. Interestingly,
L. johnsonii
KD1 contains isolate-specific genes such as genes involved in a type I restriction-modification system and CAZymes belonging to the GT8 family. Furthermore, genes coding for probiotic survival and potential antimicrobial/anti-viral metabolites such as a homolog of the bacteriocin helveticin-J were found. Protein–protein docking modelling suggests the helveticin-J homolog may be able to block VP28–PmRab7 interactions and interrupt WSSV infection. |
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ISSN: | 2045-2322 2045-2322 |
DOI: | 10.1038/s41598-023-47897-w |