Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Comparative genomic analysis of Latilactobacillus sakei strains provides new insights into their association with different niche adaptations

View through CrossRef
Abstract Latilactobacillus sakei , a lactic acid bacterium in diverse environments such as fermented foods, meat, and the human gastrointestinal tract, exhibits significant genetic diversity and niche-specific adaptations. This study conducts a comprehensive comparative genomic analysis of 30 complete L. sakei genomes to uncover the genetic mechanisms underlying these adaptations. Phylogenetic analysis divided the species into three distinct clades that did not correlate with the source of isolation and did not suggest any niche-specific evolutionary direction. The pan-genome analysis revealed a substantial core genome alongside a diverse genetic repertoire, indicating both high genetic conservation and adaptability. Predicted growth rates based on codon use bias analysis suggest that L. sakei strains have an overall faster growth rate and may be able to efficiently dominant in competitive environments. Plasmid analysis revealed a variety of plasmids carrying genes essential for carbohydrate metabolism, enhancing L. sakei’ s ability to thrive in various fermentation substrates. It was also found that the number of genes belonging to the GH1 family among sugar metabolism-related genes present on chromosomes and plasmids varies between strains, and that AA1, which is involved in alcohol oxidation, has been acquired from plasmids. BLAST analysis revealed that some strains have environmental adaptation gene clusters of cell surface polysaccharides that may mediate attachment to food and mucosa. These findings not only underscore the genetic and functional diversity of L. sakei but also highlight its potential as a potent starter culture in fermentation and as a probiotic. The knowledge gleaned from this study lays a solid foundation for future research aimed at harnessing the genetic traits of L. sakei strains for industrial and health-related applications.
Title: Comparative genomic analysis of Latilactobacillus sakei strains provides new insights into their association with different niche adaptations
Description:
Abstract Latilactobacillus sakei , a lactic acid bacterium in diverse environments such as fermented foods, meat, and the human gastrointestinal tract, exhibits significant genetic diversity and niche-specific adaptations.
This study conducts a comprehensive comparative genomic analysis of 30 complete L.
sakei genomes to uncover the genetic mechanisms underlying these adaptations.
Phylogenetic analysis divided the species into three distinct clades that did not correlate with the source of isolation and did not suggest any niche-specific evolutionary direction.
The pan-genome analysis revealed a substantial core genome alongside a diverse genetic repertoire, indicating both high genetic conservation and adaptability.
Predicted growth rates based on codon use bias analysis suggest that L.
sakei strains have an overall faster growth rate and may be able to efficiently dominant in competitive environments.
Plasmid analysis revealed a variety of plasmids carrying genes essential for carbohydrate metabolism, enhancing L.
sakei’ s ability to thrive in various fermentation substrates.
It was also found that the number of genes belonging to the GH1 family among sugar metabolism-related genes present on chromosomes and plasmids varies between strains, and that AA1, which is involved in alcohol oxidation, has been acquired from plasmids.
BLAST analysis revealed that some strains have environmental adaptation gene clusters of cell surface polysaccharides that may mediate attachment to food and mucosa.
These findings not only underscore the genetic and functional diversity of L.
sakei but also highlight its potential as a potent starter culture in fermentation and as a probiotic.
The knowledge gleaned from this study lays a solid foundation for future research aimed at harnessing the genetic traits of L.
sakei strains for industrial and health-related applications.

Related Results

Primerjalna književnost na prelomu tisočletja
Primerjalna književnost na prelomu tisočletja
In a comprehensive and at times critical manner, this volume seeks to shed light on the development of events in Western (i.e., European and North American) comparative literature ...
Isolation And Characterization Of Biosurfactant Producing Bacteria From Different Environmental Soil Samples
Isolation And Characterization Of Biosurfactant Producing Bacteria From Different Environmental Soil Samples
Biosurfactants are natural substances produced by several bacterial and fungal organisms that are amphiphilic and are extracellular (a part of the cell membrane). Biosurfactants ca...
STUDIES ON THE BIOLOGY OF STREPTOCOCCUS
STUDIES ON THE BIOLOGY OF STREPTOCOCCUS
The interpretation of the results in these experiments is difficult on account of the variations in the physical capacity of different strains of hemolytic streptococcus to aggluti...
Feasibility of Coupling Dehydration‐Impregnation by Soaking Treatment of Meat with Fermentation by Lactobacillus sakei
Feasibility of Coupling Dehydration‐Impregnation by Soaking Treatment of Meat with Fermentation by Lactobacillus sakei
Abstract:  This study examined the feasibility of coupling dehydration‐impregnation by soaking (DIS) with a subsequent lactic fermentation in the treatment of m...

Back to Top