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Dhakephalkar, P. K.

Publications and source records attributed to Dhakephalkar, P. K..

2 recordsLinked to original sources

Genomic evaluation of BC4, a consortium of four Alkalihalobacillus clausii isolates, confirms its probiotic potential and safety in usage

Four strains of Alkalihalobacillus clausii B603/Nb (resistant to rifampicin), B619/R (resistant to streptomycin), B637/Nm (resistant to tetracyclin) and B106 (resistant to chloramphenicol) were isolated from various sources and used to prepare a consortium designated as BC4. Genomes of the constituent strains of the BC4 consortium were evaluated to investigate their genetic makeup and determine their probiotic potential. Gene prediction and functional annotation were performed using RAST. The data obtained was mined for genes encoding various phenotypic traits. This analysis revealed the presence of several genes encoding probiotic attributes like (i) survivability in the presence of low pH, bile, oxidative stress; (ii) bacterial aggregation and adhesion to gut epithelium, etc.; and (iii) enzymes/ molecules conferring health benefits. Further, the genome analysis also confirmed the genes required for enhancing the nutritional amenability, health-promoting, and disease-preventing traits were present. Several genes encoding multiple antibiotic resistance were detected; however, none of these genes was located on mobile elements such as plasmids, transposons, etc. The absence of genes encoding virulence factors, pathogenic islands, emetic toxins, etc., as well as mobile genetic elements, underscored the safety of BC4 isolates.

microbiology↗

Genomic architecture of three newly isolated unclassified Butyrivibrio species elucidate their potential role in the rumen ecosystem

One cellulose-degrading strain CB08 and two xylan-degrading strains XB500-5 and X503 were isolated from buffalo rumen. All the strains were designated as putative novel species of Butyrivibrio based on phylogeny, phylogenomy, digital DNA-DNA hybridization, and average nucleotide identity with their closest type strains. The draft genome length of CB08 was [~]3.54 Mb, while X503 and XB500-5 genome sizes were [~]3.24 Mb and [~]3.27 Mb, respectively. Only 68.28% of total orthologous clusters were shared among three genomes, and 40-44% of genes were identified as hypothetical proteins. The presence of genes encoding diverse carbohydrate-active enzymes (CAZymes) exhibited the lignocellulolytic potential of these strains. Further, the genome annotations revealed the metabolic pathways for monosaccharide fermentation to acetate, butyrate, lactate, ethanol, and hydrogen. The presence of genes for chemotaxis, antibiotic resistance, antimicrobial activity, synthesis of vitamins, and essential fatty acid suggested the versatile metabolic nature of these Butyrivibrio strains in the rumen environment.

genomics↗