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Tamang, J. P.

Publications and source records attributed to Tamang, J. P..

2 recordsLinked to original sources

Predictive functionality of bacteria in naturally fermented milk products of India using PICRUSt2 and Piphillin pipelines

Naturally fermented milk (NFM) products are popular food delicacies in Indian states of Sikkim and Arunachal Pradesh. Bacterial communities in these NFM products of India were previously analysed by high-throughput sequence method. However, predictive gene functionality of NFM products of India has not been studied. In this study, raw sequences of NFM products of Sikkim and Arunachal Pradesh were accessed from MG-RAST/NCBI database server. PICRUSt2 and Piphillin tools were applied to study microbial functional gene prediction. MUSiCC-normalized KOs and mapped KEGG pathways from both PICRUSt2 and Piphillin resulted in higher percentage of the former in comparison to the latter. Though, functional features were compared from both the pipelines, however, there were significant differences between the predictions. Therefore, a consolidated presentation of both the algorithms presented an overall outlook into the predictive functional profiles associated with the microbiota of the NFM products of India.

bioinformatics

Predictive Metabolic Pathways of Lactic Acid Bacterial Strains Isolated from Fermented Foods

We attempted to use PICTRUSt2 software and bioinformatics tool to infer the raw sequences obtained from pure strains of Lactococcus lactis and Lactobacillus plantarum isolated from some fermented foods in India, which were identified by 16S rRNA gene sequencing method. Predictive metabolic pathways of 16S sequences of LAB strains were predicted by PICRUSt2 mapped against KEGG database, which showed genes associated with metabolism (36.74%), environmental information processing (32.34%), genetic information processing (9.86%) and the unclassified (21.06%). KGGE database also showed the dominant genes related to predictive sub-pathways of metabolism at level-2 were membrane transport (31.16%) and carbohydrate metabolism (12.42%).

microbiology