Genomic Insights into Antimicrobial Biosynthetic Potential of Bacillus velezensis Isolated from Traditional Peruvian Tocosh
Dámaris Esquén Bayona, Cristian Mauricio Barreto Pinilla, Jimena Giraldo Flores, Belkys Medrano Salazar, Jesús Valencia Navarro, Joaquin Rodriguez Trelles, Kiara Flores Jiménez, Joaquim Ruiz, Roberto Alcántara, Frank Guzman Escudero

TL;DR
This study explores the antimicrobial potential of a Bacillus velezensis strain from Peruvian tocosh, revealing its ability to produce multiple bioactive compounds.
Contribution
The study identifies a Bacillus velezensis strain from traditional Peruvian tocosh with high NRPS production and diverse antimicrobial biosynthetic potential.
Findings
The strain produces seven known antimicrobial compounds, including difficidin and bacillomycin D.
Antimicrobial activity was confirmed against S. aureus strains in vitro.
Key biosynthetic genes are expressed during the exponential growth phase.
Abstract
Tocosh, a traditional Peruvian fermented potato product, is known for its health-promoting properties, including its antioxidant, anti-inflammatory, probiotic, and antibiotic effects, which have popularized its consumption, particularly in rural areas. To gain a better understanding of its antimicrobial properties, this study aimed to perform a comprehensive whole-genome analysis and functional assessment of the Bacillus velezensis TCSH0001 strain isolated from tocosh. The isolate was identified through whole-genome sequencing using the MinION nanopore platform. AntiSMASH analysis revealed nine biosynthetic gene clusters (BGCs) potentially responsible for producing secondary metabolites with antibiotic potential. Notably, seven BGCs showed a 100% similarity to known clusters involved in the biosynthesis of polyketide synthases (PKSs) and non-ribosomal peptides (NRPSs), including…
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Taxonomy
TopicsMicrobial Natural Products and Biosynthesis · Probiotics and Fermented Foods · Plant-Microbe Interactions and Immunity
