Genomic and functional characterization of Bacillus subtilis subsp. subtilis INPA R296 with emulsifying activity in cultivation with residual soybean oil

Abstract Biosurfactants are amphiphilic microbial metabolites with potential to reduce surface and interfacial tension and to promote emulsification. This study investigated the biosynthetic potential, emulsifying activity, and metabolomic profile of Bacillus subtilis subsp. subtilis INPA R296 cultivated in media supplemented with residual soybean oil. Phylogenomic analyses supported the taxonomic placement of the strain close to Bacillus subtilis subsp. subtilis 168 T . Genome mining predicted 11 biosynthetic gene clusters (BGCs), including NRPS clusters related to surfactin and fengycin biosynthesis. Synteny analyses indicated conservation of these clusters among phylogenetically related Bacillus strains. Functional assays showed that culture-medium composition influenced cell growth, emulsification indices, and emulsifying activity. UHPLC-HRMS/MS combined with molecular networking enabled the putative annotation of metabolites belonging to several chemical classes, including cyclic lipopeptides, N -acyl amino acids, and oxylipins. The main contribution of this study is the integrated evaluation of genomic biosynthetic potential, emulsifying activity, and putative metabolite annotations in strain INPA R296 cultivated with a low-cost agro-industrial residue. Because no biosurfactant yield, surface/interfacial tension, authentic-standard validation, or structural isolation was performed, the results demonstrate emulsifying potential and the occurrence of putatively annotated amphiphilic metabolites rather than confirmed biosurfactant production. These findings identify INPA R296 as a target for further investigation of amphiphilic metabolites with potential biotechnological applications.

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Publication Details

Journal
Brazilian Journal of Microbiology
Published
2026-10-09
DOI
https://doi.org/10.1007/s42770-026-02098-1
Primary Topic
Microbial bioremediation and biosurfactants
Type
article
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article

Genomic and functional characterization of Bacillus subtilis subsp. subtilis INPA R296 with emulsifying activity in cultivation with residual soybean oil

Nadionara Costa Menezes, Rosineide Cardoso de Souza, Aline O. dos Santos, Rogério Eiji Hanada et al.
Brazilian Journal of Microbiology
Microbial bioremediation and biosurfactants
article

Genomic and functional characterization of Bacillus subtilis subsp. subtilis INPA R296 with emulsifying activity in cultivation with residual soybean oil

Nadionara Costa Menezes, Rosineide Cardoso de Souza, Aline O. dos Santos, Rogério Eiji Hanada, Gilvan Ferreira da Silva, Suziane Pinto Rodrigues, Luiz Antônio de Oliveira, Héctor H. F. Koolen, José Carlos Ipuchima da Silva, Larissa Kirsch Barbosa, Igor R. S. Graça
article en

Abstract

Abstract Biosurfactants are amphiphilic microbial metabolites with potential to reduce surface and interfacial tension and to promote emulsification. This study investigated the biosynthetic potential, emulsifying activity, and metabolomic profile of Bacillus subtilis subsp. subtilis INPA R296 cultivated in media supplemented with residual soybean oil. Phylogenomic analyses supported the taxonomic placement of the strain close to Bacillus subtilis subsp. subtilis 168 T . Genome mining predicted 11 biosynthetic gene clusters (BGCs), including NRPS clusters related to surfactin and fengycin biosynthesis. Synteny analyses indicated conservation of these clusters among phylogenetically related Bacillus strains. Functional assays showed that culture-medium composition influenced cell growth, emulsification indices, and emulsifying activity. UHPLC-HRMS/MS combined with molecular networking enabled the putative annotation of metabolites belonging to several chemical classes, including cyclic lipopeptides, N -acyl amino acids, and oxylipins. The main contribution of this study is the integrated evaluation of genomic biosynthetic potential, emulsifying activity, and putative metabolite annotations in strain INPA R296 cultivated with a low-cost agro-industrial residue. Because no biosurfactant yield, surface/interfacial tension, authentic-standard validation, or structural isolation was performed, the results demonstrate emulsifying potential and the occurrence of putatively annotated amphiphilic metabolites rather than confirmed biosurfactant production. These findings identify INPA R296 as a target for further investigation of amphiphilic metabolites with potential biotechnological applications.

Brazilian Journal of MicrobiologyVol. 57(1)
Instituto Nacional de Pesquisas da Amazônia (BR), Universidade do Estado do Amazonas (BR), Embrapa Amazônia Ocidental (BR)
Openalex Percentile: Top 24%
Microbial bioremediation and biosurfactants
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