Genes· 2026Q2
Complementary Genomic and Functional Potential of Bacillus subtilis RKM-1 and Bacillus licheniformis sRKM-2 for Organic Waste Bioconversion and Composting
- 0citations
- Q2SCImago
- 2026year
Short summary
Bacillus subtilis RKM-1 and Bacillus licheniformis RKM-2, isolated from sewage sludge, show complementary genomic and functional potential for organic waste bioconversion and composting.
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Key points
- Bacillus subtilis RKM-1 and Bacillus licheniformis RKM-2 were identified from sewage sludge.
- RKM-1 has genomic features for biogenic element transformation and secondary metabolite biosynthesis.
- RKM-2 possesses genes for complex carbohydrate utilization (e.g., amyA, bglC, celA).
- Inoculation with both strains accelerated the thermophilic phase of sewage sludge composting.
- RKM-1 reached the highest compost temperature (60 °C), while RKM-2 most effectively promoted compost maturation (C:N ratio of 9:1 in 60 days).
AI-generated from the title and abstract; the full text is not read.
Abstract
Background: Efficient bioconversion of organic waste requires microorganisms with the potential to degrade complex organic compounds and transform biogenic elements. Methods: In this study, two thermophilic bacterial strains, RKM-1 and RKM-2, isolated from sewage sludge, were characterized using whole-genome sequencing and comparative genomics to establish their taxonomic positions and assess their functional potential. Results: RKM-1 and RKM-2 were identified as Bacillus subtilis and Bacillus licheniformis, respectively, with maximum ANI values of 98.76% and 99.76%. Comparative genomic analysis revealed differences in the functional potential of the two strains. RKM-1 exhibited genomic features associated with the transformation of biogenic elements and secondary metabolite biosynthesis, whereas RKM-2 showed greater genetic potential for the utilization and transformation of complex carbohydrates, supported by the presence of genes such as amyA, bglC, celA, glcT, galE, galU, and glgABCD. These differences indicate potentially complementary functional profiles of the two strains in the bioconversion of organic substrates. During sewage sludge composting, inoculation with both strains accelerated the onset of the thermophilic phase. Bacillus subtilis RKM-1 reached the highest compost temperature (60 °C), whereas Bacillus licheniformis RKM-2 most effectively promoted compost maturation, reducing the C:N ratio to 9:1 within 60 days. Conclusions: These findings demonstrate a strong relationship between the genomic characteristics and functional traits of the investigated strains and highlight the value of comparative genomics as a powerful tool for identifying promising thermophilic microorganisms for efficient bioconversion of organic wastes.
The authors' abstract, as published at the source. Genes, 2026 · DOI ↗
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Field: Soil Science
Soil ScienceAgricultural and Biological Sciences