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Proteolytic Bacillus sp. Isolation and Identification from Tannery Alkaline Baths.
Manuela Lageiro1,2,3, Fernanda Simões1, Nuno Alvarenga1,3
1National Institute of Agricultural and Veterinary Research (INIAV), Unit of Technology and Innovation, 2780-157 Oeiras, Portugal.
Molecules (Basel, Switzerland)
|September 13, 2025
Summary
Novel microbial alkaline proteases from *Bacillus subtilis* offer eco-sustainable solutions for industries. These enzymes reduce chemical use and effluent treatment costs, supporting green chemistry and the bioeconomy.
Area of Science:
- Biotechnology
- Enzyme Technology
- Industrial Microbiology
Background:
- Microbial alkaline proteases are crucial for sustainable industrial processes, offering alternatives to harsh chemicals.
- Reducing chemical usage and effluent treatment costs are key drivers for adopting eco-friendly enzymatic solutions.
- The Portuguese tannery agroindustry is a potential source for novel, industrially relevant microbial proteases.
Purpose of the Study:
- To isolate and identify novel alkaline protease-producing microbial strains from tannery agroindustry waste.
- To characterize the proteolytic activity and industrial applicability of the isolated strains.
- To evaluate the potential of these microbial proteases in various agroindustrial applications.
Main Methods:
- Isolation of microbial strains from alkaline tannery baths.
- Submerged cultivation and measurement of proteolytic activity.
- Identification using API biochemical tests, molecular biology, and GC-FAME analysis.
- Characterization of enzyme properties and growth kinetics.
Main Results:
- Two potent protease-producing strains were identified as *Bacillus subtilis* (CCMI 1253 and CCMI 1254).
- *B. subtilis* CCMI 1253 showed high proteolytic activity (0.70 ± 0.01 U mL-1) and a growth rate of 0.88 ± 0.10 h-1.
- The produced proteases demonstrated extracellular activity and adaptability to industrial conditions.
Conclusions:
- *Bacillus subtilis* strains CCMI 1253 and CCMI 1254 are promising sources of alkaline proteases for industrial applications.
- These microbial proteases can be utilized in leather processing, detergents, and waste treatment, aligning with green chemistry principles.
- The study highlights the potential of microbial proteases in advancing the bioeconomy and sustainable industrial practices.

