Abstract
Biotechnology can lead to cost-effective processes for capturing carbon dioxide using the natural or genetically engineered metabolic capabilities of microorganisms. However, introducing desirable genetic modifications into microbial strains without compromising their fitness (growth yield and rate) during industrial-scale cultivation remains a challenge. The approach and results presented can guide optimal pathway configurations for enhanced prokaryotic carbon fixation through metabolic engineering. By aligning strain modifications with these theoretically revealed near-optimal pathway configurations, we can optimally engineer strains of good fitness under open culture industrial-scale conditions.
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CITATION STYLE
Taha, A., Patón, M., & Rodríguez, J. (2025). Bioenergetic trade-offs can reveal the path to superior microbial CO 2 fixation pathways. MSystems, 10(2). https://doi.org/10.1128/msystems.01274-24
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