Center for Microbial Ecology and Technology (CMET), Ghent University, Ghent, Belgium.
Center for Advanced Process Technology for Urban Resource Recovery (CAPTURE), Ghent, Belgium.
Microb Biotechnol. 2024 Jan;17(1):e14321. doi: 10.1111/1751-7915.14321. Epub 2023 Aug 30.
Clostridium luticellarii is a recently discovered acetogen that is uniquely capable of producing butyric and isobutyric acid from various substrates (e.g. methanol), but it is unclear which factors influence its (iso)butyric acid production from H and CO . We aimed to investigate the autotrophic metabolism of C. luticellarii by identifying the necessary growth conditions and examining the effects of pH and metabolite levels on product titers and selectivity. Results show that autotrophic growth of C. luticellarii requires the addition of complex nutrient sources and the absence of shaking conditions. Further experiments combined with thermodynamic calculations identified pH as a key parameter governing the direction of metabolic fluxes. At circumneutral pH (~6.5), acetic acid is the sole metabolic end product but C. luticellarii possesses the unique ability to co-oxidize organic acids such as valeric acid under high H partial pressures (>1 bar). Conversely, mildly acidic pH (≤5.5) stimulates the production of butyric and isobutyric acid while partly halting the oxidation of organic acids. Additionally, elevated acetic acid concentrations stimulated butyric and isobutyric acid production up to a combined selectivity of 53 ± 3%. Finally, our results suggest that isobutyric acid is produced by a reversible isomerization of butyric acid, but valeric and caproic acid are not isomerized. These combined insights can inform future efforts to optimize and scale-up the production of valuable chemicals from CO using C. luticellarii.
产丁酸梭菌是一种最近发现的乙酰辅酶 A 合成酶,能够利用各种底物(例如甲醇)生产丁酸和异丁酸,但目前尚不清楚哪些因素影响其利用 H 和 CO 生产(异)丁酸。我们旨在通过确定必要的生长条件并研究 pH 值和代谢物水平对产物产率和选择性的影响,来研究产丁酸梭菌的自养代谢。结果表明,产丁酸梭菌的自养生长需要添加复杂的营养源,并避免摇动条件。进一步的实验结合热力学计算确定 pH 值是控制代谢通量方向的关键参数。在近中性 pH 值(约 6.5)下,乙酸是唯一的代谢终产物,但产丁酸梭菌具有独特的能力,可在高 H 分压(>1 巴)下共氧化有机酸,如戊酸。相反,酸性 pH 值(≤5.5)刺激丁酸和异丁酸的生产,同时部分抑制有机酸的氧化。此外,升高的乙酸浓度刺激丁酸和异丁酸的生产,最高可达 53±3%的综合选择性。最后,我们的结果表明,异丁酸是由丁酸的可逆异构化产生的,但戊酸和己酸没有异构化。这些综合见解可以为未来利用产丁酸梭菌优化和扩大 CO 生产有价值化学品的生产提供信息。