Shin Nara, Kim Su Hyun, Oh Jinok, Kim Suwon, Lee Yeda, Shin Yuni, Choi Suhye, Bhatia Shashi Kant, Kim Yun-Gon, Yang Yung-Hun
Department of Biological Engineering, College of Engineering, Konkuk University, Seoul 05029, Republic of Korea.
Institute for Ubiquitous Information Technology and Application, Konkuk University, Seoul 05029, Republic of Korea.
Polymers (Basel). 2024 Feb 28;16(5):651. doi: 10.3390/polym16050651.
Polybutylene succinate (PBS) stands out as a promising biodegradable polymer, drawing attention for its potential as an eco-friendly alternative to traditional plastics due to its biodegradability and reduced environmental impact. In this study, we aimed to enhance PBS degradation by examining artificial consortia composed of bacterial strains. Specifically, sp. JY49, sp. JY35, and sp. NR4 were assessed for their capabilities and synergistic effects in PBS degradation. When only two types of strains, sp. JY35 and sp. NR4, were co-cultured as a consortium, a notable increase in degradation activity toward PBS was observed compared to their activities alone. The consortium of sp. JY35 and sp. NR4 demonstrated a remarkable degradation yield of 76.5% in PBS after 10 days. The degradation of PBS by the consortium was validated and our findings underscore the potential for enhancing PBS degradation and the possibility of fast degradation by forming artificial consortia, leveraging the synergy between strains with limited PBS degradation activity. Furthermore, this study demonstrated that utilizing only two types of strains in the consortium facilitates easy control and provides reproducible results. This approach mitigates the risk of losing activity and reproducibility issues often associated with natural consortia.
聚丁二酸丁二醇酯(PBS)作为一种有前景的可生物降解聚合物脱颖而出,因其生物可降解性和对环境影响的降低,作为传统塑料的环保替代品的潜力而备受关注。在本研究中,我们旨在通过研究由细菌菌株组成的人工菌群来增强PBS的降解。具体而言,对菌株JY49、JY35和NR4在PBS降解中的能力和协同效应进行了评估。当仅将两种类型的菌株JY35和NR4作为菌群共同培养时,与它们单独的活性相比,观察到对PBS的降解活性显著增加。JY35和NR4菌株组成的菌群在10天后对PBS的降解率达到了76.5%,十分显著。该菌群对PBS的降解得到了验证,我们的研究结果强调了通过形成人工菌群来增强PBS降解的潜力以及快速降解的可能性,利用了PBS降解活性有限的菌株之间的协同作用。此外,本研究表明,在菌群中仅使用两种类型的菌株便于轻松控制,并能提供可重复的结果。这种方法降低了与天然菌群相关的活性丧失风险和可重复性问题。