微生物联合体
生物修复
矿化(土壤科学)
生物降解
微生物降解
代谢途径
生物地球化学循环
化学
微生物种群生物学
环境化学
微生物代谢
生物
降级(电信)
生物化学
微生物
食品科学
细菌
新陈代谢
生态学
遗传学
土壤水分
电信
计算机科学
作者
Zhepu Ruan,Mengjun Xu,Youwen Xing,Qi Jiang,Bingang Yang,Jiandong Jiang,Xihui Xu
标识
DOI:10.1021/acs.jafc.2c03057
摘要
Microbial communities play vital roles in biogeochemical cycles, allowing biodegradation of a wide range of pollutants. Although many studies have shown the importance of interspecies interactions on activities of communities, fully elucidating the complex interactions in microbial communities is still challenging. Here, we isolated a consortium containing two bacterial strains (Acinetobacter sp. AG3 and Bacillus sp. R45), which could mineralize bromoxynil octanoate (BO) with higher efficiency than either strain individually. The BO degradation pathway by the synergistic consortium was elucidated, and interspecies interactions in the consortium were explored using genome-scale metabolic models (GSMMs). Modeling showed that growth and degradation enhancements were driven by metabolic interactions, such as syntrophic exchanges of small metabolites in the consortium. Besides, nutritional enhancers were predicted to improve BO degradation, which were tested experimentally. Overall, our results will enhance our understanding of microbial mineralization of BO by consortia and promote the application of microbial communities for bioremediation.
科研通智能强力驱动
Strongly Powered by AbleSci AI