Wang Jingjing, Wang Zhihao, Liu Chao, Song Meijie, Xu Qianqian, Liu Yang, Yan Hai
School of Chemistry and Biological Engineering, University of Science and Technology Beijing, Beijing, 100083, China.
Biodegradation. 2024 Aug;35(5):539-549. doi: 10.1007/s10532-024-10075-4. Epub 2024 Apr 4.
Acetaldehyde (AL), a primary carcinogen, not only pollutes the environment, but also endangers human health after drinking alcohol. Here a promising bacterial strain was successfully isolated from a white wine cellar pool in the province of Shandong, China, and identified as Bacillus velezensis-YW01 with 16 S rDNA sequence. Using AL as sole carbon source, initial AL of 1 g/L could be completely biodegraded by YW01 within 84 h and the cell-free extracts of YW01 has also been detected to biodegrade the AL, which indicate that YW01 is a high-potential strain for the biodegradation of AL. The optimal culture conditions and the biodegradation of AL of YW01 are at pH 7.0 and 38 °C, respectively. To further analyze the biodegradation mechanism of AL, the whole genome of YW01 was sequenced. Genes ORF1040, ORF1814 and ORF0127 were revealed in KEGG, which encode for acetaldehyde dehydrogenase. Furthermore, ORF0881 and ORF052 encode for ethanol dehydrogenase. This work provides valuable information for exploring metabolic pathway of converting ethanol to AL and subsequently converting AL to carboxylic acid compounds, which opened up potential pathways for the development of microbial catalyst against AL.
乙醛(AL)是一种主要致癌物,不仅污染环境,还会在饮酒后危害人体健康。在此,从中国山东省的一个白葡萄酒酒窖池中成功分离出一株有前景的细菌菌株,并通过16S rDNA序列鉴定为贝莱斯芽孢杆菌-YW01。以AL作为唯一碳源,YW01能够在84小时内将初始浓度为1g/L的AL完全生物降解,并且还检测到YW01的无细胞提取物能够生物降解AL,这表明YW01是一种具有高潜力的AL生物降解菌株。YW01的最佳培养条件和AL生物降解条件分别为pH 7.0和38°C。为了进一步分析AL的生物降解机制,对YW01的全基因组进行了测序。在KEGG中揭示了基因ORF1040、ORF1814和ORF0127,它们编码乙醛脱氢酶。此外,ORF0881和ORF052编码乙醇脱氢酶。这项工作为探索将乙醇转化为AL并随后将AL转化为羧酸化合物的代谢途径提供了有价值的信息,为开发抗AL的微生物催化剂开辟了潜在途径。