产酸作用
盐度
产甲烷菌
产甲烷
丁酸
化学
食品科学
甲烷杆菌
耐盐性
厌氧消化
生物化学
甲烷八叠球菌
微生物种群生物学
环境化学
生物
古细菌
甲烷
生态学
细菌
基因
有机化学
遗传学
作者
Yijang Yin,Zengshuai Zhang,Kunlun Yang,Peng Gu,Shiguang Liu,Yifan Jia,Zhaochang Zhang,Tao Wang,Jianqi Yin,Hengfeng Miao
标识
DOI:10.1016/j.biortech.2022.127978
摘要
The threshold salt concentration to inhibit the anaerobic digestion (AD) has been intensively investigated, but its insight mechanism is not fully revealed. Therefore, this study systematically investigated the effect of salinity on acidogenesis and methanogenesis and its mechanism. Results showed that low salinity level (i.e. 0.6%) had stimulatory effect on volatile fatty acids (VFA) and methane production, while significant inhibition was observed with further increased salinity. Moreover, high salinity limited the butyric acid degradation at acidogenesis process. The decreases of enzymes (AK and PTA) activity and functional genes (ackA, pta and ACOX) expression that related to β-oxidation explained the butyric acid accumulation at high salinity levels. Microbial community analysis revealed high salinity levels significantly inhibited the proliferation of Syntrophomonas sp., which are known to be associated with butyric acid degradation. Similarly, the relative abundance of acetoclastic methanogen (Methanothrix sp.) and methylotrophic methanogen (Methanolinea sp.) significantly decreased at salinity condition.
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