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n-Alkane Chain Length Alters Dietzia sp Strain DQ12-45-1b Biosurfactant Production and Cell Surface Activity
Wang, Xing-Biao ; Nie, Yong ; Tang, Yue-Qin ; Wu, Gang ; Wu, Xiao-Lei
刊名applied and environmental microbiology
2013
关键词SEA OIL PLUME MICROBIAL SURFACTANTS CRUDE-OIL DEGRADATION BIOTECHNOLOGY HYDROCARBONS METABOLISM HEXADECANE BACTERIUM WATER
DOI10.1128/AEM.02497-12
英文摘要Upon growth on n-hexadecane (C-16), n-tetracosane (C-24), and n-hexatriacontane (C-36), Dietzia sp. strain DQ12-45-1b could produce different glycolipids, phospholipids, and lipopeptides. Interestingly, cultivation with C-36 increased cell surface hydrophobic activity, which attenuated the negative effect of the decline of the emulsification activity. These results suggest that the mechanisms of biosurfactant production and cell surface hydrophobicity are dependent upon the chain lengths of the n-alkanes used as carbon sources.; Biotechnology & Applied Microbiology; Microbiology; SCI(E); EI; PubMed; 5; ARTICLE; 1; 400-402; 79
语种英语
内容类型期刊论文
源URL[http://ir.pku.edu.cn/handle/20.500.11897/315664]  
专题工学院
推荐引用方式
GB/T 7714
Wang, Xing-Biao,Nie, Yong,Tang, Yue-Qin,et al. n-Alkane Chain Length Alters Dietzia sp Strain DQ12-45-1b Biosurfactant Production and Cell Surface Activity[J]. applied and environmental microbiology,2013.
APA Wang, Xing-Biao,Nie, Yong,Tang, Yue-Qin,Wu, Gang,&Wu, Xiao-Lei.(2013).n-Alkane Chain Length Alters Dietzia sp Strain DQ12-45-1b Biosurfactant Production and Cell Surface Activity.applied and environmental microbiology.
MLA Wang, Xing-Biao,et al."n-Alkane Chain Length Alters Dietzia sp Strain DQ12-45-1b Biosurfactant Production and Cell Surface Activity".applied and environmental microbiology (2013).
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