枯草芽孢杆菌
莎梵婷
抗菌剂
突变体
生物化学
细菌
生物
拉伤
基因
ATP结合盒运输机
基因敲除
新陈代谢
微生物学
野生型
化学
运输机
遗传学
解剖
作者
Hongxia Liu,Xiaoxu Qu,Ling Gao,Shengming Zhao,Zhaoxin Lu,Xiaomei Bie
标识
DOI:10.1016/j.jbiotec.2016.08.018
摘要
Gene knockout is an important approach to improve the production of antimicrobial compounds. B. subtilis PB2-LS10, derived from B. subtilis PB2-L by a surfactin synthetase (srf) genes knockout, exhibits stronger inhibitory action than its parental strain against all tested pathogenic bacteria and fungi. The antimicrobial extracts produced by B. subtilis PB2-L and B. subtilis PB2-LS10 respectively were characterized by the high-resolution LC-ESI-MS. To provide further insight into the distinct antimicrobial activities, we investigated the impact of the srf genes deletion on the growth and gene transcriptional profile of the strains. The mutant strain grew quickly and reached stationary phase 2h earlier than the wild-type. Prominent expression changes in the modified strain involved genes that were essential to metabolic pathways and processes. Genes related to amino acid transport, ATP-binding cassette (ABC) transporters and protein export were up-regulated in strain PB2-LS10. However, amino acid metabolism, carbohydrate metabolism and fatty acid metabolism were repressed. Because of its excellent antimicrobial activity, strain PB2-LS10 has potential for use in food preservation.
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