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首页> 外文期刊>Journal of Environmental Management >Structural identification of lipopeptide biosurfactants produced by Bacillus subtilis strains grown on the media obtained from renewable natural resources
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Structural identification of lipopeptide biosurfactants produced by Bacillus subtilis strains grown on the media obtained from renewable natural resources

机译:枯草芽孢杆菌菌株产生的脂肽生物表面活性剂的结构鉴定,这些菌株生长在可再生自然资源培养基上

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摘要

The aim of the study was to identify and characterize lipopeptide (LP) biosurfactants produced by twoBacillus subtilisstrains (KP7 and I′-1a) grown on various media prepared from renewable natural resources: two different brewery wastewaters (BW#4 and BW#6), 2% beet molasses (M), apple peels extract (APE) supplemented with 0.25% of yeast extract (YE) or 0.25% peptone (P), and similarly supplemented carrot peels extract (CPE). In all used media both strains retained their individual LP production signature characterized by surfactin and iturin overproduction exhibited by KP7 and I′-1a strain, respectively. The production level and the structural diversity of synthesized LPs were dependent on the medium composition. In the CPE+YE medium it was higher than the yield obtained in Luria-Bertani (140.6 and 100.3 mg L−1, respectively). Surfactins were produced by both strains as a mixture of four homologues (C13-C16) with the domination of variant C14. All other broths prepared from renewable resources strongly stimulated the iturin production by I′-1a strain with the exception of BW media. The highest iturin concentration (428.7 mg L−1) obtained in the CPE+P culture of I′-1a strain was about seven-fold higher than in LB. In all cultures only iturin A was identified. Among four iturin homologues (C13-16) produced by I′-1a strain, the highest relative contents of C16 variant (70–80%) were calculated for samples obtained from APE+P and CPE+P media. The obtained data indicate that the waste composition has an influence on both the types and amounts of biosurfactants produced by studiedB. subtilisstrains.
机译:该研究的目的是鉴定和表征由两种枯草芽孢杆菌菌株(KP7和I'-1a)产生的脂肽(LP)生物表面活性剂,这些枯草芽孢杆菌在可再生自然资源制备的多种培养基上生长:两种不同的啤酒废水(BW#4和BW#6) ,2%甜菜糖蜜(M),苹果皮提取物(APE)补充有0.25%酵母提取物(YE)或0.25%蛋白ept(P)以及类似补充的胡萝卜皮提取物(CPE)。在所有使用的培养基中,两种菌株均保留了各自的LP产生特征,其特征分别为表面活性素和Iturin过高,分别由KP7和I'-1a菌株表现出。合成LP的生产水平和结构多样性取决于培养基组成。在CPE + YE培养基中,它比Luria-Bertani中获得的产率更高(分别为140.6和100.3 mg L-1)。两种菌株均以四种同系物(C13-C16)的混合物产生表面肌动蛋白,并以变异体C14为主。除BW培养基外,所有其他由可再生资源制备的肉汤均强烈刺激了I'-1a菌株产生的iturin。在I'-1a菌株的CPE + P培养物中获得的最高iturin浓度(428.7 mg L-1)比LB高约7倍。在所有文化中,仅鉴定了尿素A。在I'-1a菌株产生的四个iturin同源物(C13-16)中,对于从APE + P和CPE + P培养基获得的样品,计算出C16变体的最高相对含量(70-80%)。获得的数据表明,废物成分对研究B生产的生物表面活性剂的类型和数量都有影响。枯草杆菌。

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