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首页> 外文期刊>FEMS Microbiology Ecology >Lactobacillus backii and Pediococcus damnosus isolated from 170-year-old beer recovered from a shipwreck lack the metabolic activities required to grow in modern lager beer
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Lactobacillus backii and Pediococcus damnosus isolated from 170-year-old beer recovered from a shipwreck lack the metabolic activities required to grow in modern lager beer

机译:从沉船中恢复的170岁的啤酒中嗜睡和Pediococcus damnosus缺乏在现代啤酒中生长所需的代谢活动

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摘要

In 2010, bottles of beer containing viable bacteria of the common beer-spoilage species Lactobacillus backii and Pediococcus damnosus were recovered from a shipwreck near the angstrom land Islands, Finland. The 170-year quiescent state maintained by the shipwreck bacteria presented a unique opportunity to study lactic acid bacteria ( LAB) evolution vis-a-vis growth and survival in the beer environment. Three shipwreck bacteria (one L. backii strain and two P. damnosus strains) and modern-day beer-spoilage isolates of the same two species were genome sequenced, characterized for hop iso-alpha-acid tolerance, and growth in degassed lager and wheat beer. In addition, plasmid variants of the modern-day P. damnosus strain were analyzed for the effect of plasmid-encoded genes on growth in lager beer. Coding content on two plasmids was identified as essential for LAB growth in modern lager beer. Three chromosomal regions containing genes related to sugar transport and cell wall polysaccharides were shared by pediococci able to grow in beer. Our results show that the three shipwreck bacteria lack the necessary plasmid-located genetic content to grow in modern lager beer, but carry additional genes related to acid tolerance and biofilm formation compared to their modern counterparts.
机译:2010年,含有普通啤酒腐败物种乳酸乳杆菌和Pediococcus damnosus的可行细菌的瓶啤酒被从赫斯特罗姆陆群岛,芬兰的沉船中回收。由海难组织维持的170年静态状态提出了研究乳酸菌(实验室)进化Vis-α-Vis在啤酒环境中生长和生存的独特机会。三个海难(一个L. backii菌株和两个P. damnosus菌株)和同一两个物种的现代啤酒腐败分离株是基因组测序,其特征在于啤酒花Iso-α-酸耐受性,并且脱气的啤酒和小麦的生长啤酒。此外,分析了现代P. Damnosus菌株的质粒变体进行质粒编码基因对贮藏啤酒生长的影响。两种质粒上的编码含量被鉴定为现代啤酒的实验室生长必不可少。含有与糖传输和细胞壁多糖有关的基因的三种染色体区域被能够在啤酒中生长的Pediococci共用。我们的研究结果表明,三个海难细菌缺乏在现代啤酒中生长的必要质粒遗传含量,但与现代同行相比,携带与酸性耐受性和生物膜形成相关的额外基因。

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