首页> 美国卫生研究院文献>Microbial Cell Factories >Adaptative biochemical pathways and regulatory networks in Klebsiella oxytoca BAS-10 producing a biotechnologically relevant exopolysaccharide during Fe(III)-citrate fermentation
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Adaptative biochemical pathways and regulatory networks in Klebsiella oxytoca BAS-10 producing a biotechnologically relevant exopolysaccharide during Fe(III)-citrate fermentation

机译:产酸克雷伯菌BAS-10中的适应性生化途径和调控网络在柠檬酸铁(III)发酵过程中产生与生物技术相关的胞外多糖

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摘要

BackgroundA bacterial strain previously isolated from pyrite mine drainage and named BAS-10 was tentatively identified as Klebsiella oxytoca. Unlikely other enterobacteria, BAS-10 is able to grow on Fe(III)-citrate as sole carbon and energy source, yielding acetic acid and CO2 coupled with Fe(III) reduction to Fe(II) and showing unusual physiological characteristics. In fact, under this growth condition, BAS-10 produces an exopolysaccharide (EPS) having a high rhamnose content and metal-binding properties, whose biotechnological applications were proven as very relevant.
机译:背景技术以前从黄铁矿排泄物中分离出的一种细菌菌株,即BAS-10,被暂时鉴定为产酸克雷伯菌。与其他肠杆菌不同,BAS-10能够在柠檬酸Fe(III)上生长,作为唯一的碳和能源,产生乙酸和CO2,再加上Fe(III)还原为Fe(II),并显示出异常的生理特性。实际上,在这种生长条件下,BAS-10会产生具有高鼠李糖含量和金属结合特性的胞外多糖(EPS),其生物技术应用已被证明非常相关。

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