首页> 外文期刊>Biotechnology Letters >Sucrose and overexpression of trehalose biosynthetic genes ( otsBA ) increase desiccation tolerance of recombinant Escherichia coli
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Sucrose and overexpression of trehalose biosynthetic genes ( otsBA ) increase desiccation tolerance of recombinant Escherichia coli

机译:蔗糖和海藻糖生物合成基因(otsBA)的过表达增加了重组大肠杆菌的脱水耐受性。

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Survival after desiccation was highest for recombinant strains of E. coli engineered to produce ethanol (KO11 and LY163) and lactate (TG106) when sucrose was provided as the fermentable sugar. Desiccation tolerance was lower with glucose and xylose. Further improvements in desiccation tolerance with sucrose were obtained by combining this with increased expression of otsBA genes encoding trehalose biosynthesis, removal of products from metabolism by resuspending in fresh medium, and harvesting cells prior to the end of log phase. With sucrose and otsBA expression, survivals of 20%–80% were readily achieved. Fermentation tests with EM2L, a derivative of LY163 expressing ostBA, demonstrated that ethanol production from seed fermentations begun with desiccated cells is equivalent to that of an undesiccated control.
机译:当提供蔗糖作为可发酵糖时,工程改造后可生产乙醇(KO11和LY163)和乳酸(TG106)的大肠杆菌重组菌株在干燥后的存活率最高。葡萄糖和木糖的耐干燥性较低。通过将其与编码海藻糖生物合成的otsBA基因表达增加,通过重悬于新鲜培养基中并从代谢中去除产物以及在对数期结束之前收获细胞相结合,可以进一步提高蔗糖的脱水耐受性。通过蔗糖和otsBA的表达,存活率很容易达到20%–80%。用表达ostBA的LY163的衍生物EM2L进行的发酵试验表明,从以干燥细胞开始的种子发酵中生产乙醇与未干燥对照的乙醇相当。

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