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Combining evolutionary and metabolic engineering in Rhodosporidium toruloides for lipid production with non-detoxified wheat straw hydrolysates

机译:用非解毒小麦秸秆水解产物将进化和代谢工程结合在罗达孢子植物中的脂质生产

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摘要

Improving the yield of carbohydrate to lipid conversion and lipid productivity are two critical goals to develop an economically feasible process to commercialize microbial oils. Lignocellulosic sugars are potential low-cost carbon sources for this process but their use is limited by the toxic compounds produced during biomass pretreatment at high solids loading, and by the pentose sugars (mainly xylose) which are not efficiently metabolized by many microorganisms. Adaptive laboratory evolution was used to select a Rhodosporidium toruloides strain with robust growth in non-detoxified wheat straw hydrolysates, produced at 20% solids loading, and better xylose consumption rate. An arabinose-inducible cre-lox recombination system was developed in this evolved strain that was further engineered to express a second copy of the native DGAT1 and SCD1 genes under control of the native xylose reductase (XYL1) promoter. Fed-batch cultivation of the engineered strain in 7-L bioreactors produced 39.5 g lipid/L at a rate of 0.334 g/Lh(-1) and 0.179 g/g yield, the best results reported in R. toruloides with non-detoxified lignocellulosic hydrolysates to date.
机译:提高碳水化合物的产量与脂质转化率和脂质生产率是在经济上可行的过程中进行商业化微生物油的两个临界目标。木质纤维素糖是该过程的潜在低成本碳源,但它们的使用受到在高固体载荷的生物质预处理中产生的毒性化合物的限制,并由戊糖(主要是木糖),其未被许多微生物有效地代谢。适应性实验室进化用于选择具有鲁棒的非解毒小麦秸秆水解产物的rhodosporidim菌株,其在20%固体载荷和更好的木糖消耗率下产生。在这种进化的菌株中开发了阿拉伯糖诱导的Crex重组系统,进一步设计成在天然木糖还原酶(XYL1)启动子的控制下表达天然DGAT1和SCD1基因的第二拷贝。在7-L生物反应器中喂养的批量培养在7-L生物反应器中产生39.5g脂质/ L以0.334g / LH(-1)和0.179g / g产量,在R.Toruloides中报告的最佳结果是非解毒的木质纤维素含水溶胶迄今为止。

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