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Irradiation of Yarrowia lipolytica NRRL YB-567 creating novel strains with enhanced ammonia and oil production on protein and carbohydrate substrates

机译:解脂耶氏酵母NRRL YB-567的辐照产生了新型菌株可在蛋白质和碳水化合物底物上增加氨和油的产生

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摘要

Increased interest in sustainable production of renewable diesel and other valuable bioproducts is redoubling efforts to improve economic feasibility of microbial-based oil production. Yarrowia lipolytica is capable of employing a wide variety of substrates to produce oil and valuable co-products. We irradiated Y. lipolytica NRRL YB-567 with UV-C to enhance ammonia (for fertilizer) and lipid (for biodiesel) production on low-cost protein and carbohydrate substrates. The resulting strains were screened for ammonia and oil production using color intensity of indicators on plate assays. Seven mutant strains were selected (based on ammonia assay) and further evaluated for growth rate, ammonia and oil production, soluble protein content, and morphology when grown on liver infusion medium (without sugars), and for growth on various substrates. Strains were identified among these mutants that had a faster doubling time, produced higher maximum ammonia levels (enzyme assay) and more oil (Sudan Black assay), and had higher maximum soluble protein levels (Bradford assay) than wild type. When grown on plates with substrates of interest, all mutant strains showed similar results aerobically to wild-type strain. The mutant strain with the highest oil production and the fastest doubling time was evaluated on coffee waste medium. On this medium, the strain produced 0.12 g/L ammonia and 0.20 g/L 2-phenylethanol, a valuable fragrance/flavoring, in addition to acylglycerols (oil) containing predominantly C16 and C18 residues. These mutant strains will be investigated further for potential application in commercial biodiesel production.
机译:人们对可再生柴油和其他有价值的生物产品的可持续生产的兴趣日益增加,正在加倍努力来提高微生物基石油生产的经济可行性。解脂耶氏酵母能够使用多种底物来生产油和有价值的副产物。我们用UV-C照射了解脂耶氏酵母NRRL YB-567,以提高氨水(用于肥料)和脂质(用于生物柴油)在低成本蛋白质和碳水化合物基质上的生产。使用平板测定中指示剂的颜色强度,筛选所得菌株的氨气和产油量。选择了七个突变菌株(基于氨法测定),并进一步评估了在肝输注培养基(无糖)上生长时的生长速率,氨和油的产生,可溶性蛋白含量和形态,以及在各种底物上的生长情况。在这些突变体中鉴定出的菌株比野生型具有更快的加倍时间,产生更高的最大氨水平(酶测定)和更多的油(苏丹黑测定),以及具有更高的最大可溶性蛋白质水平(Bradford测定)。当在带有目标底物的平板上生长时,所有突变菌株在需氧状态下均显示与野生型菌株相似的结果。在咖啡废料培养基上评估了具有最高产油量和最快倍增时间的突变菌株。在这种培养基上,该菌株除主要含有C16和C18残基的酰基甘油(油)外,还产生了0.12 g / L的氨和0.20 g / L的2-苯基乙醇,这是一种有价值的香精/调味剂。这些突变菌株将被进一步研究,以潜在地应用于商业化生物柴油生产。

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