Maina Sofia, Pateraki Chrysanthi, Kopsahelis Nikolaos, Paramithiotis Spiros, Drosinos Eleftherios H, Papanikolaou Seraphim, Koutinas Apostolis
Department of Food Science and Human Nutrition Agricultural University of Athens Iera Odos 75 11855 Athens Greece.
Eng Life Sci. 2016 Nov 21;17(3):333-344. doi: 10.1002/elsc.201500153. eCollection 2017 Mar.
Microbial oil production has received significant attention as a potential precursor for the production of biofuels, oleochemicals and food products. In this study, six oleaginous yeasts, isolated from fruits, were selected based on their ability to accumulate high intracellular content of microbial oil (20-48% w/w of total dry weight). The highest content of saturated fatty acids was 68.7% (w/w), whereas the highest content of oleic acid was 62.7% (w/w). Furthermore, nutrient-rich hydrolysates produced via enzymatic hydrolysis of flour-rich waste streams generated by a confectionery industry were evaluated as fermentation media for microbial oil production via fed-batch bioreactor cultures using one of the most promising isolates, namely VV_D4. A total dry weight of 40 g/L with a microbial oil content of 39% (w/w) was produced by isolate VV_D4. Critical biodiesel properties were estimated based on the fatty acid composition and correlated with the international standards. The microbial oil produced by the new isolates could be potentially used for biodiesel production.
微生物油脂生产作为生物燃料、油脂化学品和食品生产的潜在前体受到了广泛关注。在本研究中,从水果中分离出的六种产油酵母,根据其积累高细胞内微生物油脂含量(占总干重的20 - 48% w/w)的能力进行筛选。饱和脂肪酸的最高含量为68.7%(w/w),而油酸的最高含量为62.7%(w/w)。此外,通过对糖果工业产生的富含面粉的废物流进行酶水解产生的营养丰富的水解产物,被评估为使用最有前景的菌株之一VV_D4通过补料分批生物反应器培养生产微生物油脂的发酵培养基。菌株VV_D4产生的总干重为40 g/L,微生物油脂含量为39%(w/w)。基于脂肪酸组成估算了关键生物柴油特性,并与国际标准进行了关联。新分离菌株产生的微生物油脂可能潜在地用于生物柴油生产。