首页> 外文期刊>Microbial Cell Factories >Macaúba (Acrocomia aculeata) cake from biodiesel processing: a low-cost substrate to produce lipases from Moniliella spathulata R25L270 with potential application in the oleochemical industry
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Macaúba (Acrocomia aculeata) cake from biodiesel processing: a low-cost substrate to produce lipases from Moniliella spathulata R25L270 with potential application in the oleochemical industry

机译:生物柴油加工中的Macaúba(Acrocomia aculeata)蛋糕:一种低成本的底物,可从S. Moniliella spathulata R25L270生产脂肪酶,在油脂化学工业中具有潜在的应用

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Background Biodiesel industry wastes were evaluated as supplements for lipase production by Moniliella spathulata R25L270, which is newly identified yeast with great lipolytic potential. Macaúba cake (MC), used for the first time in this work as inducer to produce lipases, and residual oil (RO) were mixed to maximise enzyme production. The lipase secreted was biochemically characterised. Results The best ratio for the mixture (MC:RO) was 0.66:0.34 and the fitted values for lipase activity and total protein concentration were 0.98?U?mL?1 and 0.356?mg?mL?1, respectively. Maximum activity obtained (2.47?U?mL?1) was achieved at 31.5°C and pH 6.7, and the enzyme was stable in this condition. A novel enzyme was purified and identified for the first time by mass spectrometry. The lipase efficiently hydrolysed different natural oils and exhibited selectivity in the production of eicosapentaenoic acid from fish oil. Conclusion The use of MC and RO as a supplement to produce the new lipase from M. spathulata R25L270 may be one alternative for reducing lipase production costs and simultaneously adding value to biodiesel industry residues. The potential application of the lipase in the oleochemical industry was demonstrated by its pH and temperature stabilities and selective hydrolysis.
机译:背景技术通过新鉴定出的具有极大脂解潜力的酵母,Spathulata R25L270评估了生物柴油工业废料作为脂肪酶生产的补充剂。 Macaúba蛋糕(MC),在这项工作中首次用作诱导脂肪酶的诱导剂,并与残留油(RO)混合以最大程度地提高酶的产量。分泌的脂肪酶具有生化特性。结果混合物的最佳比例(MC:RO)为0.66:0.34,脂肪酶活性和总蛋白浓度的拟合值为0.98?U?mL ?1 和0.356?mg?mL ?1 。在31.5°C和pH 6.7下获得最大活性(2.47?U?mL ?1 ),在此条件下酶稳定。一种新的酶被纯化并通过质谱首次鉴定。脂肪酶有效地水解了不同的天然油,并在从鱼油生产二十碳五烯酸中显示出选择性。结论使用MC和RO作为补充来从s。spathulata R25L270生产新的脂肪酶可能​​是降低脂肪酶生产成本并同时为生物柴油工业残余物增加价值的一种替代方法。脂酶在pH和温度稳定性以及选择性水解方面证明了其在油脂化学工业中的潜在应用。

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