以游离酶和全细胞双脂肪酶为生物催化剂的大豆油制备生物柴油。

IF 3.1 4区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY Applied Biochemistry and Biotechnology Pub Date : 2024-12-18 DOI:10.1007/s12010-024-05115-x
Dunchi Xiao, Xun Li, Yu Zhang, Fei Wang
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引用次数: 0

摘要

本研究建立了一种双脂肪酶体系,通过热酵母菌(thermoyces lanuginosus)脂肪酶(TLL)和解脂耶氏菌(Yarrowia polylitica)脂肪酶2 (YLL)的协同催化,将大豆油转化为生物柴油。成功构建了表达脂肪酶的毕赤酵母重组菌株,发酵上清液中TLL和YLL的活性分别达到23,142.71±280.54 U/mL和895.44±27.31 U/mL。随后,利用游离脂肪酶催化大豆油制备生物柴油。优化反应条件后,以80 U/g油TLL和20 U/g油YLL为催化剂,在40℃、40%水分(水/油,w/w)、逐步加入5摩尔当量甲醇的条件下,生物柴油的产率为95.56%。在体外构建双脂肪酶质粒(不同比例的tll基因和yll基因),并将其导入酵母中,构建了具有最佳活性的重组菌株。在水分含量为40%,全细胞生物催化剂用量为8%,逐步加入5摩尔当量甲醇的条件下,在40℃条件下,反应24 h,生物柴油收率可达95.35%。这些结果表明,协同催化是一种有效的生物柴油合成策略,不仅可以提高生物柴油的产率,而且可以缩短反应时间。本研究为多酶复合制备生物柴油提供了科学依据,具有潜在的工业应用前景。
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Biodiesel Production from Soybean Oil Using a Free-Enzyme and Whole-Cell Dual Lipase System as a Biocatalyst.

A dual lipase system has been developed to convert soybean oil into biodiesel through synergistic catalysis of Thermomyces lanuginosus lipase (TLL) and Yarrowia lipolytica lipase 2 (YLL) in this study. Pichia pastoris recombinant strains expressing lipases were successfully constructed, and the activities of TLL and YLL in the fermentation supernatant reached 23,142.71 ± 280.54 U/mL and 895.44 ± 27.31 U/mL, respectively. Immediately thereafter, free lipase was used to catalyze the preparation of biodiesel from soybean oil. After optimizing reaction conditions, 80 U/g oil TLL and 20 U/g oil YLL were used to catalyze the production of biodiesel, and a 95.56% biodiesel yield was obtained at 40 °C, 40% moisture content (water/oil, w/w), and stepwise addition of five molar equivalents of methanol. Double lipase plasmids (tll gene and yll gene in different proportions) were constructed in vitro and introduced into P. pastoris to construct a recombinant strain with optimal activity. Under the reaction conditions of 40% moisture content, 8% whole-cell biocatalyst dosage, and stepwise addition of five molar equivalents of methanol, the biodiesel yield reached 95.35% after 24 h at 40 °C. These results show that synergistic catalysis is an effective strategy for biodiesel synthesis and can not only improve the biodiesel yield but also shorten the reaction time. This study provides a scientific basis for biodiesel production by multi-enzyme compounding, with potential industrial applications.

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来源期刊
Applied Biochemistry and Biotechnology
Applied Biochemistry and Biotechnology 工程技术-生化与分子生物学
CiteScore
5.70
自引率
6.70%
发文量
460
审稿时长
5.3 months
期刊介绍: This journal is devoted to publishing the highest quality innovative papers in the fields of biochemistry and biotechnology. The typical focus of the journal is to report applications of novel scientific and technological breakthroughs, as well as technological subjects that are still in the proof-of-concept stage. Applied Biochemistry and Biotechnology provides a forum for case studies and practical concepts of biotechnology, utilization, including controls, statistical data analysis, problem descriptions unique to a particular application, and bioprocess economic analyses. The journal publishes reviews deemed of interest to readers, as well as book reviews, meeting and symposia notices, and news items relating to biotechnology in both the industrial and academic communities. In addition, Applied Biochemistry and Biotechnology often publishes lists of patents and publications of special interest to readers.
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