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Application of a delta-6 desaturase with α-linolenic acid preference on eicosapentaenoic acid production in Mortierella alpina

机译:具有α-亚麻酸偏好性的delta-6去饱和酶在高山被孢霉中二十碳五烯酸生产中的应用

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Background Delta-6 desaturase (FADS6) is a key bifunctional enzyme desaturating linoleic acid (LA) or α-linolenic acid (ALA) in the biosynthesis of polyunsaturated fatty acids (PUFAs). In previous work, we analyzed the substrate specificity of two FADS6 enzymes from Mortierella alpina ATCC 32222 (MaFADS6) and Micromonas pusilla CCMP1545 (MpFADS6), which showed preference for LA and ALA, respectively. We also clarified the PUFA profiles in M. alpina , where these lipids were synthesized mainly via the ω6 pathway and rarely via the ω3 pathway and as a result contained low ALA and eicosapentaenoic acid (EPA) levels. Result To enhance EPA production in M. alpina by favoring the ω3 pathway, a plasmid harboring the MpFADS6 gene was constructed and overexpressed in a uracil-auxotrophic strain of M. alpina using the Agrobacterium tumefaciens -mediated transformation (ATMT) method. Our results revealed that the EPA production reached 80.0?±?15.0 and 90.4?±?9.7?mg/L in MpFADS6 transformants grown at 28 and at 12?°C, respectively. To raise the level of ALA, free form fatty acid was used as exogenous substrate, which increased the EPA production up to 114.5?±?12.4?mg/L. To reduce the cost of EPA production in M. alpina , peony seed oil (PSO) and peony seed meal (PSM) were used as source of ALA, and EPA production was improved to 149.3?±?7.8 and 515.29?±?32.66?mg/L by supplementing with 0.1?% PSO and 50?g/L PSM, respectively. The EPA yield was further increased to 588.5?±?29.6?mg/L in a 5-L bioreactor, which resulted in a 26.2-fold increase compared to EPA production in wild-type M. alpina . In this work, we have significantly enhanced EPA production through overexpression of a FADS6 desaturase with preference for ALA, combined with supplementation of its substrate. Conclusion An ALA-preferring FADS6 from M. pusilla CCMP1545 was applied to enhance EPA production in M. alpina . By exogenous addition of peony seed oil or peony seed meal, EPA production was further increased in flasks and fermenters. This research also highlights the value of peony seed meal which can be converted to a high value-added product containing EPA, and as a way to increase the EPA/AA ratio in M. alpina .
机译:背景技术Delta-6去饱和酶(FADS6)是在多不饱和脂肪酸(PUFAs)生物合成中使亚油酸(LA)或α-亚麻酸(ALA)饱和的关键双功能酶。在先前的工作中,我们分析了来自高山被孢霉ATCC 32222(MaFADS6)和小单胞菌CCMP1545(MpFADS6)的两种FADS6酶的底物特异性,它们分别显示出对LA和ALA的偏好。我们还阐明了高山被孢霉的PUFA谱,其中这些脂质主要通过ω6途径合成,很少通过ω3途径合成,因此含有低水平的ALA和二十碳五烯酸(EPA)。结果为了通过支持ω3途径提高高山白杨的EPA产量,使用根癌土壤杆菌介导的转化法(ATMT)构建了携带MpFADS6基因的质粒,并在高山白杨的尿嘧啶营养型菌株中过表达。我们的结果表明,在28℃和12℃下生长的MpFADS6转化子中,EPA的产量分别达到了80.0±15.0和90.4±9.7mg / L。为了提高ALA的水平,游离形式的脂肪酸被用作外源性底物,这使EPA的产量增加到114.5?±?12.4?mg / L。为了降低在高山被孢霉中生产EPA的成本,使用了牡丹籽油(PSO)和牡丹籽粉(PSM)作为ALA的来源,并将EPA的产量提高到149.3±7.8和515.29±32.66?通过分别添加0.1?%PSO和50?g / L PSM来获得mg / L。在5 L生物反应器中,EPA的收率进一步提高到588.5?±?29.6?mg / L,与野生型高山被孢霉的EPA产量相比,增加了26.2倍。在这项工作中,我们通过优先表达ADS的FADS6去饱和酶及其底物的补充,大大提高了EPA的产量。结论使用了来自美洲小C鼠CCMP1545的ALA优先FADS6可以提高高山白鼠的EPA产量。通过外源添加牡丹籽油或牡丹粕,烧瓶和发酵罐中的EPA产量进一步增加。这项研究还强调了牡丹籽粕的价值,可以将其转化为含有EPA的高附加值产品,并以此作为提高高山白粉病EPA / AA比的一种方法。

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