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首页> 外文期刊>Engineering in Life Sciences >Cellular and metabolic engineering of oleaginous yeast Yarrowia lipolytica for bioconversion of hydrophobic substrates into high-value products
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Cellular and metabolic engineering of oleaginous yeast Yarrowia lipolytica for bioconversion of hydrophobic substrates into high-value products

机译:含油酵母Yarrowia Lipolytica的细胞和代谢工程用于疏水基底的生物转化为高价值产物

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摘要

The non-conventional oleaginous yeast Yarrowia lipolytica is able to utilize both hydrophilic and hydrophobic carbon sources as substrates and convert them into value-added bioproducts such as organic acids, extracellular proteins, wax esters, long-chain diacids, fatty acid ethyl esters, carotenoids and omega-3 fatty acids. Metabolic pathway analysis and previous research results show that hydrophobic substrates are potentially more preferred by Y. lipolytica than hydrophilic substrates to make high-value products at higher productivity, titer, rate, and yield. Hence, Y. lipolytica is becoming an efficient and promising biomanufacturing platform due to its capabilities in biosynthesis of extracellular lipases and directly converting the extracellular triacylglycerol oils and fats into high-value products. It is believed that the cell size and morphology of the Y. lipolytica is related to the cell growth, nutrient uptake, and product formation. Dimorphic Y. lipolytica demonstrates the yeast-to-hypha transition in response to the extracellular environments and genetic background. Yeast-to-hyphal transition regulating genes, such as YlBEM1, YlMHY1 and YlZNC1 and so forth, have been identified to involve as major transcriptional factors that control morphology transition in Y. lipolytica. The connection of the cell polarization including cell cycle and the dimorphic transition with the cell size and morphology in Y. lipolytica adapting to new growth are reviewed and discussed. This review also summarizes the general and advanced genetic tools that are used to build a Y. lipolytica biomanufacturing platform.
机译:非常规的烯胺酵母Yarrowia Lipolytica能够利用亲水和疏水性碳源作为基材,并将它们转化为有机酸,细胞外蛋白,蜡酯,长链二酸,脂肪酸乙酯,类胡萝卜素等增值生物制作和omega-3脂肪酸。代谢途径分析和先前的研究结果表明,疏水性衬底可能更优选Y. Lipolytica而不是亲水基底,以使高价值产物具有更高的生产率,滴度,速率和产率。因此,Y. Lipolytica由于其在细胞外脂肪酶的生物合成中并且直接将细胞外三酰基甘油油和脂肪转化为高价值产物而成为一种有效和有前途的生物制造平台。据信,Y. Lipolytica的细胞尺寸和形态与细胞生长,营养吸收和产物形成有关。二晶Y. Lipolytica响应细胞外环境和遗传背景,证明了酵母与菌丝过渡。已经鉴定了酵母 - 悬垂调节基因,例如YLBEM1,YLMHY1和YLZNC1等,涉及控制Y. Lipolytica中的形态转变的主要转录因子。综述并讨论了包括细胞周期的细胞偏振和与细胞尺寸和形态的三维转变的连接。该审查还总结了用于建立Y. Lipolytica生物制造平台的一般和先进的遗传工具。

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