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通过等离子体诱变结合化学筛选策略开发具有优异氧化应激耐受性和葡萄糖-6-磷酸脱氢酶活性的 sp. 突变体以提高二十二碳六烯酸(DHA)产量

Strategic Development of sp. Mutants With Superior Oxidative Stress Tolerance and Glucose-6-Phosphate Dehydrogenase Activity for Enhanced DHA Production Through Plasma Mutagenesis Coupled With Chemical Screening.

作者信息

Nazir Yusuf, Phabakaran Pranesha, Halim Hafiy, Mohamed Hassan, Naz Tahira, Abdul Hamid Aidil, Song Yuanda

机构信息

Colin Ratledge Center for Microbial Lipids, School of Agricultural Engineering and Food Science, Shandong University of Technology, Zibo, China.

Department of Food Sciences, Faculty of Science and Technology, Universiti Kebangsaan Malaysia, Bangi, Malaysia.

出版信息

Front Nutr. 2022 Apr 26;9:876649. doi: 10.3389/fnut.2022.876649. eCollection 2022.

Abstract

Thraustochytrids, such as and , have been shown as a promising sustainable alternative to fish oil due to its ability to accumulate a high level of docosahexaenoic acid (DHA) from its total fatty acids. However, the low DHA volumetric yield by most of the wild type (WT) strain of thraustochytrids which probably be caused by the low oxidative stress tolerance as well as a limited supply of key precursors for DHA biosynthesis has restricted its application for industrial application. Thus, to enhance the DHA production, we aimed to generate SW1 mutant with high tolerance toward oxidative stress and high glucose-6 phosphate dehydrogenase (G6PDH) activities through strategic plasma mutagenesis coupled with chemical screening. The WT strain ( sp. SW1) was initially exposed to plasma radiation and was further challenged with zeocin and polydatin, generating a mutant (YHPM1) with a 30, 65, and 80% higher overall biomass, lipid, and DHA production in comparison with the parental strains, respectively. Further analysis showed that the superior growth, lipid, and DHA biosynthesis of the YHMP1 were attributed not only to the higher G6PDH and enzymes involved in the oxidative defense such as superoxide dismutase (SOD) and catalase (CAT) but also to other key metabolic enzymes involved in lipid biosynthesis. This study provides an effective approach in developing the sp. mutant with superior DHA production capacity that has the potential for industrial applications.

摘要

破囊壶菌,如[具体菌名1]和[具体菌名2],由于其能够从总脂肪酸中积累高水平的二十二碳六烯酸(DHA),已被证明是鱼油一种有前景的可持续替代品。然而,大多数破囊壶菌野生型(WT)菌株的DHA体积产量较低,这可能是由于氧化应激耐受性低以及DHA生物合成关键前体供应有限,限制了其在工业上的应用。因此,为了提高DHA产量,我们旨在通过策略性等离子体诱变结合化学筛选,培育出对氧化应激具有高耐受性和高葡萄糖-6-磷酸脱氢酶(G6PDH)活性的破囊壶菌SW1突变体。WT菌株(破囊壶菌属SW1)最初接受等离子体辐射,然后用博来霉素和虎杖苷进一步筛选,产生了一个突变体(YHPM1),其总生物量、脂质和DHA产量分别比亲本菌株高30%、65%和80%。进一步分析表明,YHMP1优越的生长、脂质和DHA生物合成不仅归因于较高的G6PDH以及参与氧化防御的酶,如超氧化物歧化酶(SOD)和过氧化氢酶(CAT),还归因于参与脂质生物合成的其他关键代谢酶。本研究为开发具有卓越DHA生产能力、有工业应用潜力的破囊壶菌突变体提供了一种有效方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a0b/9087853/976986e802e9/fnut-09-876649-g0001.jpg

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