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Metabolic engineering to enhance biosynthesis of both docosahexaenoic acid and odd-chain fatty acids in Schizochytrium sp. S31

机译:代谢工程,以增强Schizochytrium sp。中二十二碳六烯酸和奇链脂肪酸的生物合成。 S31

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Abstract BackgroundDocosahexaenoic acid (DHA, C22:6) and odd-chain fatty acids (OCFAs, C15:0 and C17:0) have attracted great interest, since they have been widely used in food and therapeutic industries, as well as chemical industry, such as biodiesel production and improvement. The oil-producing heterotrophic microalgae Schizochytrium sp. 31 is one of main DHA-producing strains. Recently, it was found that Schizochytrium can also synthesize OCFAs; however, contents and titers of DHA and OCFAs in Schizochytrium are still low, which limit its practical application.ResultsIn this study, we found that acetyl-CoA carboxylase suffered from a feedback inhibition by C16-CoA in Schizochytrium , and relief of the inhibition resulted in improved both lipid content and the ratio of OCFAs in total fatty acids. Based on this finding, a novel strategy for elevating both DHA and OCFAs contents was established. First, the total lipid accumulation was increased by overexpressing a malic enzyme from Crypthecodinium cohnii to elevate NADPH supply. Second, the inhibition effect on acetyl-CoA carboxylase was relieved by overexpressing a codon-optimized ELO3 gene from Mortierella alpina , which encodes an elongase enzyme responsible for converting C16 into C18 fatty acids. After the above two-step engineering, contents of DHA and OCFAs were increased by 1.39- and 3.30-fold, reaching a level of 26.70 and 25.08% of dry cell weight, respectively, which are the highest contents reported so far for Schizochytrium . The titers of DHA and OCFAs were elevated by 1.08- and 2.57-fold, reaching a level of 3.54 and 3.32?g/L, respectively. Notably, the OCFAs titer achieved was 2.66-fold higher than the highest reported in Escherichia coli (1.25?g/L), implying potential value for industry application. To reveal the potential metabolic mechanism for the enhanced biosynthesis of both DHA and OCFAs, LC–MS metabolomic analysis was employed and the results showed that the pentose phosphate pathway and the glycolysis pathway were strengthened and intracellular propionyl-CoA concentration were also significantly increased in the engineered Schizochytrium , suggesting an increased supply of NADPH, acetyl-CoA, and propionyl-CoA for DHA and OCFAs accumulation.ConclusionsThe discovery provides a new source of OCFAs production, and proposes a new strategy to improve contents and titers of both DHA and OCFAs in Schizochytrium . These will be valuable for improving commercial potential of Schizochytrium and guiding the engineering strategy in other fatty acids producing heterotrophic microalga.
机译:摘要背景二十二碳六烯酸(DHA,C22:6)和奇链脂肪酸(OCFAs,C15:0和C17:0)引起了人们的极大兴趣,因为它们已广泛用于食品和治疗行业以及化学工业,例如生物柴油的生产和改进。产油异养微藻Schizochytrium sp。 31是主要的产生DHA的菌株之一。最近,发现裂殖壶菌属也可以合成OCFA。结果表明,乙酰辅酶A羧化酶在裂殖壶菌中受到C16-CoA的反馈抑制,从而减轻了其实际应用的难度。改善了脂质含量和总脂肪酸中OCFA的比例。基于此发现,建立了一种同时提高DHA和OCFA含量的新颖策略。首先,通过过表达来自Crypthecodinium cohnii的苹果酸酶来增加NADPH的供应,从而增加了总脂质的积累。其次,通过过量表达来自高山被孢霉(Mortierella alpina)的密码子优化的ELO3基因来减轻对乙酰辅酶A羧化酶的抑制作用,该基因编码负责将C16转化为C18脂肪酸的延伸酶。经过上述两步工程,DHA和OCFA的含量分别增加了1.39和3.30倍,分别达到干细胞重量的26.70和25.08%,这是迄今为止裂殖壶菌的最高含量。 DHA和OCFA的效价分别提高了1.08和2.57倍,分别达到3.54和3.32?g / L。值得注意的是,所获得的OCFAs滴度比大肠杆菌中报告的最高值(1.25?g / L)高2.66倍,这表明其在工业应用中具有潜在价值。为了揭示DHA和OCFAs增强生物合成的潜在代谢机制,采用LC-MS代谢组学分析,结果表明,戊糖磷酸途径和糖酵解途径得到加强,并且细胞内丙酰辅酶A的浓度也显着增加。裂殖壶菌的工程改造,表明DHA和OCFA积累的NADPH,乙酰辅酶A和丙酰辅酶A的供应增加。裂殖壶菌。这些对于提高裂殖壶菌的商业潜力和指导其他生产异养微藻的脂肪酸的工程策略是有价值的。

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