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糖和甘油高产合成 - 橙花叔醇。

High-Yield Biosynthesis of -Nerolidol from Sugar and Glycerol.

机构信息

Agency for Science, Technology and Research (A*STAR), Singapore Institute of Food and Biotechnology Innovation (SIFBI), 31 Biopolis Way, Nanos, Singapore 138669, Republic of Singapore.

出版信息

J Agric Food Chem. 2023 Jun 7;71(22):8479-8487. doi: 10.1021/acs.jafc.3c01161. Epub 2023 May 6.

Abstract

Isoprenoids, or terpenoids, have wide applications in food, feed, pharmaceutical, and cosmetic industries. Nerolidol, an acyclic C15 isoprenoid, is widely used in cosmetics, food, and personal care products. Current supply of nerolidol is mainly from plant extraction that is inefficient, costly, and of inconsistent quality. Here, we screened various nerolidol synthases from bacteria, fungi, and plants and found that the strawberry nerolidol synthase was most active in . Through systematic optimization of the biosynthetic pathways, carbon sources, inducer, and genome editing, we constructed a series of deletion strains (single mutants Δ, Δ, Δ, and Δ; double mutants Δ-Δ; and triple mutants and beyond Δ-Δ-Δ and Δ-Δ-Δ-) that produced high yields of 100% -nerolidol. In flasks, the highest nerolidol titers were 1.8 and 3.3 g/L in glucose-only and glucose-lactose-glycerol media, respectively. The highest yield reached 26.2% (g/g), >90% of the theoretic yield. In two-phase extractive fed-batch fermentation, our strain produced ∼16 g/L nerolidol within 4 days with about 9% carbon yield (g/g). In a single-phase fed-batch fermentation, the strain produced >6.8 g/L nerolidol in 3 days. To the best of our knowledge, our titers and productivity are the highest in the literature, paving the way for future commercialization and inspiring biosynthesis of other isoprenoids.

摘要

异戊二烯或萜烯在食品、饲料、制药和化妆品行业有广泛的应用。橙花叔醇,一种无环 C15 异戊二烯,广泛应用于化妆品、食品和个人护理产品。目前橙花叔醇的供应主要来自植物提取,这种方法效率低、成本高且质量不稳定。在这里,我们筛选了来自细菌、真菌和植物的各种橙花叔醇合酶,发现草莓橙花叔醇合酶在 中最活跃。通过对生物合成途径、碳源、诱导物和基因组编辑的系统优化,我们构建了一系列缺失菌株(单突变体 Δ、Δ、Δ、Δ;双突变体 Δ-Δ;三突变体及以上 Δ-Δ-Δ 和 Δ-Δ-Δ),这些菌株能够高产 100% -橙花叔醇。在摇瓶中,在仅葡萄糖和葡萄糖-乳糖-甘油培养基中,最高橙花叔醇产量分别为 1.8 和 3.3 g/L。最高产率达到 26.2%(g/g),超过理论产率的 90%。在两相萃取补料分批发酵中,我们的菌株在 4 天内生产了约 16 g/L 的橙花叔醇,碳收率约为 9%(g/g)。在单相补料分批发酵中,该菌株在 3 天内生产了 >6.8 g/L 的橙花叔醇。据我们所知,我们的产量和生产效率在文献中是最高的,为未来的商业化铺平了道路,并为其他异戊二烯的生物合成提供了灵感。

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