School of Chemical Engineering and Technology, Tianjin University, Tianjin 300072, China.
Frontier Research Institute for Synthetic Biology, Tianjin University, Tianjin 300072, China.
J Agric Food Chem. 2024 Sep 4;72(35):19395-19402. doi: 10.1021/acs.jafc.4c05046. Epub 2024 Aug 23.
β-Myrcene is an important monoterpene compound widely used in the fragrance, agricultural, and food industries. The microbial production of β-myrcene conforms to the trend of green biological manufacturing, which has great potential for development. The poor catalytic activity of β-myrcene synthase (MS) and the insufficient supply of precursors are considered to be the bottlenecks of β-myrcene production. Here, source screening, subcellular localization, enzyme fusion, and precursor-enhancing strategies were integrated for β-myrcene biosynthesis with . The β-myrcene titer gradually increased by 218-fold (up to 63.59 mg/L) compared to that of the initial titer of the shake flask. Moreover, the titer reached 66.82 mg/L after the addition of antioxidants (1 mM glutathione, GSH, and 1% butylated hydroxytoluene, BHT). Ultimately, 142.64 mg/L β-myrcene in was achieved in 5.0 L of fed-batch fermentation under a carbon restriction strategy, which was the highest reported titer in yeast thus far. This study not only established a platform for β-myrcene production but also provided a reference for the efficient biosynthesis of other monoterpene compounds.
β-月桂烯是一种重要的单萜化合物,广泛应用于香料、农业和食品工业。微生物生产β-月桂烯符合绿色生物制造的趋势,具有很大的发展潜力。β-月桂烯合酶(MS)的催化活性差和前体供应不足被认为是β-月桂烯生产的瓶颈。在这里,通过整合来源筛选、亚细胞定位、酶融合和前体增强策略,进行了β-月桂烯生物合成。与摇瓶的初始产量相比,β-月桂烯的产量逐渐增加了 218 倍(达到 63.59mg/L)。此外,添加抗氧化剂(1mM 谷胱甘肽(GSH)和 1%叔丁基对苯二酚(BHT))后,产量达到 66.82mg/L。最终,在碳限制策略下,在 5.0L 分批补料发酵中实现了 142.64mg/L 的β-月桂烯,这是迄今为止酵母中报道的最高产量。本研究不仅建立了β-月桂烯生产的平台,而且为其他单萜化合物的高效生物合成提供了参考。