首页> 外文OA文献 >Engineering the oleaginous yeast Yarrowia lipolytica to produce limonene from waste cooking oil
【2h】

Engineering the oleaginous yeast Yarrowia lipolytica to produce limonene from waste cooking oil

机译:工程油胺酵母酵母脂肪醇脂肪酵母,从废物烹饪油中生产柠檬膜

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

Abstract Background Limonene is an important biologically active natural product widely used in the food, cosmetic, nutraceutical and pharmaceutical industries. However, the low abundance of limonene in plants renders their isolation from plant sources non-economically viable. Therefore, engineering microbes into microbial factories for producing limonene is fast becoming an attractive alternative approach that can overcome the aforementioned bottleneck to meet the needs of industries and make limonene production more sustainable and environmentally friendly. Results In this proof-of-principle study, the oleaginous yeast Yarrowia lipolytica was successfully engineered to produce both d-limonene and l-limonene by introducing the heterologous d-limonene synthase from Citrus limon and l-limonene synthase from Mentha spicata, respectively. However, only 0.124 mg/L d-limonene and 0.126 mg/L l-limonene were produced. To improve the limonene production by the engineered yeast Y. lipolytica strain, ten genes involved in the mevalonate-dependent isoprenoid pathway were overexpressed individually to investigate their effects on limonene titer. Hydroxymethylglutaryl-CoA reductase (HMGR) was found to be the key rate-limiting enzyme in the mevalonate (MVA) pathway for the improving limonene synthesis in Y. lipolytica. Through the overexpression of HMGR gene, the titers of d-limonene and l-limonene were increased to 0.256 mg/L and 0.316 mg/L, respectively. Subsequently, the fermentation conditions were optimized to maximize limonene production by the engineered Y. lipolytica strains from glucose, and the final titers of d-limonene and l-limonene were improved to 2.369 mg/L and 2.471 mg/L, respectively. Furthermore, fed-batch fermentation of the engineered strains Po1g KdHR and Po1g KlHR was used to enhance limonene production in shake flasks and the titers achieved for d-limonene and l-limonene were 11.705 mg/L (0.443 mg/g) and 11.088 mg/L (0.385 mg/g), respectively. Finally, the potential of using waste cooking oil as a carbon source for limonene biosynthesis from the engineered Y. lipolytica strains was investigated. We showed that d-limonene and l-limonene were successfully produced at the respective titers of 2.514 mg/L and 2.723 mg/L under the optimal cultivation condition, where 70% of waste cooking oil was added as the carbon source, representing a 20-fold increase in limonene titer compared to that before strain and fermentation optimization. Conclusions This study represents the first report on the development of a new and efficient process to convert waste cooking oil into d-limonene and l-limonene by exploiting metabolically engineered Y. lipolytica strains for fermentation. The results obtained in this study lay the foundation for more future applications of Y. lipolytica in converting waste cooking oil into various industrially valuable products.
机译:摘要背景柠檬烯是一种重要的生物活性天然产物广泛应用于食品,化妆品,保健品和医药等行业。然而,低丰度的柠檬烯在植物呈现植物来源的非经济上可行的隔离。因此,工程微生物进入生产柠檬烯微生物工厂正在迅速成为可以克服上述瓶颈,以满足各行各业的需求,使柠檬烯生产更可持续和环保的一个有吸引力的替代方法。结果验证的原理该研究中,含油酵母解脂耶氏成功改造由留兰香将来自柠檬和1-柠檬烯合酶的异源d柠檬烯合酶,以产生两个d柠檬烯和1-苎烯分别。然而,只有0.124毫克/ L d柠檬烯和0.126 mg / L的1-苎烯被生产。为了改善由工程酵母Y.酵母菌株柠檬烯生产,参与甲羟戊酸依赖的异戊二烯途径10个基因被单独过表达,探讨其对柠檬烯效价的影响。羟甲基戊二酰基-CoA还原酶(HMGR)被发现是在用于在解脂亚罗威阿酵母的改善苎烯合成甲羟戊酸(MVA)途径的关键限速酶。通过HMGR基因的过表达,d柠檬烯和1-苎烯的滴度增加至0.256毫克/ L和0.316毫克/升。随后,将发酵条件进行了优化由工程解脂亚罗威阿酵母的菌株从葡萄糖到最大化苎烯生产,d柠檬烯和1-苎烯的最终滴度提高到2.369毫克/ L和2.471毫克/升。此外,补料分批发酵的工程化菌株Po1g KdHR和Po1g KlHR被用来提高在摇瓶中11.705毫克/升(0.443毫克/克),苎烯生产和d柠檬烯和1-苎烯所取得的效价分别为和11.088毫克/ L(0.385毫克/克),分别。最后,使用废烹饪油作为用于从工程改造的解脂亚罗威阿酵母的菌株苎烯生物合成的碳源极的电位进行了研究。我们发现,d柠檬烯和1-苎烯以2.514毫克/升和2.723 mg / L的最佳栽培条件下,其中,废烹饪油的70%的溶液中加入作为碳源的各个滴度成功地产生,代表一个20倍增加苎烯效价相比,应变之前和发酵优化。结论:这项研究是一个新的,高效的工艺流程的发展将废物转化通过利用代谢工程化的解脂耶氏菌发酵食用油到d柠檬烯和L - 柠檬烯的第一份报告。在这项研究中获得的结果将废食用油为各种工业有价值的产品奠定了解脂耶的更未来的应用奠定了基础。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
代理获取

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号