Suppr超能文献

在表达来自土曲霉和玉米黑粉菌的两个不同生物合成簇的工程化黑曲霉中,协同作用对衣康酸的生产。

Synergistic effects on itaconic acid production in engineered Aspergillus niger expressing the two distinct biosynthesis clusters from Aspergillus terreus and Ustilago maydis.

机构信息

MOE Key Laboratory of Industrial Fermentation Microbiology, College of Biotechnology, Tianjin University of Science & Technology, Tianjin, 300457, People's Republic of China.

Tianjin Engineering Research Center of Microbial Metabolism and Fermentation Process Control, Tianjin University of Science & Technology, Tianjin, 300457, People's Republic of China.

出版信息

Microb Cell Fact. 2022 Aug 11;21(1):158. doi: 10.1186/s12934-022-01881-7.

Abstract

BACKGROUND

Itaconic acid (IA) is a versatile platform chemical widely used for the synthesis of various polymers and current methods for IA production based on Aspergillus terreus fermentation are limited in terms of process efficiency and productivity. To construct more efficient IA production strains, A. niger was used as a chassis for engineering IA production by assembling the key components of IA biosynthesis pathways from both A. terreus and Ustilago maydis.

RESULTS

Recombinant A. niger S1596 overexpressing the A. terreus IA biosynthesis genes cadA, mttA, mfsA produced IA of 4.32 g/L, while A. niger S2120 overexpressing the U. maydis IA gene cluster adi1, tad1, mtt1, itp1 achieved IA of 3.02 g/L. Integration of the two IA production pathways led to the construction of A. niger S2083 with IA titers of 5.58 g/L. Increasing cadA copy number in strain S2083 created strain S2209 with titers of 7.99 g/L and deleting ictA to block IA degradation in S2209 created strain S2288 with IA titers of 8.70 g/L. Overexpressing acoA to enhance the supply of IA precursor in strain S2288 generated strain S2444 with IA titers of 9.08 g/L in shake flask.

CONCLUSION

Recombinant A. niger overexpressing the U. maydis IA biosynthesis pathway was capable of IA accumulation. Combined expression of the two IA biosynthesis pathways from A. terreus and U. maydis in A. niger resulted in much higher IA titers. Furthermore, increasing cadA copy number, deleting ictA to block IA degradation and overexpressing acoA to enhance IA precursor supply all showed beneficial effects on IA accumulation.

摘要

背景

衣康酸(IA)是一种用途广泛的平台化学品,广泛用于合成各种聚合物,目前基于土曲霉发酵生产 IA 的方法在工艺效率和生产力方面受到限制。为了构建更高效的 IA 生产菌株,我们使用黑曲霉作为底盘,通过组装来自土曲霉和玉米黑粉菌的 IA 生物合成途径的关键组件来工程化 IA 生产。

结果

过表达土曲霉 IA 生物合成基因 cadA、mttA、mfsA 的重组黑曲霉 S1596 生产 IA 为 4.32g/L,而过表达玉米黑粉菌 IA 基因簇 adi1、tad1、mtt1、itp1 的重组黑曲霉 S2120 生产 IA 为 3.02g/L。整合两种 IA 生产途径构建了 IA 产量为 5.58g/L 的黑曲霉 S2083。在 S2083 中增加 cadA 拷贝数构建了 IA 产量为 7.99g/L 的 S2209,并且在 S2209 中敲除 ictA 以阻断 IA 降解构建了 IA 产量为 8.70g/L 的 S2288。在 S2288 中过表达 acoA 以增强 IA 前体供应生成了 IA 产量为 9.08g/L 的 S2444。

结论

过表达玉米黑粉菌 IA 生物合成途径的重组黑曲霉能够积累 IA。在黑曲霉中组合表达来自土曲霉和玉米黑粉菌的两种 IA 生物合成途径导致 IA 产量更高。此外,增加 cadA 拷贝数、敲除 ictA 以阻断 IA 降解以及过表达 acoA 以增强 IA 前体供应均对 IA 积累有益。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0783/9367143/b7b9e0824aac/12934_2022_1881_Fig1_HTML.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验