Suppr超能文献

通过种间杂交与多重抗生素抗性相结合提高链霉菌属中 ε-聚赖氨酸的产量。

Enhanced ε‑poly‑L‑lysine production in Streptomyces species by combining interspecific hybridization with multiple antibiotic resistance.

机构信息

Marine College, Shandong University, Weihai, 264209, Shandong, China.

Food and Drug Inspection and Testing Institute at Weihai, Shandong, 264210, China.

出版信息

Bioprocess Biosyst Eng. 2024 Apr;47(4):519-532. doi: 10.1007/s00449-024-02983-9. Epub 2024 Mar 19.

Abstract

To improve the ε-PL production in wild-type strains of Streptomyces. albulus, Streptomyces. noursei, Streptomyces. rochei and Streptomyces. yunnanensis, the interspecific hybridization based on protoplast fusion was first performed. Two-species hybridizations failed to obtain hybrids with significant increase in ε-PL production, but four-species hybridizations succeed in acquiring many high-yield hybrids. 16S rDNA homology alignment and RAPD confirmed that the hybrid HX17 was restructured by integrating gene fragments from S. albulus and S. rochei with S. noursei as the carrier. S. noursei HX17 was subsequently suffered from mutagenesis and genome shuffling combining with multiple antibiotic resistance, and a mutant S. noursei GX6 was obtained with ε-PL yield of 2.23 g/L in shake-flask fermentation. In fed-batch fermentation, the ε-PL production of GX6 reached 47.2 g/L, which was increased by 95.6% to 136.8% over the wild parents. Ribosomal genes associated with antibiotics were sequenced and majority of mutant strains had mutations at different sites, indicating that the increase of antibiotic resistance was strongly associated with them. This research proved that combining interspecific hybridization with multiple antibiotic resistance was as an effective approach to rapidly improve the ε-PL production in Streptomyces species.

摘要

为了提高白色链霉菌、诺尔斯链霉菌、罗氏链霉菌和云南链霉菌野生型菌株中 ε-PL 的产量,首先进行了基于原生质体融合的种间杂交。两种物种的杂交未能获得 ε-PL 产量显著增加的杂种,但四种物种的杂交成功获得了许多高产杂种。16S rDNA 同源性比对和 RAPD 证实,杂种 HX17 是通过整合来自白色链霉菌和罗氏链霉菌的基因片段与作为载体的诺尔斯链霉菌构建的。随后,诺尔斯链霉菌 HX17 经历了诱变和基因组改组,结合多种抗生素抗性,获得了 ε-PL 产量为 2.23g/L 的突变体诺尔斯链霉菌 GX6。在补料分批发酵中,GX6 的 ε-PL 产量达到 47.2g/L,比野生亲本提高了 95.6%至 136.8%。与抗生素相关的核糖体基因被测序,大多数突变株在不同的位点发生突变,表明抗生素抗性的增加与它们密切相关。这项研究证明,将种间杂交与多种抗生素抗性相结合是一种快速提高链霉菌属中 ε-PL 产量的有效方法。

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