Novel centromeric plasmid for stable extrachromosomal gene expression in Aurantiochytrium limacinum.

IF 3.9 3区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Person Pesona Renta, Cian-Huei Syu, Ta-Yu Huang, Yi-Ting Chang, Yu-Feng Liang, Ssu-Ting Chen, Po-Wei Weng, Ming-Chen Hsu, Keng-Hung Lin, Tsunglin Liu, Anna C-C Jang, Che-Chia Tsao, Han-Jia Lin, Hung-Yun Lin, Yi-Min Chen
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Abstract

Aurantiochytrium limacinum holds great promise for producing sustainable single-cell oil as an alternative to fish oil. However, research into its complex biological and biochemical characteristics and efforts toward strain improvement have been hampered by insufficient genetic tools. Until now, genetic transformations of A. limacinum have relied solely on chromosome integration, which is inefficient and prone to insertional mutagenesis and other issues related to genetically modified organisms (GMOs). This paper describes the first centromeric plasmid for A. limacinum. Amplification of this shuttle vector by E. coli enables direct delivery into A. limacinum via electroporation, where it undergoes stable replication and segregation into daughter cells. The key to the stable plasmid maintenance lies in a 500 bp segment derived from chromosome 24 of Phaeodactylum tricornutum. While this segment does not significantly enhance the efficiency of vector transformation, it enables the replication and maintenance of the shuttle vector in the host cell as closed circular DNA. The plasmid from three transformants demonstrates a high segregation efficiency of 96.8 ± 0.3% (n = 3), even in the absence of antibiotic selection. This novel centromeric plasmid considerably enhances the flexibility of genetic manipulations and gene expression in A. limacinum, opening new avenues for its study and industrial application. KEY POINTS: • First centromeric plasmid developed for genetic transformation in A. limacinum. • The novel plasmid enhances flexibility in genetic manipulation and gene expression. • The plasmid achieves 96.8 ± 0.3% (n = 3) segregation efficiency without antibiotic selection.

新著丝质粒在金羊钇染色体外基因的稳定表达。
作为鱼油的替代品,aurantiochychrium limacinum在生产可持续的单细胞油方面具有很大的前景。然而,由于遗传工具的不足,对其复杂的生物学和生化特性的研究和菌株改良的努力受到阻碍。到目前为止,A. limacinum的遗传转化仅依赖于染色体整合,这种整合效率低,容易发生插入突变和其他与转基因生物(gmo)相关的问题。本文报道了A. limacinum的第一个着丝粒质粒。这种穿梭载体通过大肠杆菌的扩增,可以通过电穿孔直接传递到A. limacinum,在那里它经历稳定的复制和分离成子细胞。质粒稳定维持的关键是来自三角褐指藻第24号染色体的500 bp片段。虽然该片段不能显著提高载体转化的效率,但它可以使穿梭载体在宿主细胞中作为封闭的环状DNA进行复制和维持。即使在没有抗生素选择的情况下,来自三个转化子的质粒的分离效率也高达96.8±0.3% (n = 3)。这一新颖的着丝粒质粒极大地提高了灰杉遗传操作和基因表达的灵活性,为其研究和产业化应用开辟了新的途径。•第一个用于遗传转化的着丝粒质粒。•新型质粒增强了基因操作和基因表达的灵活性。•无需选择抗生素,质粒分离效率为96.8±0.3% (n = 3)。
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来源期刊
Applied Microbiology and Biotechnology
Applied Microbiology and Biotechnology 工程技术-生物工程与应用微生物
CiteScore
10.00
自引率
4.00%
发文量
535
审稿时长
2 months
期刊介绍: Applied Microbiology and Biotechnology focusses on prokaryotic or eukaryotic cells, relevant enzymes and proteins; applied genetics and molecular biotechnology; genomics and proteomics; applied microbial and cell physiology; environmental biotechnology; process and products and more. The journal welcomes full-length papers and mini-reviews of new and emerging products, processes and technologies.
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