Establishment of genomic library technology mediated by non-homologous end joining mechanism in Yarrowia lipolytica

雅罗维亚 非同源性末端接合 重组酶 同源重组 生物 基因组文库 基因组 遗传学 基因组DNA 异源的 计算生物学 基因 重组 基序列
作者
Qiuyan Bai,Shuai Cheng,Jinlai Zhang,Mengxu Li,Yingxiu Cao,Ying‐Jin Yuan
出处
期刊:Science China-life Sciences [Springer Science+Business Media]
卷期号:64 (12): 2114-2128 被引量:26
标识
DOI:10.1007/s11427-020-1885-x
摘要

Genomic variants libraries are conducive to obtain dominant strains with desirable phenotypic traits. The non-homologous end joining (NHEJ), which enables foreign DNA fragments to be randomly integrated into different chromosomal sites, shows prominent capability in genomic libraries construction. In this study, we established an efficient NHEJ-mediated genomic library technology in Yarrowia lipolytica through regulation of NHEJ repair process, employment of defective Ura marker and optimization of iterative transformations, which enhanced genes integration efficiency by 4.67, 22.74 and 1.87 times, respectively. We further applied this technology to create high lycopene producing strains by multi-integration of heterologous genes of CrtE, CrtB and CrtI, with 23.8 times higher production than rDNA integration through homologous recombination (HR). The NHEJ-mediated genomic library technology also achieved random and scattered integration of loxP and vox sites, with the copy number up to 65 and 53, respectively, creating potential for further application of recombinase mediated genome rearrangement in Y. lipolytica. This work provides a high-efficient NHEJ-mediated genomic library technology, which enables random and scattered genomic integration of multiple heterologous fragments and rapid generation of diverse strains with superior phenotypes within 96 h. This novel technology also lays an excellent foundation for the development of other genetic technologies in Y. lipolytica.
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