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首页> 外文期刊>Frontiers in Bioengineering and Biotechnology >Biological parts for Kluyveromyces marxianus synthetic biology
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Biological parts for Kluyveromyces marxianus synthetic biology

机译:马克斯克鲁维酵母合成生物学的生物部分

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Kluyveromyces marxianus is a non-conventional yeast whose physiology and metabolism lends itself to diverse biotechnological applications. While the wild-type yeast is already in use for producing fragrances and fermented products, the lack of standardised tools for its genetic and metabolic engineering prevent it from being used as a next-generation cell factory for bio-based chemicals. In this paper, we bring together and characterise a set of native K. marxianus parts for the expression of multiple genes for metabolic engineering and synthetic biology. All parts are cloned and stored according to the MoClo/Yeast Tool Kit standard for quick sharing and rapid construction. Using available genomic and transcriptomic data, we have selected promoters and terminators to fine-tune constitutive and inducible gene expression. The collection includes a number of known centromeres and autonomously replication sequences (ARS). We also provide a number of chromosomal integration sites selected for efficiency or visible phenotypes for rapid screening. Finally, we provide a single-plasmid CRISPR/Cas9 platform for genome engineering and facilitated gene targeting, and rationally create auxotrophic strains to expand the common range of selection markers available to K. marxianus. The curated and characterised tools we have provided in this kit will serve as a base to efficiently build next-generation cell factories from this alternative yeast. Plasmids containing all parts are available at Addgene for public distribution.
机译:马克斯克鲁维酵母是一种非常规酵母,其生理和新陈代谢使其适用于多种生物技术应用。尽管野生型酵母已被用于生产香料和发酵产品,但由于缺乏用于其基因和代谢工程的标准化工具,因此无法将其用作生物化学药品的下一代细胞工厂。在本文中,我们将一组天然的马克斯克鲁维酵母部分集合在一起并进行了表征,以表达用于代谢工程和合成生物学的多个基因。所有零件均根据MoClo / Yeast工具套件标准进行克隆和存储,以实现快速共享和快速构建。利用可获得的基因组和转录组数据,我们选择了启动子和终止子来微调组成型和诱导型基因的表达。该集合包括许多已知的着丝粒和自主复制序列(ARS)。我们还提供了许多用于效率选择的染色体整合位点或用于快速筛选的可见表型。最后,我们提供了用于基因组工程和促进基因靶向的单质粒CRISPR / Cas9平台,并合理地创造了营养缺陷型菌株,以扩大可用于马克斯克鲁维酵母的选择标记的通用范围。我们在该工具包中提供的精选工具和特征化工具将成为从该替代酵母有效构建下一代细胞工厂的基础。包含所有部分的质粒可在Addgene获得,以供公共发行。

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