应用于多种酵母的辅助营养不依赖质粒穿梭载体

Jeremy R. Smith, Christine D. Sislak, Pedro Fernandez Mendoza, Laurin Carmichael, Alisha G Lewis, Anqi Chen, G. Jiang, P. Gibney
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引用次数: 0

摘要

质粒穿梭载体是研究酵母生理学的常用工具。大多数酵母质粒都是针对酿酒酵母实验室菌株的兼容性而优化的,其选择性依赖于辅助营养互补性。我们试图构建一系列质粒穿梭载体,将其功能扩展到有辅助营养需求的菌株之外,并测试各种酵母的兼容性。我们构建了 18 种质粒,并成功地由多个属的酵母菌维持。在一个由 24 株酵母菌株组成的小组中,这些质粒被 18 种酵母菌所维持,涵盖了 Lachancea 属、Metschnikowia 属、Pichia 属、Saccharomyces 属和 Torulaspora 属中的 11 个物种。此外,还检测了一种整合基因表达报告器与这 18 种菌株的功能兼容性。除了德尔布鲁贝克酵母菌(Torulaspora delbrueckii)外,还观察到 13 个菌株的质粒衍生基因表达,涵盖酵母菌属中的 5 个物种。这些结果表明,该质粒系列对于学术界、生物技术、食品和发酵行业利用各种酵母菌和非酵母菌进行研究的进展和应用具有广泛的实用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Auxotrophy-Independent Plasmid Shuttle Vectors for Applications in Diverse Yeasts
Plasmid shuttle vectors are a common tool used to study yeast physiology. The majority of yeast plasmids have been optimized for Saccharomyces cerevisiae lab strain compatibility, relying on auxotrophic complementation as their selective property. We sought to construct a series of plasmid shuttle vectors to extend functionality beyond strains with auxotrophic requirements, and test compatibility across a diverse panel of yeasts. We constructed 18 plasmids which were successfully maintained by yeasts from several genera. From a panel of 24 yeast strains, these plasmids were maintained by 18 yeasts, spanning 11 species within the genera Lachancea, Metschnikowia, Pichia, Saccharomyces, and Torulaspora. Additionally, an integrated gene expression reporter was assayed for functional compatibility with the 18 strains. Plasmid-derived gene expression was observed for 13 strains, spanning five species within the Saccharomyces genus, in addition to Torulaspora delbrueckii. These results indicate that this plasmid series is broadly useful for advancements and applications within academia, biotechnology, and the food and fermentation industries for research utilizing diverse Saccharomyces and non-Saccharomyces yeasts.
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