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可通过农杆菌介导转化转移的多功能酵母质粒载体的构建及其在面包酵母菌株中的应用。

Construction of versatile yeast plasmid vectors transferable by Agrobacterium-mediated transformation and their application to bread-making yeast strains.

机构信息

Basic Biology Program, Graduate School of Integrated Sciences for Life, Higashi- Hiroshima, Hiroshima 739-8526, Japan; Department of Biological Science, Graduate School of Science, Hiroshima University, Higashi- Hiroshima, Hiroshima 739-8526, Japan.

Department of Biological Science, Graduate School of Science, Hiroshima University, Higashi- Hiroshima, Hiroshima 739-8526, Japan.

出版信息

J Biosci Bioeng. 2023 Aug;136(2):142-151. doi: 10.1016/j.jbiosc.2023.04.006. Epub 2023 May 31.

Abstract

Agrobacterium-mediated transformation (AMT) potentially has great advantages over other DNA introduction methods: e.g., long DNA and numerous recipient strains can be dealt with at a time merely by co-cultivation with donor Agrobacterium cells. However, AMT was applied only to several laboratory yeast strains, and has never been considered as a standard gene-introduction method for yeast species. To disseminate the AMT method in yeast species, it is necessary to develop versatile AMT plasmid vectors including shuttle type ones, which have been unavailable yet for yeasts. In this study, we constructed a series of AMT plasmid vectors that consist of replicative (shuttle)- and integrative-types and harbor a gene conferring resistance to either G418 or aureobasidin A for application to prototrophic yeast strains. The vectors were successfully applied to five industrial yeast strains belonging to Saccharomyces cerevisiae after a modification of a previous AMT protocol, i.e., simply inputting a smaller number of yeast cells to the co-cultivation than that in the previous protocol. The revised protocol enabled all five yeast strains to generate recombinant colonies not only at high efficiency using replicative-type vectors, but also readily at an efficiency around 10 using integrative one. Further modification of the protocol demonstrated AMT for multiple yeast strains at a time with less labor. Therefore, AMT would facilitate molecular genetic approaches to many yeast strains in basic and applied sciences.

摘要

农杆菌介导的转化(AMT)相对于其他 DNA 导入方法具有很大的优势:例如,通过与供体农杆菌细胞共培养,一次可以处理长 DNA 和多个受体菌株。然而,AMT 仅应用于少数几种实验室酵母菌株,从未被视为酵母的标准基因导入方法。为了在酵母物种中推广 AMT 方法,有必要开发多功能 AMT 质粒载体,包括穿梭型载体,而这些载体目前在酵母中还没有。在这项研究中,我们构建了一系列 AMT 质粒载体,这些载体由复制型(穿梭型)和整合型组成,并携带赋予 G418 或 Aureobasidin A 抗性的基因,用于应用于原养型酵母菌株。在修改之前的 AMT 方案后,这些载体成功地应用于属于酿酒酵母的 5 种工业酵母菌株,即在共培养中输入的酵母细胞数量比之前的方案少。修改后的方案使所有 5 种酵母菌株不仅能够使用复制型载体以高效率产生重组菌落,而且使用整合型载体也能够以约 10 的效率产生重组菌落。该方案的进一步修改证明了 AMT 可以同时对多个酵母菌株进行操作,减少了劳动力。因此,AMT 将促进基础和应用科学中许多酵母菌株的分子遗传方法。

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