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用于酿酒酵母中多基因操作的标记破坏基因整合和URA3循环利用

Marker-disruptive gene integration and URA3 recycling for multiple gene manipulation in Saccharomyces cerevisiae.

作者信息

Kaneko Shohei, Tanaka Tsutomu, Noda Hideo, Fukuda Hideki, Akada Rinji, Kondo Akihiko

机构信息

Bio-energy Corporation R&D Laboratories, Hyogo, Japan.

出版信息

Appl Microbiol Biotechnol. 2009 Jun;83(4):783-9. doi: 10.1007/s00253-009-2038-0. Epub 2009 May 20.

Abstract

The introduction of several kinds of genes into the yeast chromosome is a powerful tool in many fields from fundamental study to industrial application. Here, we describe a general strategy for one-step gene integration and a marker recycling method. Forty base pairs of a short sequence derived from a region adjacent to the HIS3 locus were placed between cell surface displaying beta-glucosidase (BGL) and URA3 marker genes. HIS3 deletion and BGL-URA3 fragment integration were achieved via a PCR fragment consisting of the BGL-URA3 fragment attached to homology sequences flanked by the HIS3 targeting locus. The obtained his3::URA3 disruptants were plated on a 5-FOA plate to select for the URA3 deletion due to repeated sequences at both sides of URA3 gene. In all selected colonies, BGL genes were integrated at the targeted HIS3 locus and URA3 was completely deleted. In addition, introduced BGL was efficiently expressed, and the transformants fermented cellobiose to ethanol effectively. As our strategy creates next transformation markers continuously together with gene integration, this method can serve as a simple and powerful tool for multiple genetic manipulations in yeast engineering.

摘要

将多种基因导入酵母染色体是从基础研究到工业应用等许多领域的一种强大工具。在此,我们描述了一种一步基因整合的通用策略和一种标记回收方法。从与HIS3基因座相邻区域衍生的40个碱基对的短序列置于细胞表面展示β-葡萄糖苷酶(BGL)和URA3标记基因之间。通过由附着于两侧带有HIS3靶向基因座的同源序列的BGL-URA3片段组成的PCR片段实现HIS3缺失和BGL-URA3片段整合。将获得的his3::URA3破坏体接种在5-FOA平板上,以选择由于URA3基因两侧的重复序列而导致的URA3缺失。在所有选定的菌落中,BGL基因整合到靶向的HIS3基因座,URA3被完全删除。此外,导入的BGL高效表达,转化体有效地将纤维二糖发酵为乙醇。由于我们的策略在基因整合的同时持续产生下一个转化标记,该方法可作为酵母工程中多种基因操作的简单而强大的工具。

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