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多倍体酵母中多个ILV5拷贝的串联整合及转录水平升高

Tandem integration of multiple ILV5 copies and elevated transcription in polyploid yeast.

作者信息

Mithieux S M, Weiss A S

机构信息

Department of Biochemistry, University of Sydney, NSW, Australia.

出版信息

Yeast. 1995 Apr 15;11(4):311-6. doi: 10.1002/yea.320110403.

Abstract

An industrial yeast strain was modified by introducing DNA into brewing yeast such that the derived cells contain only yeast DNA. Thus selectable markers and bacterial sequences are not present in the final strain, making this procedure attractive for the development of generally acceptable brewing yeast. Linear DNA containing the cloned ILV5 gene was introduced into lager yeast along with an unlinked circular bifunctional plasmid containing a dominant resistance marker. Resistant colonies were screened for site-directed integration of the ILV5 DNA. Candidates were examined by several methods including Southern transfer and polymerase chain reaction. In this way, a strain WM56 was identified containing three tandem copies of ILV5. The amplified ILV5 region is stable during repeated subculturing in the absence of selective pressure. Correspondingly elevated levels of ILV5 transcript in strain WM56 compared to the control (i.e. non-tandem) parental strain led to increased amounts of encoded acetohydroxyacid reductoisomerase as evidenced by significantly lower diacetyl production. WM56 appears to be identical to the parental strain judged by CHEF, total restriction digestion patterns, and probing, but differs in the ILV5 region of the chromosome. The method is generally applicable to other yeast strains, and if desired, is amenable to iterated cycles of integration to increase the number of copies.

摘要

通过将DNA导入酿酒酵母对一株工业酵母菌株进行改造,使得获得的细胞仅含有酵母DNA。因此,最终菌株中不存在选择标记和细菌序列,这使得该方法对于开发普遍可接受的酿酒酵母具有吸引力。将含有克隆的ILV5基因的线性DNA与含有显性抗性标记的非连锁环状双功能质粒一起导入拉格酵母中。对抗性菌落进行筛选以检测ILV5 DNA的定点整合。通过包括Southern印迹和聚合酶链反应在内的几种方法对候选菌株进行检测。通过这种方式,鉴定出了含有三个ILV5串联拷贝的WM56菌株。在没有选择压力的情况下反复传代培养期间,扩增的ILV5区域是稳定的。与对照(即非串联)亲本菌株相比,WM56菌株中ILV5转录本水平相应升高,导致编码的乙酰羟酸还原异构酶量增加,这通过显著降低的双乙酰产量得到证明。通过脉冲场凝胶电泳(CHEF)、完全限制性消化图谱和探针检测判断,WM56似乎与亲本菌株相同,但在染色体的ILV5区域有所不同。该方法通常适用于其他酵母菌株,并且如果需要,适合于重复的整合循环以增加拷贝数。

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