常用枯草芽孢杆菌染色体整合载体中的历史序列缺失会产生未被发现的功能缺失突变。

IF 2.6 4区 生物学 Q3 MICROBIOLOGY Microbiology-Sgm Pub Date : 2024-04-01 DOI:10.1099/mic.0.001455
K Julia Dierksheide, Gene-Wei Li
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引用次数: 0

摘要

自 20 世纪 80 年代以来,染色体整合载体一直被用作枯草芽孢杆菌工程学的核心方法。最常用的载体骨架之一包含染色体衍生区域,可引导同源重组进入amyE基因座。在这里,我们报告了从原始 amyE 整合载体继承的同源区中的一个缺口,它导致了一部分转化子的错误重组和下游基因的功能缺失突变。在横跨amyE 3'部分和下游基因ldh的同源臂内部,一个无意的227 bp缺失产生了两个交叉事件。大杂交事件产生了预期的基因型,但小杂交事件在约 10% 的菌落中发生,导致编码乳酸脱氢酶的 ldh 截断。虽然通过淀粉培养,两种类型的菌落都对 amyE 干扰检测呈阳性,但发酵代谢中的潜在缺陷可能未被检测出来,从而影响后续实验的结果。
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A historical sequence deletion in a commonly used Bacillus subtilis chromosome integration vector generates undetected loss-of-function mutations.

Since the 1980s, chromosome-integration vectors have been used as a core method of engineering Bacillus subtilis. One of the most frequently used vector backbones contains chromosomally derived regions that direct homologous recombination into the amyE locus. Here, we report a gap in the homology region inherited from the original amyE integration vector, leading to erroneous recombination in a subset of transformants and a loss-of-function mutation in the downstream gene. Internal to the homology arm that spans the 3' portion of amyE and the downstream gene ldh, an unintentional 227 bp deletion generates two crossover events. The major event yields the intended genotype, but the minor event, occurring in ~10 % of colonies, results in a truncation of ldh, which encodes lactate dehydrogenase. Although both types of colonies test positive for amyE disruption by starch plating, the potential defect in fermentative metabolism may be left undetected and confound the results of subsequent experiments.

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来源期刊
Microbiology-Sgm
Microbiology-Sgm 生物-微生物学
CiteScore
4.60
自引率
7.10%
发文量
132
审稿时长
3.0 months
期刊介绍: We publish high-quality original research on bacteria, fungi, protists, archaea, algae, parasites and other microscopic life forms. Topics include but are not limited to: Antimicrobials and antimicrobial resistance Bacteriology and parasitology Biochemistry and biophysics Biofilms and biological systems Biotechnology and bioremediation Cell biology and signalling Chemical biology Cross-disciplinary work Ecology and environmental microbiology Food microbiology Genetics Host–microbe interactions Microbial methods and techniques Microscopy and imaging Omics, including genomics, proteomics and metabolomics Physiology and metabolism Systems biology and synthetic biology The microbiome.
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