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首页> 外文期刊>Applied Microbiology and Biotechnology >Development of an efficient genetic manipulation strategy for sequential gene disruption and expression of different heterologous GFP genes in Candida tropicalis
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Development of an efficient genetic manipulation strategy for sequential gene disruption and expression of different heterologous GFP genes in Candida tropicalis

机译:开发有效的遗传操作策略,用于连续基因破坏和热带假丝酵母中不同异源GFP基因的表达

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The diploid yeast Candida tropicalis, which can utilize n-alkane as a carbon and energy source, is an attractive strain for both physiological studies and practical applications. However, it presents some characteristics, such as rare codon usage, difficulty in sequential gene disruption, and inefficiency in foreign gene expression, that hamper strain improvement through genetic engineering. In this work, we present a simple and effective method for sequential gene disruption in C. tropicalis based on the use of an auxotrophic mutant host defective in orotidine monophosphate decarboxylase (URA3). The disruption cassette, which consists of a functional yeast URA3 gene flanked by a 0.3 kb gene disruption auxiliary sequence (gda) direct repeat derived from downstream or upstream of the URA3 gene and of homologous arms of the target gene, was constructed and introduced into the yeast genome by integrative transformation. Stable integrants were isolated by selection for Ura(+) and identified by PCR and sequencing. The important feature of this construct, which makes it very attractive, is that recombination between the flanking direct gda repeats occurs at a high frequency (10(-8)) during mitosis. After excision of the URA3 marker, only one copy of the gda sequence remains at the recombinant locus. Thus, the resulting ura3 strain can be used again to disrupt a second allelic gene in a similar manner. In addition to this effective sequential gene disruption method, a codon-optimized green fluorescent protein-encoding gene (GFP) was functionally expressed in C. tropicalis. Thus, we propose a simple and reliable method to improve C. tropicalis by genetic manipulation.
机译:可以利用正构烷烃作为碳和能源的二倍体酵母热带假丝酵母,对于生理学研究和实际应用都是有吸引力的菌株。然而,它具有一些特征,例如罕见的密码子使用,连续基因破坏的难度以及外源基因表达的效率低下,这些特征阻碍了通过基因工程改良菌株。在这项工作中,我们提出了一种简单有效的方法,可用于基于热带植物衣原体单磷酸脱羧酶(URA3)缺陷的营养缺陷型突变宿主中连续的基因突变。构建了一个破坏盒,并将其插入一个功能性酵母URA3基因,其两侧是一个URA3基因下游或上游的0.3 kb基因破坏辅助序列(gda)直接重复序列,并插入了靶基因的同源臂。酵母基因组通过整合转化。通过选择Ura(+)分离稳定的整合子,并通过PCR和测序进行鉴定。这种构建体的重要特征(非常有吸引力)是,在有丝分裂期间,侧翼直接gda重复序列之间的重组频率很高(10(-8))。切除URA3标记后,只有gda序列的一个副本保留在重组基因座上。因此,所得的ura3菌株可以再次以类似的方式用于破坏第二个等位基因。除了这种有效的顺序基因破坏​​方法外,还在热带假丝酵母中功能性地表达了密码子优化的绿色荧光蛋白编码基因(GFP)。因此,我们提出了一种简单而可靠的方法来通过基因操作来改善热带假丝酵母。

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