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Trans-Kingdom Horizontal DNA Transfer from Bacteria to Yeast Is Highly Plastic Due to Natural Polymorphisms in Auxiliary Nonessential Recipient Genes

机译:跨王国水平的DNA从细菌到酵母的转移是高度可塑性的这是由于辅助非必需接收基因中的自然多态性所致。

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摘要

With the rapid accumulation of genomic information from various eukaryotes in the last decade, genes proposed to have been derived from recent horizontal gene transfer (HGT) events have been reported even in non-phagotrophic unicellular and multicellular organisms, but the molecular pathways underlying HGT remain to be explained. The development of in vitro HGT detection systems, which permit the molecular and genetic analyses of donor and recipient organisms and quantify HGT, are helpful in order to gain insight into mechanisms that may contribute to contemporary HGT events or may have contributed to past HGT events. We applied a horizontal DNA transfer system model based on conjugal gene transfer called trans-kingdom conjugation (TKC) from the prokaryote Escherichia coli to the eukaryote Saccharomyces cerevisiae, and assessed whether and to what extent genetic variations in the eukaryotic recipient affect its receptivity to TKC. Strains from a collection of 4,823 knock-out mutants of S. cerevisiae MAT-α haploids were tested for their individual TKC receptivity. Two types of mutants, an ssd1 mutant and respiratory mutants, which are also found in experimental strains and in nature widely, were identified as highly receptive mutants. The TKC efficiency for spontaneously accrued petite (rho −/0) mutants of the functional allele (SSD1-V) strain showed increased receptivity. The TKC efficiency of the ssd1Δ mutant was 36% for bacterial conjugation, while that of the petite/ssd1Δ double mutants was even higher (220% in average) compared to bacterial conjugation. This increased TKC receptivity was also observed when other conjugal transfer systems were applied and the donor bacterium was changed to Agrobacterium tumefaciens. These results support the idea that the genomes of certain eukaryotes have been exposed to exogenous DNA more frequently and continuously than previously thought.
机译:随着近十年来来自各种真核生物的基因组信息的迅速积累,甚至在非吞噬性单细胞和多细胞生物中,也有人报道了拟从最近的水平基因转移(HGT)事件衍生而来的基因,但HGT背后的分子途径仍然存在有待解释。体外HGT检测系统的开发有助于对供体和受体生物进行分子和遗传分析,并对HGT进行定量分析,有助于深入了解可能导致当代HGT事件发生或可能导致过去HGT事件发生的机制。我们应用了一种基于结合基因转移的水平DNA转移系统模型,称为从原核大肠杆菌到真核生物酿酒酵母的跨王国结合(TKC),并评估了真核生物受体中的遗传变异是否以及在何种程度上影响了其对TKC的接受性。测试了来自啤酒酵母MAT-α单倍体的4,823个敲除突变体的菌株的个体TKC接受性。两种类型的突变体,即ssd1突变体和呼吸道突变体,也都在实验菌株和自然界中广泛发现,被鉴定为高接受性突变体。功能性等位基因(SSD1-V)菌株自发累积的小(rho -/ 0 )突变体的TKC效率显示出增加的接受性。与细菌结合相比,ssd1Δ突变体的TKC效率为36%,而petite /ssd1Δ双重突变体的TKC效率更高(平均220%)。当应用其他接合转移系统并将供体细菌改为根癌农杆菌时,也观察到了这种增加的TKC接受性。这些结果支持这样的想法,即某些真核生物的基因组比以前认为的更频繁和连续地暴露于外源DNA。

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