首页> 外文期刊>Plasmid: An International Journal Devoted to Extrachromosomal Gene Systems >The shufflon of IncI1 plasmids is rearranged constantly during different growth conditions
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The shufflon of IncI1 plasmids is rearranged constantly during different growth conditions

机译:在不同的生长条件下,Inci1质粒的Shufflon在不同的生长条件下不断重新排列

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One of the factors that can affect conjugation of IncI1 plasmids, amongst others, is the genetic region known as the shufflon. This multiple inversion system modifies the pilus tip proteins used during conjugation, thus affecting the affinity for different recipient cells. Although recombination is known to occur in in vitro conditions, little is known about the regulation and the extent of recombination that occurs. To measure the recombination of the shufflon, we have amplified the entire shufflon region and sequenced the amplicons using nanopore long-read sequencing. This method was effective to determine the order of the segments of the shufflon and allow for the analysis of the shufflon variants that are present in a heterogeneous pool of templates. Analysis was performed over different growth phases and after addition of cefotaxime. Furthermore, analysis was performed in different E. coli host cells to determine if recombination is likely to be influenced. Recombination of the shufflon was constantly ongoing in all conditions that were measured, although no differences in the amount of different shufflon variants or the rate at which novel variants were formed could be found. As previously reported, some variants were abundant in the population while others were scarce. This leads to the conclusion that the shufflon is continuously recombining at a constant rate, or that the method used here was not sensitive enough to detect differences in this rate. For one of the plasmids, the host cell appeared to have an effect on the specific shufflon variants that were formed which were not predominant in another host, indicating that host factors may be involved. As previously reported, the pil1V-A and pilV-A' ORFs are formed at higher frequencies than other pilV ORFs. These results demonstrate that the recombination that occurs within the shufflon is not random. While any regulation of the shufflon affected by these in vitro conditions could not be revealed, the method of amplifying large regions for long-read sequencing for the analysis of multiple inversion systems proved effective.
机译:可以影响INCI1质粒的缀合的因素之一,其中包括称为Shufflon的遗传区域。该多个反转系统改变缀合期间使用的菌刺尖蛋白,从而影响对不同受体细胞的亲和力。虽然已知重组在体外条件下发生,但是关于调节的少知之甚少,以及发生的重组程度。为了测量Shufflon的重组,我们已经扩增了整个Shufflon区域并使用纳米孔长读测序测序扩增子。该方法有效地确定Shufflon的段的顺序,并允许分析存在于异构模板中存在的Shufflon变体。分析在不同的生长阶段和加入头孢噻肟后进行。此外,分析在不同的大肠杆菌宿主细胞中进行,以确定是否可能影响重组。在测量的所有条件下,Shufflon的重组在所有条件下持续持续,尽管可以发现不同Shufflon变体的量的差异或可以找到形成新型变体的速率。如前所述,一些变种在人口中丰富,而其他变种则稀缺。这导致得出结论,Shufflon以恒定速率连续重新组合,或者这里使用的方法不足以检测此速率的差异。对于其中一种质粒,宿主细胞出现对在另一个宿主中未占主宿主的特定的Shufflon变体具有效果,表明可以涉及宿主因子。如前所述,PIL1V-A和PLV-A'ORF在比其他PLV ORF更高的频率上形成。这些结果表明,在Shufflon内发生的重组不是随机的。虽然无法揭示受这些体外条件影响的乳胶的任何调节,但是在分析多个反转系统分析的大读测序中扩增大区域的方法证明是有效的。

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