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Whole-Genome Comparison of Two Campylobacter jejuni Isolates of the Same Sequence Type Reveals Multiple Loci of Different Ancestral Lineage

机译:同一序列类型的两个空肠弯曲菌分离株的全基因组比较揭示了不同祖先谱系的多个基因座

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摘要

Campylobacter jejuni ST-474 is the most important human enteric pathogen in New Zealand, and yet this genotype is rarely found elsewhere in the world. Insight into the evolution of this organism was gained by a whole genome comparison of two ST-474, flaA SVR-14 isolates and other available C. jejuni isolates and genomes. The two isolates were collected from different sources, human (H22082) and retail poultry (P110b), at the same time and from the same geographical location. Solexa sequencing of each isolate resulted in 1.659 Mb (H22082) and 1.656 Mb (P110b) of assembled sequences within 28 (H22082) and 29 (P110b) contigs. We analysed 1502 genes for which we had sequences within both ST-474 isolates and within at least one of 11 C. jejuni reference genomes. Although 94.5% of genes were identical between the two ST-474 isolates, we identified 83 genes that differed by at least one nucleotide, including 55 genes with non-synonymous substitutions. These covered 101 kb and contained 672 point differences. We inferred that 22 (3.3%) of these differences were due to mutation and 650 (96.7%) were imported via recombination. Our analysis estimated 38 recombinant breakpoints within these 83 genes, which correspond to recombination events affecting at least 19 loci regions and gives a tract length estimate of 2 kb. This includes a 12 kb region displaying non-homologous recombination in one of the ST-474 genomes, with the insertion of two genes, including ykgC, a putative oxidoreductase, and a conserved hypothetical protein of unknown function. Furthermore, our analysis indicates that the source of this recombined DNA is more likely to have come from C. jejuni strains that are more closely related to ST-474. This suggests that the rates of recombination and mutation are similar in order of magnitude, but that recombination has been much more important for generating divergence between the two ST-474 isolates.
机译:空肠弯曲杆菌ST-474是新西兰最重要的人类肠道病原体,但这种基因型在世界其他地方很少见。通过比较两个ST-474,flaA SVR-14分离株和其他可用的空肠弯曲杆菌分离株和基因组的全基因组比较,了解了这种生物的进化过程。两种分离株分别来自同一地点和同一地点,分别来自人类(H22082)和零售家禽(P110b)。对每个分离株进行Solexa测序后,在28个(H22082)和29个(P110b)重叠群中产生了1.659 Mb(H22082)和1.656 Mb(P110b)组装序列。我们分析了1502个基因,我们在两个ST-474分离物中以及空肠弯曲杆菌参考基因组中的至少一个具有序列。尽管两个ST-474分离株之间94.5%的基因相同,但我们鉴定出83个差异至少一个核苷酸的基因,包括55个具有非同义替换的基因。这些覆盖101 kb,包含672个点差异。我们推断这些差异中有22个(3.3%)是由于突变引起的,而650个(96.7%)是通过重组导入的。我们的分析估计了这83个基因中的38个重组断裂点,这对应于影响至少19个基因座区域的重组事件,并给出了2 kb的片段长度估计。这包括一个12 kb区域,在一个ST-474基因组中显示非同源重组,并插入了两个基因,包括ykgC,推定的氧化还原酶和功能未知的保守假设蛋白质。此外,我们的分析表明,这种重组DNA的来源更有可能来自与ST-474更紧密相关的空肠弯曲杆菌菌株。这表明重组和突变的速率在数量级上相似,但是重组对于在两个ST-474分离株之间产生差异而言更为重要。

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