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首页> 外文期刊>BMC Genomics >Complete genome sequence of Brachyspira intermedia reveals unique genomic features in Brachyspira species and phage-mediated horizontal gene transfer
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Complete genome sequence of Brachyspira intermedia reveals unique genomic features in Brachyspira species and phage-mediated horizontal gene transfer

机译:中间短螺旋体的完整基因组序列揭示了短螺旋体物种的独特基因组特征和噬菌体介导的水平基因转移

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Background Brachyspira spp. colonize the intestines of some mammalian and avian species and show different degrees of enteropathogenicity. Brachyspira intermedia can cause production losses in chickens and strain PWS/AT now becomes the fourth genome to be completed in the genus Brachyspira. Results 15 classes of unique and shared genes were analyzed in B. intermedia, B. murdochii, B. hyodysenteriae and B. pilosicoli. The largest number of unique genes was found in B. intermedia and B. murdochii. This indicates the presence of larger pan-genomes. In general, hypothetical protein annotations are overrepresented among the unique genes. A 3.2 kb plasmid was found in B. intermedia strain PWS/AT. The plasmid was also present in the B. murdochii strain but not in nine other Brachyspira isolates. Within the Brachyspira genomes, genes had been translocated and also frequently switched between leading and lagging strands, a process that can be followed by different AT-skews in the third positions of synonymous codons. We also found evidence that bacteriophages were being remodeled and genes incorporated into them. Conclusions The accessory gene pool shapes species-specific traits. It is also influenced by reductive genome evolution and horizontal gene transfer. Gene-transfer events can cross both species and genus boundaries and bacteriophages appear to play an important role in this process. A mechanism for horizontal gene transfer appears to be gene translocations leading to remodeling of bacteriophages in combination with broad tropism.
机译:背景短螺旋体属。定殖在某些哺乳动物和鸟类的肠道中,并表现出不同程度的肠道致病性。中间短螺旋体会导致鸡的生产损失,并且品系PWS / A T 现在成为短螺旋体属中第四个需要完成的基因组。结果在中间芽孢杆菌,murdochii芽孢杆菌,猪痢疾短螺旋体和pilosicoli芽孢杆菌中分析了15种独特和共有的基因。在中间芽孢杆菌和墨角芽孢杆菌中发现了最大数量的独特基因。这表明存在较大的泛基因组。通常,假想的蛋白质注释在独特基因中被过度表达。在中间芽孢杆菌PWS / A T 中发现了一个3.2 kb的质粒。该质粒也存在于murdochii菌株中,但不存在于其他九种短螺旋体分离物中。在短螺旋体基因组内,基因已经易位,并且也经常在前导链和滞后链之间切换,这一过程可能会在同义密码子的第三个位置出现不同的AT偏斜。我们还发现有证据表明噬菌体正在被重塑并将基因整合进其中。结论辅助基因库可塑造特定物种的性状。它也受还原性基因组进化和水平基因转移的影响。基因转移事件可以跨越物种和属界,并且噬菌体似乎在此过程中起重要作用。水平基因转移的机制似乎是基因易位,导致噬菌体与宽泛的向性相结合。

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