Centro de Ciencias Genómicas, Universidad Nacional Autónoma de México, Av. Universidad N/C Col. Chamilpa, Apdo. Postal 565-A, Cuernavaca 62210, México.
BMC Evol Biol. 2011 Oct 17;11:305. doi: 10.1186/1471-2148-11-305.
Most of the DNA variations found in bacterial species are in the form of single nucleotide polymorphisms (SNPs), but there is some debate regarding how much of this variation comes from mutation versus recombination. The nitrogen-fixing symbiotic bacteria Rhizobium etli is highly variable in both genomic structure and gene content. However, no previous report has provided a detailed genomic analysis of this variation at nucleotide level or the role of recombination in generating diversity in this bacterium. Here, we compared draft genomic sequences versus complete genomic sequences to obtain reliable measures of genetic diversity and then estimated the role of recombination in the generation of genomic diversity among Rhizobium etli.
We identified high levels of DNA polymorphism in R. etli, and found that there was an average divergence of 4% to 6% among the tested strain pairs. DNA recombination events were estimated to affect 3% to 10% of the genomic sample analyzed. In most instances, the nucleotide diversity (π) was greater in DNA segments with recombinant events than in non-recombinant segments. However, this degree of recombination was not sufficiently large to disrupt the congruence of the phylogenetic trees, and further evaluation of recombination in strains quartets indicated that the recombination levels in this species are proportionally low.
Our data suggest that R. etli is a species composed of separated lineages with low homologous recombination among the strains. Horizontal gene transfer, particularly via the symbiotic plasmid characteristic of this species, seems to play an important role in diversity but the lineages maintain their evolutionary cohesiveness.
在细菌物种中发现的大多数 DNA 变异都是单核苷酸多态性 (SNP) 的形式,但关于这种变异有多少来自突变,有多少来自重组,存在一些争议。固氮共生细菌 Rhizobium etli 在基因组结构和基因组成方面都具有高度的可变性。然而,以前没有报道提供过关于这种变异在核苷酸水平的详细基因组分析,也没有报道过重组在产生这种细菌多样性方面的作用。在这里,我们比较了草图基因组序列与完整基因组序列,以获得遗传多样性的可靠度量,然后估计了重组在 Rhizobium etli 基因组多样性产生中的作用。
我们在 R. etli 中发现了高水平的 DNA 多态性,并且发现测试的菌株对之间平均存在 4%至 6%的分歧。据估计,DNA 重组事件影响了分析的基因组样本的 3%至 10%。在大多数情况下,具有重组事件的 DNA 片段的核苷酸多样性 (π) 大于非重组片段。然而,这种程度的重组不足以破坏系统发育树的一致性,并且对四菌株重组的进一步评估表明,该物种的重组水平相对较低。
我们的数据表明,R. etli 是由分离的谱系组成的物种,菌株之间的同源重组水平较低。水平基因转移,特别是通过该物种特有的共生质粒,似乎在多样性中起着重要作用,但谱系保持其进化内聚性。