Genomic Microbiology Group, Institute of General Microbiology, Christian-Albrechts University, 24118 Kiel, Germany.
Viruses. 2019 Aug 6;11(8):720. doi: 10.3390/v11080720.
Cyanophages are characterized by vast genomic diversity and the formation of stable ecotypes over time. The evolution of phage diversity includes vertical processes, such as mutation, and horizontal processes, such as recombination and gene transfer. Here, we study the contribution of vertical and horizontal processes to short-term evolution of marine cyanophages. Analyzing time series data of -infecting ecotypes spanning up to 17 years, we found a high contribution of recombination relative to mutation (r/m) in all ecotypes. Additionally, we found a molecular clock of substitution and recombination in one ecotype, RIM8. The estimated RIM8 evolutionary rates are 2.2 genome-wide substitutions per year (1.275 × 10 substitutions/site/year) and 29 genome-wide nucleotide alterations due to recombination per year. We found 26 variable protein families, of which only two families have a predicted functional annotation, suggesting that they are auxiliary metabolic genes with bacterial homologs. A comparison of our rate estimates to other phage evolutionary rate estimates in the literature reveals a negative correlation of phage substitution rates with their genome size. A comparison to evolutionary rates in bacterial organisms further shows that phages have high rates of mutation and recombination compared to their bacterial hosts. We conclude that the increased recombination rate in phages likely contributes to their vast genomic diversity.
噬藻体的基因组多样性非常丰富,并且随着时间的推移会形成稳定的生态型。噬菌体多样性的进化包括垂直过程,如突变,以及水平过程,如重组和基因转移。在这里,我们研究了垂直和水平过程对海洋噬藻体短期进化的贡献。通过分析长达 17 年的感染性生态型的时间序列数据,我们发现所有生态型中重组相对于突变的贡献都很高(r/m)。此外,我们在一个生态型 RIM8 中发现了替代和重组的分子钟。估计 RIM8 的进化率为每年 2.2 个全基因组取代(1.275×10 取代/位点/年)和每年 29 个全基因组核苷酸改变导致重组。我们发现了 26 个可变蛋白家族,其中只有两个家族具有预测的功能注释,这表明它们是具有细菌同源物的辅助代谢基因。将我们的速率估计与文献中其他噬菌体进化速率估计进行比较表明,噬菌体的替代速率与它们的基因组大小呈负相关。与细菌生物进化速率的比较进一步表明,噬菌体的突变和重组率高于其细菌宿主。我们得出的结论是,噬藻体中增加的重组率可能有助于其丰富的基因组多样性。