Instituto Cavanilles de Biodiversidad y Biología Evolutiva, València, Spain.
PLoS Genet. 2009 Nov;5(11):e1000742. doi: 10.1371/journal.pgen.1000742. Epub 2009 Nov 26.
Mutational fitness effects can be measured with relatively high accuracy in viruses due to their small genome size, which facilitates full-length sequencing and genetic manipulation. Previous work has shown that animal and plant RNA viruses are very sensitive to mutation. Here, we characterize mutational fitness effects in single-stranded (ss) DNA and ssRNA bacterial viruses. First, we performed a mutation-accumulation experiment in which we subjected three ssDNA (PhiX174, G4, F1) and three ssRNA phages (Qbeta, MS2, and SP) to plaque-to-plaque transfers and chemical mutagenesis. Genome sequencing and growth assays indicated that the average fitness effect of the accumulated mutations was similar in the two groups. Second, we used site-directed mutagenesis to obtain 45 clones of PhiX174 and 42 clones of Qbeta carrying random single-nucleotide substitutions and assayed them for fitness. In PhiX174, 20% of such mutations were lethal, whereas viable ones reduced fitness by 13% on average. In Qbeta, these figures were 29% and 10%, respectively. It seems therefore that high mutational sensitivity is a general property of viruses with small genomes, including those infecting animals, plants, and bacteria. Mutational fitness effects are important for understanding processes of fitness decline, but also of neutral evolution and adaptation. As such, these findings can contribute to explain the evolution of ssDNA and ssRNA viruses.
突变适应性效应可以在病毒中通过相对较高的精度来测量,这是由于它们的小基因组大小,这有助于进行全长测序和遗传操作。以前的工作表明,动物和植物 RNA 病毒对突变非常敏感。在这里,我们描述了单链 (ss) DNA 和 ssRNA 细菌病毒中的突变适应性效应。首先,我们进行了一个突变积累实验,我们将三个 ssDNA(PhiX174、G4、F1)和三个 ssRNA 噬菌体(Qbeta、MS2 和 SP)进行噬菌斑到噬菌斑的转移和化学诱变。基因组测序和生长测定表明,两组中积累突变的平均适应性效应相似。其次,我们使用定点诱变获得了携带随机单核苷酸取代的 45 个 PhiX174 克隆和 42 个 Qbeta 克隆,并对它们的适应性进行了测定。在 PhiX174 中,20%的这种突变是致死的,而存活的突变平均降低了 13%的适应性。在 Qbeta 中,这两个数字分别为 29%和 10%。因此,高突变敏感性似乎是具有小基因组的病毒的普遍特性,包括感染动物、植物和细菌的病毒。突变适应性效应对于理解适应性下降、中性进化和适应过程非常重要。因此,这些发现可以有助于解释 ssDNA 和 ssRNA 病毒的进化。