Computational Biology Group, Institute of Infectious Diseases and Molecular Medicine, University of Cape Town, Cape Town 4579, South Africa.
Viruses. 2011 Sep;3(9):1699-738. doi: 10.3390/v3091699. Epub 2011 Sep 13.
Although single stranded (ss) DNA viruses that infect humans and their domesticated animals do not generally cause major diseases, the arthropod borne ssDNA viruses of plants do, and as a result seriously constrain food production in most temperate regions of the world. Besides the well known plant and animal-infecting ssDNA viruses, it has recently become apparent through metagenomic surveys of ssDNA molecules that there also exist large numbers of other diverse ssDNA viruses within almost all terrestrial and aquatic environments. The host ranges of these viruses probably span the tree of life and they are likely to be important components of global ecosystems. Various lines of evidence suggest that a pivotal evolutionary process during the generation of this global ssDNA virus diversity has probably been genetic recombination. High rates of homologous recombination, non-homologous recombination and genome component reassortment are known to occur within and between various different ssDNA virus species and we look here at the various roles that these different types of recombination may play, both in the day-to-day biology, and in the longer term evolution, of these viruses. We specifically focus on the ecological, biochemical and selective factors underlying patterns of genetic exchange detectable amongst the ssDNA viruses and discuss how these should all be considered when assessing the adaptive value of recombination during ssDNA virus evolution.
虽然感染人类和家养动物的单链 DNA 病毒一般不会导致重大疾病,但植物的节肢动物传播的单链 DNA 病毒会,因此严重限制了世界上大多数温带地区的粮食生产。除了众所周知的植物和动物感染的单链 DNA 病毒外,通过对单链 DNA 分子的宏基因组调查,最近也明显发现,几乎所有陆地和水生环境中都存在大量其他不同的单链 DNA 病毒。这些病毒的宿主范围可能跨越生命之树,它们可能是全球生态系统的重要组成部分。各种证据表明,在产生这种全球单链 DNA 病毒多样性的过程中,遗传重组可能是一个关键的进化过程。已知在各种不同的单链 DNA 病毒物种内和物种之间会发生同源重组、非同源重组和基因组成分重排等高频事件,我们在这里研究这些不同类型的重组可能在这些病毒的日常生物学和长期进化中发挥的各种作用。我们特别关注可检测到的单链 DNA 病毒之间遗传交换模式的生态、生化和选择因素,并讨论在评估单链 DNA 病毒进化过程中重组的适应性价值时应如何考虑所有这些因素。