Durrell Institute of Conservation and Ecology, School of Anthropology and Conservation, University of Kent, Canterbury, United Kingdom.
J Virol. 2012 May;86(9):5221-9. doi: 10.1128/JVI.06504-11. Epub 2012 Feb 15.
Circoviruses are among the smallest and simplest of all viruses, but they are relatively poorly characterized. Here, we intensively sampled two sympatric parrot populations from Mauritius over a period of 11 years and screened for the circovirus Beak and feather disease virus (BFDV). During the sampling period, a severe outbreak of psittacine beak and feather disease, which is caused by BFDV, occurred in Echo parakeets. Consequently, this data set presents an ideal system for studying the evolution of a pathogen in a natural population and to understand the adaptive changes that cause outbreaks. Unexpectedly, we discovered that the outbreak was most likely caused by changes in functionally important regions of the normally conserved replication-associated protein gene and not the immunogenic capsid. Moreover, these mutations were completely fixed in the Echo parakeet host population very shortly after the outbreak. Several capsid alleles were linked to the replication-associated protein outbreak allele, suggesting that whereas the key changes occurred in the latter, the scope of the outbreak and the selective sweep may have been influenced by positive selection in the capsid. We found evidence for viral transmission between the two host populations though evidence for the invasive species as the source of the outbreak was equivocal. Finally, the high evolutionary rate that we estimated shows how rapidly new variation can arise in BFDV and is consistent with recent results from other small single-stranded DNA viruses.
圆环病毒是所有病毒中最小和最简单的,但它们的特征相对较差。在这里,我们在 11 年的时间里对毛里求斯的两个共生鹦鹉种群进行了密集采样,并对圆环病毒喙羽病病毒(BFDV)进行了筛查。在采样期间,回声长尾鹦鹉中发生了由 BFDV 引起的严重的禽喙羽病爆发。因此,这个数据集为研究病原体在自然种群中的进化以及了解导致爆发的适应性变化提供了一个理想的系统。出乎意料的是,我们发现爆发很可能是由正常保守的复制相关蛋白基因的功能重要区域的变化引起的,而不是免疫原性衣壳。此外,这些突变在爆发后不久就在回声长尾鹦鹉宿主群体中完全固定下来。几个衣壳等位基因与复制相关蛋白爆发等位基因有关,这表明虽然关键变化发生在后者,但爆发的范围和选择压力可能受到衣壳中的正选择的影响。我们发现了两个宿主群体之间病毒传播的证据,尽管入侵物种作为爆发源的证据是模棱两可的。最后,我们估计的高进化率表明,BFDV 中的新变异可以多么迅速地产生,这与其他小单链 DNA 病毒的最近结果一致。