Domingo E, Escarmís C, Sevilla N, Baranowski E
Centro de Biología Molecular Severo Ochoa (CSIC-UAM), Universidad Autónoma de Madrid, Spain.
Adv Exp Med Biol. 1998;440:721-7. doi: 10.1007/978-1-4615-5331-1_93.
RNA virus quasispecies are subjected to processes of positive Darwinian selection, to a very active and continuous negative selection and to random genetic drift. The course of RNA virus evolution is often unpredictable, and recent results suggest that even highly conserved motifs, once regarded as essential for infectivity, may be rendered dispensable by singular evolutionary events. An immediate consequence of the quasispecies genetic organization of RNA viruses is a surprising ability to gain fitness once a minimal replication ability is established in a biological environment. The unique features of RNA genetics should not be underestimated since they are at the basis of the emergence of new viral diseases and of the current difficulties to control many diseases associated variable viruses.
RNA病毒准种会经历正向达尔文选择过程、非常活跃且持续的负向选择过程以及随机遗传漂变。RNA病毒的进化过程往往不可预测,最近的研究结果表明,即使是曾经被认为对感染性至关重要的高度保守基序,也可能因单一的进化事件而变得不再必要。一旦在生物环境中建立了最低限度的复制能力,RNA病毒准种的遗传组织会带来一个惊人的结果,即获得适应性的能力。RNA遗传学的独特特征不应被低估,因为它们是新病毒性疾病出现的基础,也是当前控制许多与可变病毒相关疾病存在困难的原因。