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RNA病毒适应性的限制:一种实验方法。

Restrictions to RNA virus adaptation: an experimental approach.

作者信息

Elena Santiago F

机构信息

Departament de Genètica, Universitat de València, Edifici d'lnstituts d'Investigació, Spain.

出版信息

Antonie Van Leeuwenhoek. 2002 Aug;81(1-4):135-42. doi: 10.1023/a:1020589929125.

Abstract

Some basic properties of RNA viruses are their high mutation rate, their enormous population sizes and their short generation time. These properties allow RNA virus populations to quickly explore fitness landscapes. A great adaptability has been amply demonstrated in experimental, as well as in natural, populations of RNA viruses. However, at least from a theoretical point of view, a limit to the extent of viral adaptation may exist as a consequence of adaptive trade-offs arising during evolution in changing environmental conditions. Here, I review previously published results searching for such fitness trade-offs. The following scenario has been explored: the cost of host-range expansion, the cost of resistance to antiviral drugs, and the adaptation to different population densities. Despite the environmental conditions tested, results show a common pattern: whenever a virus adapt to a simple environmental situation it pays a cost in terms of adaptation to alternative situations. However, in those cases where the virus has been simultaneously adapted to different environmental conditions, this cost disappears or, at least, is greatly reduced. Finally, and as another factor imposing a limit to their speed of adaptation, I review results showing that clonal interference also plays an important role during viral evolution.

摘要

RNA病毒的一些基本特性包括其高突变率、庞大的种群规模和较短的世代时间。这些特性使RNA病毒种群能够迅速探索适应度景观。在RNA病毒的实验种群和自然种群中,都充分证明了其强大的适应性。然而,至少从理论角度来看,由于在不断变化的环境条件下进化过程中产生的适应性权衡,病毒适应的程度可能存在限制。在此,我回顾先前发表的寻找此类适应性权衡的研究结果。探讨了以下几种情况:宿主范围扩展的代价、对抗病毒药物耐药性的代价以及对不同种群密度的适应。尽管测试了不同的环境条件,但结果呈现出一个共同模式:每当病毒适应一种简单的环境情况时,它在适应其他情况方面就会付出代价。然而,在病毒同时适应不同环境条件的情况下,这种代价会消失,或者至少会大幅降低。最后,作为另一个限制其适应速度的因素,我回顾了一些结果,这些结果表明克隆干扰在病毒进化过程中也起着重要作用。

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