Virus Evolution on Fitness Landscapes.

Peter Schuster, Peter F Stadler
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引用次数: 2

Abstract

The landscape paradigm is revisited in the light of evolution in simple systems. A brief overview of different classes of fitness landscapes is followed by a more detailed discussion of the RNA model, which is currently the only evolutionary model that allows for a comprehensive molecular analysis of a fitness landscape. Neutral networks of genotypes are indispensable for the success of evolution. Important insights into the evolutionary mechanism are gained by considering the topology of sequence and shape spaces. The dynamic concept of molecular quasispecies is viewed in the light of the landscape paradigm. The distribution of fitness values in state space is mirrored by the population structures of mutant distributions. Two classes of thresholds for replication error or mutations are important: (i) the-conventional-genotypic error threshold, which separates ordered replication from random drift on neutral networks, and (ii) a phenotypic error threshold above which the molecular phenotype is lost. Empirical landscapes are reviewed and finally, the implications of the landscape concept for virus evolution are discussed.

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适应度景观中的病毒进化
景观范式在简单系统的进化中被重新审视。简要概述了不同类型的健身景观,然后对RNA模型进行了更详细的讨论,RNA模型是目前唯一允许对健身景观进行全面分子分析的进化模型。基因型的中性网络对于进化的成功是不可或缺的。通过考虑序列和形状空间的拓扑结构,获得了对进化机制的重要见解。分子准种的动态概念是从景观范式的角度来看待的。适应度值在状态空间中的分布反映了突变体分布的种群结构。复制错误或突变的两类阈值很重要:(i)常规基因型错误阈值,它将有序复制与中性网络上的随机漂移分开;(ii)表型错误阈值,超过该阈值,分子表型就会丢失。回顾了经验景观,最后讨论了景观概念对病毒进化的影响。
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来源期刊
CiteScore
5.60
自引率
0.00%
发文量
26
审稿时长
>12 weeks
期刊介绍: The review series Current Topics in Microbiology and Immunology provides a synthesis of the latest research findings in the areas of molecular immunology, bacteriology and virology. Each timely volume contains a wealth of information on the featured subject. This review series is designed to provide access to up-to-date, often previously unpublished information.
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