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Phenotypes can be robust and evolvable if mutations have non-local effects on sequence constraints

机译:如果突变对序列约束具有非局部影响,则表型可能是稳健的并且可以不可溶解

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摘要

The mapping between biological genotypes and phenotypes plays an important role in evolution, and understanding the properties of this mapping is crucial to determine the outcome of evolutionary processes. One of the most striking properties observed in several genotype-phenotype (GP) maps is the positive correlation between the robustness and evolvability of phenotypes. This implies that a phenotype can be strongly robust against mutations and at the same time evolvable to a diverse range of alternative phenotypes. Here, we examine the causes for this positive correlation by introducing two analytically tractable GP map models that follow the principles of real biological GP maps. The first model is based on gene-like GP maps, reflecting the way in which genetic sequences are organized into protein-coding genes, and the second one is based on the GP map of RNA secondary structure. For both models, we find that a positive correlation between phenotype robustness and evolvability only emerges if mutations at one sequence position can have non-local effects on the sequence constraints at another position. This highlights that non-local effects of mutations are closely related to the coexistence of robustness and evolvability in phenotypes, and are likely to be an important feature of many biological GP maps.
机译:生物基因型和表型之间的映射在演化中起重要作用,理解该映射的性质对于确定进化过程的结果至关重要。在几种基因型 - 表型(GP)地图中观察到的最引人注目的特性之一是表型的鲁棒性和鲁棒性与再生性之间的正相关性。这意味着一种表型可以对突变具有强烈稳健,并且同时可以进化到各种替代表型。在这里,我们通过引入遵循真实生物GP地图的原理的两个分析轨道GP地图模型来检查这种正相关的原因。第一模型基于基因样GP地图,反映了遗传序列组织成蛋白质编码基因的方式,第二种模型基于RNA二级结构的GP地图。对于这两种模型,我们发现表型稳健性和进化之间的正相关性仅出现了一个序列位置的突变可以对另一个位置的序列约束具有非局部影响。这种突出显示突变的非局部效应与表型中的鲁棒性和再生性的共存密切相关,并且可能是许多生物GP地图的重要特征。

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