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Epistasis can lead to fragmented neutral spaces and contingency in evolution.

机译:上位性会导致零散的中性空间和进化的偶然性。

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摘要

In evolution, the effects of a single deleterious mutation can sometimes be compensated for by a second mutation which recovers the original phenotype. Such epistatic interactions have implications for the structure of genome space--namely, that networks of genomes encoding the same phenotype may not be connected by single mutational moves. We use the folding of RNA sequences into secondary structures as a model genotype-phenotype map and explore the neutral spaces corresponding to networks of genotypes with the same phenotype. In most of these networks, we find that it is not possible to connect all genotypes to one another by single point mutations. Instead, a network for a phenotypic structure with n bonds typically fragments into at least 2(n) neutral components, often of similar size. While components of the same network generate the same phenotype, they show important variations in their properties, most strikingly in their evolvability and mutational robustness. This heterogeneity implies contingency in the evolutionary process.
机译:在进化中,单个有害突变的影响有时可以通过恢复原始表型的第二个突变来补偿。这种上位的相互作用对基因组空间的结构具有影响-即,编码相同表型的基因组网络可能不会通过单个突变移动而相连。我们使用将RNA序列折叠成二级结构作为模型基因型-表型图,并探索与具有相同表型的基因型网络相对应的中性空间。在大多数这些网络中,我们发现不可能通过单点突变将所有基因型相互连接。相反,具有n个键的表型结构的网络通常会碎片化为至少2(n)个中性成分,通常大小相似。尽管同一网络的组件产生相同的表型,但它们的属性却显示出重要的变化,最显着的是它们的可进化性和突变鲁棒性。这种异质性意味着进化过程中的偶然性。

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