Jouffrey V, Leonard A S, Ahnert S E
Cavendish Laboratory, University of Cambridge, JJ Thomson Avenue, Cambridge CB3 0HE, UK.
Sainsbury Laboratory, University of Cambridge, Bateman Street, Cambridge CB2 1LR, UK.
R Soc Open Sci. 2021 Jun 23;8(6):201636. doi: 10.1098/rsos.201636.
We study the effects of non-determinism and gene duplication on the structure of genotype-phenotype (GP) maps by introducing a non-deterministic version of the Polyomino self-assembly model. This model has previously been used in a variety of contexts to model the assembly and evolution of protein quaternary structure. Firstly, we show the limit of the current deterministic paradigm which leads to built-in anti-correlation between evolvability and robustness at the genotypic level. We develop a set of metrics to measure structural properties of GP maps in a non-deterministic setting and use them to evaluate the effects of gene duplication and subsequent diversification. Our generalized versions of evolvability and robustness exhibit positive correlation for a subset of genotypes. This positive correlation is only possible because non-deterministic phenotypes can contribute to both robustness and evolvability. Secondly, we show that duplication increases robustness and reduces evolvability initially, but that the subsequent diversification that duplication enables has a stronger, inverse effect, greatly increasing evolvability and reducing robustness relative to their original values.
我们通过引入多聚体自组装模型的非确定性版本,研究了非确定性和基因复制对基因型 - 表型(GP)图谱结构的影响。该模型此前已在多种情况下用于模拟蛋白质四级结构的组装和进化。首先,我们展示了当前确定性范式的局限性,这种局限性导致在基因型水平上可进化性和稳健性之间存在内在的反相关性。我们开发了一组度量标准,用于在非确定性环境中测量GP图谱的结构特性,并使用它们来评估基因复制及随后的多样化的影响。对于一部分基因型,我们广义的可进化性和稳健性版本呈现出正相关。这种正相关之所以可能,只是因为非确定性表型可以同时促进稳健性和可进化性。其次,我们表明复制最初会增加稳健性并降低可进化性,但复制所促成的随后的多样化具有更强的反向作用,相对于其原始值,极大地增加了可进化性并降低了稳健性。