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An experimental assay of the interactions of amino acids from orthologous sequences shaping a complex fitness landscape

机译:形成复杂健身景观的直向同源序列氨基酸相互作用的实验测定

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摘要

Characterizing the fitness landscape, a representation of fitness for a large set of genotypes, is key to understanding how genetic information is interpreted to create functional organisms. Here we determined the evolutionarily-relevant segment of the fitness landscape of His3, a gene coding for an enzyme in the histidine synthesis pathway, focusing on combinations of amino acid states found at orthologous sites of extant species. Just 15% of amino acids found in yeast His3 orthologues were always neutral while the impact on fitness of the remaining 85% depended on the genetic background. Furthermore, at 67% of sites, amino acid replacements were under sign epistasis, having both strongly positive and negative effect in different genetic backgrounds. 46% of sites were under reciprocal sign epistasis. The fitness impact of amino acid replacements was influenced by only a few genetic backgrounds but involved interaction of multiple sites, shaping a rugged fitness landscape in which many of the shortest paths between highly fit genotypes are inaccessible.
机译:适应状况的特征(适合大量基因型的表征)是理解如何解释遗传信息以创建功能性有机体的关键。在这里,我们确定了His3适应度景观的进化相关部分,His3是一种编码组氨酸合成途径中酶的基因,着眼于在现存物种直系同源位点发现的氨基酸状态的组合。酵母His3直向同源物中只有15%的氨基酸始终是中性的,而其余85%对氨基酸适应性的影响则取决于遗传背景。此外,在67%的位点,氨基酸置换处于符号上位状态,在不同的遗传背景下均具有强烈的正和负效应。 46%的位点处于相互征兆上位。氨基酸替代的适应性影响仅受少数遗传背景的影响,但涉及多个位点的相互作用,形成了崎fitness的适应环境,在该环境中,高度适合的基因型之间的许多最短路径都难以接近。

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