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Revealing evolutionary pathways by fitness landscape reconstruction.

机译:通过适应性景观重建揭示进化途径。

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The concept of epistasis has since long been used to denote non-additive fitness effects of genetic changes and has played a central role in understanding the evolution of biological systems. Owing to an array of novel experimental methodologies, it has become possible to experimentally determine epistatic interactions as well as more elaborate genotype-fitness maps. These data have opened up the investigation of a host of long-standing questions in evolutionary biology, such as the ruggedness of fitness landscapes and the accessibility of mutational trajectories, the evolution of sex, and the origin of robustness and modularity. Here we review this recent and timely marriage between systems biology and evolutionary biology, which holds the promise to understand evolutionary dynamics in a more mechanistic and predictive manner.
机译:长期以来,上位性的概念一直被用来表示遗传变化的非累加适应性效应,并且在理解生物系统的进化中起着核心作用。由于一系列新颖的实验方法,通过实验确定上位性相互作用以及更精细的基因型-适合度图谱已成为可能。这些数据使人们对进化生物学中许多长期存在的问题展开了调查,例如适应性景观的坚固性和突变轨迹的可及性,性别的演变以及健壮性和模块化的起源。在这里,我们回顾了系统生物学与进化生物学之间最近和及时的结合,它有望以一种更机械和更具预测性的方式来理解进化动力学。

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