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The Dynamics and Evolutionary Potential of Domain Loss and Emergence

机译:域丢失和出现的动力学和演化潜力

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The wealth of available genomic data presents an unrivaled opportunity to study the molecular basis of evolution. Studies on gene family expansions and site-dependent analyses have already helped establish important insights into how proteins facilitate adaptation. However, efforts to conduct full-scale cross-genomic comparisons between species are challenged by both growing amounts of data and the inherent difficulty in accurately inferring homology between deeply rooted species. Proteins, in comparison, evolve by means of domain rearrangements, a process more amenable to study given the strength of profile-based homology inference and the lower rates with which rearrangements occur. However, adapting to a constantly changing environment can require molecular modulations beyond reach of rearrangement alone. Here, we explore rates and functional implications of novel domain emergence in contrast to domain gain and loss in 20 arthropod species of the pancrustacean clade. Emerging domains are more likely disordered in structure and spread more rapidly within their genomes than established domains. Furthermore, although domain turnover occurs at lower rates than gene family turnover, we find strong evidence that the emergence of novel domains is foremost associated with environmental adaptation such as abiotic stress response. The results presented here illustrate the simplicity with which domain-based analyses can unravel key players of nature's adaptational machinery, complementing the classical site-based analyses of adaptation.
机译:大量可用的基因组数据为研究进化的分子基础提供了无与伦比的机会。关于基因家族扩展和位点依赖性分析的研究已经帮助建立了关于蛋白质如何促进适应的重要见解。然而,不断增加的数据量和准确推断深根物种之间同源性的内在困难都对在物种之间进行全面跨基因组比较的努力提出了挑战。相比之下,蛋白质是通过结构域重排而进化的,鉴于基于谱的同源性推断的强度以及发生重排的速率较低,蛋白质更易于研究。然而,适应不断变化的环境可能需要分子调节,而不仅仅是重排。在这里,我们探索与20种节肢动物进化支的节肢动物物种的域得失相比,新型域出现的速率和功能含义。与已建立的结构域相比,新兴的结构域更有可能在结构上无序,并且在其基因组中的扩散速度更快。此外,尽管域更新发生率低于基因家族更新率,但我们发现强有力的证据表明,新域的出现与环境适应性(如非生物胁迫反应)相关。此处给出的结果说明了基于域的分析可以揭示自然界适应机制的关键参与者的简单性,是对经典的基于站点的适应性分析的补充。

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