Phylogenomic Approaches to Study Adaptive Evolution in Mammals: From Aging to Aquatic Lifestyles.

IF 8.6 1区 生物学 Q1 GENETICS & HEREDITY
Nathan L Clark, Amanda Kowalczyk, Emily E K Kopania, Maria Chikina
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引用次数: 0

Abstract

The natural world is full of valuable lessons about genetic adaptation as organisms respond to changing conditions around them. Deciphering these changes is a major goal of evolutionary genetics. Advances have been made through phylogenomic approaches using the wealth of closely related genome sequences in mammals. These studies bring us lessons about the adaptive capacity allowed by the evolutionary process as well as the underlying genetic mechanisms controlling important traits. Diverse methods are now routinely used to identify the genetic basis of these adaptations. These reveal new functions of genes and regulatory regions that have responded to changes in lifestyle, such as aquatic life and flight, as well as major life history axes, such as lifespan. Phylogenomic studies have been equally revealing of specific traits that evolve in response to different selective pressures, such as hair formation and vocal learning. These approaches continue to develop to overcome challenges inherent in information-poor regulatory regions to find changes to gene regulatory networks as well. The development of these approaches is expected to accelerate as new tools, such as machine learning models, are incorporated and deployed on ever denser phylogenies containing new interesting traits.

哺乳动物适应性进化的系统基因组研究:从衰老到水生生活方式。
当生物体对周围不断变化的环境做出反应时,自然界充满了关于遗传适应的宝贵经验。破译这些变化是进化遗传学的一个主要目标。利用哺乳动物中大量密切相关的基因组序列,系统基因组学方法取得了进展。这些研究为我们提供了关于进化过程所允许的适应能力以及控制重要性状的潜在遗传机制的经验教训。现在通常使用多种方法来确定这些适应的遗传基础。这些揭示了基因和调控区域的新功能,这些基因和调控区域响应了生活方式的变化,如水生生物和飞行,以及主要的生活史轴,如寿命。系统基因组学研究同样揭示了在不同选择压力下进化的特定特征,如毛发形成和声乐学习。这些方法继续发展,以克服信息贫乏的调控区域固有的挑战,并找到基因调控网络的变化。随着机器学习模型等新工具被纳入和部署到包含新有趣特征的更密集的系统发育中,这些方法的发展有望加速。
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来源期刊
Annual review of genetics
Annual review of genetics 生物-遗传学
CiteScore
18.30
自引率
0.90%
发文量
17
期刊介绍: The Annual Review of Genetics, published since 1967, comprehensively covers significant advancements in genetics. It encompasses various areas such as biochemical, behavioral, cell, and developmental genetics, evolutionary and population genetics, chromosome structure and transmission, gene function and expression, mutation and repair, genomics, immunogenetics, and other topics related to the genetics of viruses, bacteria, fungi, plants, animals, and humans.
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