...
首页> 外文期刊>Journal of Fish Biology >On the maintenance of genetic variation and adaptation to environmental change: considerations from population genomics in fishesa
【24h】

On the maintenance of genetic variation and adaptation to environmental change: considerations from population genomics in fishesa

机译:关于维持遗传变异和适应环境变化:鱼类的种群基因组学考虑

获取原文
获取原文并翻译 | 示例
           

摘要

The first goal of this paper was to overview modern approaches to local adaptation, with a focus on the use of population genomics data to detect signals of natural selection in fishes. Several mechanisms are discussed that may enhance the maintenance of genetic variation and evolutionary potential, which have been overlooked and should be considered in future theoretical development and predictive models: the prevalence of soft sweeps, polygenic basis of adaptation, balancing selection and transient polymorphisms, parallel evolution, as well as epigenetic variation. Research on fish population genomics has provided ample evidence for local adaptation at the genome level. Pervasive adaptive evolution, however, seems to almost never involve the fixation of beneficial alleles. Instead, adaptation apparently proceeds most commonly by soft sweeps entailing shifts in frequencies of alleles being shared between differentially adapted populations. One obvious factor contributing to the maintenance of standing genetic variation in the face of selective pressures is that adaptive phenotypic traits are most often highly polygenic, and consequently the response to selection should derive mostly from allelic co-variances among causative loci rather than pronounced allele frequency changes. Balancing selection in its various forms may also play an important role in maintaining adaptive genetic variation and the evolutionary potential of species to cope with environmental change. A large body of literature on fishes also shows that repeated evolution of adaptive phenotypes is a ubiquitous evolutionary phenomenon that seems to occur most often via different genetic solutions, further adding to the potential options of species to cope with a changing environment. Moreover, a paradox is emerging from recent fish studies whereby populations of highly reduced effective population sizes and impoverished genetic diversity can apparently retain their adaptive potential in some circumstances. Although more empirical support is needed, several recent studies suggest that epigenetic variation could account for this apparent paradox. Therefore, epigenetic variation should be fully integrated with considerations pertaining to role of soft sweeps, polygenic and balancing selection, as well as repeated adaptation involving different genetic basis towards improving models predicting the evolutionary potential of species to cope with a changing world. (C) 2016 The Fisheries Society of the British Isles
机译:本文的首要目标是概述现代的本地适应方法,重点是利用种群基因组学数据来检测鱼类的自然选择信号。讨论了可能增强遗传变异和进化潜力维持的几种机制,这些机制已被忽略,应在未来的理论发展和预测模型中加以考虑:软扫描的流行,适应的多基因基础,平衡选择和瞬时多态性,平行进化以及表观遗传变异。对鱼类种群基因组学的研究为基因组水平的局部适应提供了充足的证据。然而,普遍的适应性进化似乎几乎从未涉及有益等位基因的固定。取而代之的是,适应显然最常见地是通过软扫描进行的,这需要在差异适应群体之间共享等位基因的频率变化。面对选择压力时,维持遗传遗传变异的一个明显因素是适应性表型性状通常是高度多基因的,因此对选择的反应应主要源自病原基因座之间的等位基因协方差,而不是明显的等位基因频率变化。各种形式的平衡选择在维持适应性遗传变异和物种应对环境变化的进化潜力方面也可能起重要作用。关于鱼类的大量文献还表明,适应性表型的反复进化是一种普遍存在的进化现象,似乎最常通过不同的遗传解决方案发生,这进一步增加了物种应对潜在环境变化的潜在选择。此外,最近的鱼类研究显示出一个自相矛盾的事实,即在某些情况下,有效种群数量大大减少和遗传多样性不足的种群显然可以保留其适应潜力。尽管需要更多的经验支持,但最近的一些研究表明,表观遗传变异可以解释这种明显的悖论。因此,表观遗传变异应充分考虑到软扫,多基因和平衡选择的作用,以及涉及不同遗传基础的反复适应,以改进预测物种进化潜力以应对不断变化的世界的模型。 (C)2016年不列颠群岛渔业协会

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号