非线性进化权衡的出现和遗传多态性的维持。

IF 2.8 2区 生物学 Q2 BIOLOGY Biology Letters Pub Date : 2024-12-01 Epub Date: 2024-12-04 DOI:10.1098/rsbl.2024.0296
Samuel V Hulse, Emily L Bruns
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引用次数: 0

摘要

数量性状的进化模型通常假设有益和有害性状之间的权衡,要求建模者指定一个连接性状值的函数。权衡函数的选择可能是重要的;假设收益递减(加速成本)的功能通常导致单一平衡基因型,而成本递减通常导致遗传多态性。尽管它们很重要,但我们目前的理论几乎没有说哪种权衡功能在生物学上是最合理的。为了解决这一差距,我们探索了数量性状的遗传决定如何导致不同的权衡功能,以对传染病的抗性为例性状。我们建立了一个模型,在不同的位点上的等位基因多效性地增加抗性,同时降低繁殖力。然后,我们使用该模型生成基因型景观,并研究上位性如何影响权衡功能。无论上位性的强度如何,我们的模型始终导致成本的加速。然后,我们将基因型模型整合到抗病的生态进化模型中。与其他成本加速的模型不同,我们的方法经常导致基因多态性。我们的研究结果表明,加速成本是进化权衡的一个强有力的零模型,多态性所需的生态进化条件可能比以前认为的更微妙。
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The emergence of nonlinear evolutionary trade-offs and the maintenance of genetic polymorphisms.

Evolutionary models of quantitative traits often assume trade-offs between beneficial and detrimental traits, requiring modellers to specify a function linking trait values. The choice of trade-off function can be consequential; functions that assume diminishing returns (accelerating costs) typically lead to single equilibrium genotypes, while decelerating costs often lead to genetic polymorphisms. Despite their importance, our current theory has little to say on which trade-off functions are the most biologically plausible. To address this gap, we explored how the genetic determination of quantitative traits can lead to different trade-off functions, using resistance to infectious diseases as an example trait. We developed a model where alleles at separate loci pleiotropically increase resistance while decreasing fecundity. We then used this model to generate genotype landscapes and investigate how epistasis effects the trade-off function. Regardless of the strength of epistasis, our model consistently led to accelerating costs. We then incorporated our genotype model into an eco-evolutionary model of disease resistance. Unlike other models with accelerating costs, our approach often led to genetic polymorphisms. Our results suggest that accelerating costs are a strong null model for evolutionary trade-offs and that the eco-evolutionary conditions required for polymorphism may be more nuanced than previously thought.

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来源期刊
Biology Letters
Biology Letters 生物-进化生物学
CiteScore
5.50
自引率
3.00%
发文量
164
审稿时长
1.0 months
期刊介绍: Previously a supplement to Proceedings B, and launched as an independent journal in 2005, Biology Letters is a primarily online, peer-reviewed journal that publishes short, high-quality articles, reviews and opinion pieces from across the biological sciences. The scope of Biology Letters is vast - publishing high-quality research in any area of the biological sciences. However, we have particular strengths in the biology, evolution and ecology of whole organisms. We also publish in other areas of biology, such as molecular ecology and evolution, environmental science, and phylogenetics.
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