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A framework for estimating the effects of sequential reproductive barriers: Implementation using Bayesian models with field data from cryptic species

机译:估算顺序生殖障碍效果的框架:实现使用贝叶斯模型与隐藏物种的现场数据的实现

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摘要

Determining how reproductive barriers modulate gene flow between populations represents a major step toward understanding the factors shaping the course of speciation. Although many indices quantifying reproductive isolation (RI) have been proposed, they do not permit the quantification of cross-direction-specific RI under varying species frequencies and over arbitrary sequences of barriers. Furthermore, techniques quantifying associated uncertainties are lacking, and statistical methods unrelated to biological process are still preferred for obtaining confidence intervals and P-values. To address these shortcomings, we provide new RI indices that model changes in gene flow for both directions of hybridization, and we implement them in a Bayesian model.We use this model to quantify RI between two species of the psyllid Cacopsylla pruni based on field genotypic data for mating individuals, inseminated spermatophores and progeny. The results showed that preinsemination isolation was strong, mildly asymmetric, and indistinguishably different between study sites despite large differences in species frequencies; that postinsemination isolation strongly affected the more common hybrid type; and that cumulative isolation was close to complete. In the light of these results, we discuss how these developments can strengthen comparative RI studies.
机译:确定生殖障碍如何调节人群之间的基因流动代表了理解塑造形态的因素的重要步骤。尽管已经提出了许多量化生殖隔离(RI)的索引,但它们不允许在不同物种频率和随意的障碍序列上定量横向特异性RI。此外,缺乏量化相关的不确定性的技术,并且仍然优选与生物过程无关的统计方法,以获得置信区间和p值。为了解决这些缺点,我们提供新的RI指数,即杂交方向的基因流的模型变化,我们在贝叶斯模型中实施它们。我们使用该模型在基于田间基因型的两种Psyllid Cacopsylla Pruni之间量化RI。交配个体,毒药精菌和后代的数据。结果表明,尽管物种频率差异很大,但在研究部位之间存在强烈,不对称,并且在学习部位之间难以区分。那个后期间隔隔离强烈影响更常见的混合型;并且这种累积隔离接近完成。鉴于这些结果,我们讨论这些发展如何能够加强对比RI研究。

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