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Polygenic traits and parasite local adaptation

机译:多基因性状和寄生虫局部适应

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The extent to which parasites are locally adapted to their hosts has important implications for human health and agriculture. A recently developed conceptual framework-the geographic mosaic theory of coevolution-predicts that local maladaptation should be common and largely determined by the interplay between gene flow and spatially variable reciprocal selection. Previous investigation of this theory has predominately focused on genetic systems of infection and resistance characterized by few genes of major effect and particular forms of epistasis. Here we extend existing theory by analyzing mathematical models of host-parasite interactions in which host resistance to parasites is mediated by quantitative traits with an additive polygenic basis. In contrast to previous theoretical studies predicated upon major gene mechanisms, we find that parasite local maladaptation is quite uncommon and restricted to one specific functional form of host resistance. Furthermore, our results show that local maladaptation should be rare or absent in studies that measure local adaptation using reciprocal transplant designs conducted in natural environments. Our results thus narrow the scope over which the predictions of the geographic mosaic theory are likely to hold and provide novel and readily testable predictions about when and where local maladaptation is expected.
机译:寄生虫在当地适应其宿主的程度对人类健康和农业具有重要意义。最近开发的概念框架-协同进化的地理镶嵌理论-预测局部适应不良应该很普遍,并且很大程度上取决于基因流与空间可变的倒数选择之间的相互作用。对该理论的先前研究主要集中于感染和耐药性的遗传系统,其特征是很少有主要影响基因和特定形式的上位性基因。在这里,我们通过分析宿主-寄生虫相互作用的数学模型扩展现有理论,其中宿主对寄生虫的抗性由具有附加多基因基础的数量性状介导。与以前的基于主要基因机制的理论研究相反,我们发现寄生虫局部适应不良非常罕见,并且局限于宿主抗药性的一种特定功能形式。此外,我们的结果表明,使用在自然环境中进行的对等移植设计测量局部适应性的研究中,局部适应不良应很少发生或不存在。因此,我们的结果缩小了地理镶嵌理论的预测可能保留的范围,并提供了关于何时以及何地发生局部适应不良的新颖且易于检验的预测。

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