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Divergent sorting of a balanced ancestral polymorphism underlies the establishment of gene-flow barriers in Capsella

机译:平衡的祖先多态性的发散排序奠定了Cap菜中基因流屏障的基础

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摘要

In the Bateson–Dobzhansky–Muller model of genetic incompatibilities post-zygotic gene-flow barriers arise by fixation of novel alleles at interacting loci in separated populations. Many such incompatibilities are polymorphic in plants, implying an important role for genetic drift or balancing selection in their origin and evolution. Here we show that NPR1 and RPP5 loci cause a genetic incompatibility between the incipient species Capsella grandiflora and C. rubella, and the more distantly related C. rubella and C. orientalis. The incompatible RPP5 allele results from a mutation in C. rubella, while the incompatible NPR1 allele is frequent in the ancestral C. grandiflora. Compatible and incompatible NPR1 haplotypes are maintained by balancing selection in C. grandiflora, and were divergently sorted into the derived C. rubella and C. orientalis. Thus, by maintaining differentiated alleles at high frequencies, balancing selection on ancestral polymorphisms can facilitate establishing gene-flow barriers between derived populations through lineage sorting of the alternative alleles.
机译:在Bateson–Dobzhansky–Muller遗传不相容性模型中,合子后基因流障碍是由新等位基因固定在分离人群的相互作用基因座上引起的。许多这样的不相容性在植物中是多态的,这暗示着遗传漂移或平衡其起源和进化选择的重要作用。在这里,我们显示NPR1和RPP5基因座引起了初生大花Capsella grandiflora和C. rubella以及更远相关的C. rubella和C. Orientalis之间的遗传不相容。不兼容的RPP5等位基因是由风疹梭菌突变引起的,而不兼容的NPR1等位基因在祖先的大花梭菌中很常见。相容和不相容的NPR1单倍型通过平衡大花茶中的选择来维持,并被分为发芽的风疹和东方茶。因此,通过在高频下维持分化的等位基因,在祖先多态性上进行平衡选择可以通过替代等位基因的谱系分类促进在衍生种群之间建立基因流障碍。

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